园艺学报 ›› 2025, Vol. 52 ›› Issue (8): 2081-2098.doi: 10.16420/j.issn.0513-353x.2024-0759
周明1, 韩晨旭1,2, 苑国良1, 范小青1, 艾鹏飞2,*(), 李常保1,*(
)
收稿日期:
2025-04-13
修回日期:
2025-06-22
出版日期:
2025-08-25
发布日期:
2025-08-19
通讯作者:
基金资助:
ZHOU Ming1, HAN Chenxu1,2, YUAN Guoliang1, FAN Xiaoqing1, AI Pengfei2,*(), and LI Changbao1,*(
)
Received:
2025-04-13
Revised:
2025-06-22
Published:
2025-08-25
Online:
2025-08-19
摘要:
番茄(Solanum lycopersicum)是严格的自花授粉作物,其杂交制种需要人工去雄授粉。随劳动力成本上升,利用番茄雄性不育制种成为今后发展趋势。近年来,在组学技术和分子生物技术推动下,番茄雄性不育研究进展迅速。本文综述了番茄雄性不育及育种应用研究进展,对番茄雄性不育突变体、雄性不育基因以及雄性不育调控机制相关研究进行了梳理总结,同时对优异雄性不育系创制策略和评价标准及其育种应用过程中繁育策略和免去雄策略进行了归纳和探讨。本文为进一步今后如何深入开展番茄雄性不育研究工作提供了参考。
周明, 韩晨旭, 苑国良, 范小青, 艾鹏飞, 李常保. 番茄雄性不育及育种应用研究进展[J]. 园艺学报, 2025, 52(8): 2081-2098.
ZHOU Ming, HAN Chenxu, YUAN Guoliang, FAN Xiaoqing, AI Pengfei, and LI Changbao. Research Progress of Tomato Male Sterility and Its Breeding Application[J]. Acta Horticulturae Sinica, 2025, 52(8): 2081-2098.
图1 番茄花结构及孢子不育型、结构不育型和功能不育型雄性不育突变体 A:花序;B:花药及花药筒;C:花纵切面;D:孢子不育型突变体ms10 及其野生型AC的花;E:结构不育型突变体ms15、sl-2 及其野生型M82的花;F:功能不育型突变体style2.1 的花
Fig. 1 Tomato flower structure as well as sporogenous,structural,functional sterile mutants A:Inflorescence;B:Stamen and anther cone;C:Longitudinal section of flower;D:Flowers of sporogenous sterile mutant ms10 and its wild type;E:Flowers of structural steril mutants ms15,sl-2 and the wild type M82;F:Flower of functional sterile mutant style2.1
类型Type | 突变体 Mutant | 表型Phenotype | 参考文献Reference | |||||
---|---|---|---|---|---|---|---|---|
结构不育 Structural male sterility | variable male sterile (vms) | 高温雄性不育,低温部分恢复 Male sterility occurs under higher temperatures,and is restored partially under lower temperatures | Rick & Boynton, | |||||
Sl-2/Slglo2/7b-1/tpi/ms30/ms33 | 雄蕊心皮化。sl 2高温不育,低温育性部分恢复。7b-1长日照下不育,短日照下育性部分恢复 Anthers develop abnormally with carpelloid-like stamens. sl 2 is male sterile under higher temperatures but show fertile under lower temperatures. 7b-1 shows male sterile in short days but fertile in long days. | Sawhney, | ||||||
green pistillate (gpi)/ pi-2(pistillate 2) | 雄蕊心皮化,同时伴有花瓣萼片化 Stamens are carpelloid,and petals are sepaloid | Rasmussen & Green, | ||||||
tag1 | 花药发育异常,雄蕊心皮化,花粉母细胞无法进行减数分裂,形成小孢子Anthers develop abnormally with carpelloid-like stamens,and pollen mother cells do not undergo meiosis to form microspores | Pnueli et al., | ||||||
Slglo1/globosa/lepi/tpib | 雄蕊发育异常。高温不育,低温育性部分恢复 Anthers develop abnormally. Male sterility occurs under higher temperature conditions,and fertility is restored under lower temperatures | Gómez et al., | ||||||
sl/Sl-pr/ tap3/sldef/csp | 雄蕊发育异常,高温不育,低温或喷施赤霉素育性部分恢复 Anthers develop abnormally. Male sterility occurs under higher temperature conditions,and fertility is restored partially under lower temperatures or with gibberellic acid treatment | Gómez et al., | ||||||
结构不育 Structural male sterility | ms-15/tm6/tdr6 | 花药发育异常,雄蕊心皮化,花粉母细胞无法进行减数分裂,形成小孢子Anthers develop abnormally with carpelloid-like stamens,and pollen mother cells do not undergo meiosis to form microspores | Cao et al., | |||||
功能不育 Functional male sterility | positional sterile (ps) | 成熟花药无法开裂,花粉无法散出 The mature pollens are not released due to non-dehiscent anthers | Larson & Paur, | |||||
exerted stigma (ex) | 柱头外露 Exserted stigmas | Rick & Robinson, | ||||||
style2.1 | 柱头外露 Exserted stigmas | Chen et al., | ||||||
ps2 | 药室外壁结构异常导致花药无法开裂,花粉无法散出 Locule wall of anthers develop abnormally,which lead to delayed anther dehiscence and failed pollen release | Gorguet et al., | ||||||
procera(pro) | 柱头外露exserted stigmas | Carrera et al., | ||||||
Solanum lycopersicum long styles (SlLst) | 柱头外露exserted stigmas | Cheng et al., | ||||||
孢子不育 Sporogenous male sterility | ms3 | 败育发生在减数分裂前。孢母细胞发育异常 Male sterility occurs before meiosis. Microspore mother cells develop abnormally | Rick & Butler, | |||||
ms5 | 败育发生在减数分裂期。减数分裂异常,绒毡层细胞发育异常 Male sterility occurs during meiosis stage. Meiosis dysfunctions and tapetum develops abnormally | Rick & Butler, | ||||||
ms11 | 败育发生在减数分裂期。绒毡层提前降解,减数分裂异常,无法形成四分体 Male sterility occurs during meiosis stage. Tapetum degrades in advance. Microspore mother cells fail to give rise to tetrads owing to dysfunctional meiosis | Gorman et al., | ||||||
Lesut2 | 败育发生时期不确定。花粉活力降低 The stage of male sterility occurrence is uncertain. The pollen viability reduces obviously | Hackel et al., | ||||||
ms1 | 败育发生时期不确定。花粉完全败育。 拟南芥、玉米、水稻ms1突变体绒毡层降解延迟,小孢子从四分体释放后花粉壁发育异常逐渐降解最终完全败育 The stage of male sterility occurrence is uncertain. The pollen is completely male sterile. The tapetums degradation is delayed and the microspores degenerate gradually owing to abnormal exine development,which lead to complete male sterility in ms1 of Arabidopsis,rice and corn. | Vizcay-Barrena & Wilson, | ||||||
ga20ox1 | 败育发生在减数分裂期。减数分裂异常,无法形成或只形成部分异常四分体,花粉部分败育。雌蕊发育异常 Male sterility occurs during meiosis stage. Owing to dysfunctional meiosis,microspore mother cells fail to produce tetrads or just produce few abnormal tetrads and generate few viable pollens. The mutant is also female sterile | Olimpieri et al., | ||||||
ms10 | 败育发生在减数分裂期。减数分裂后期发生异常,绒毡层细胞质空泡化膨大,小孢子无法形成 Male sterility occurs during meiosis stage. Tapetum is enlarged and vacuolated,and meiocytes degrade and fail to give rise to microspores at anaphase | Jeong et al., | ||||||
Lepro | 败育发生时期不确定。花粉在柱头水合受到影响,花粉管伸长受抑制 The stage of male sterility occurrence is uncertain. The tapetums degradation is delayed. The pollen hydration is affected,and the pollen tube elongation is inhibited | Yu & Mandayam, | ||||||
mapk7 | 败育发生在单核小孢子向二核小孢子转变期。绒毡层降解过快,花粉内壁发育异常,单核小孢子无法发育成成熟花粉,90%花粉无活力 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. The tapetum degrades in advance. Intine layer of pollen appears abnormal. And the uninucleate microspores can not develop into mature pollens. Approximately 90 % of the pollen grains lack viability | Chen et al., | ||||||
gpat6-a | 败育发生时期不确定。花粉数减少,花粉活力降低 The stage of male sterility occurrence is uncertain. The produced pollens decrease obviously,and pollen viability reduces. | Petit et al., | ||||||
hyd | 败育发生在减数分裂前。花药畸形,孢母细胞及绒毡层发育异常,无花粉产生 Male sterility occurs before meiosis. Microspore mother cells and tapetum layer develop abnormally in malformed anthers,and the mutant fail to produce any pollens | Rojas-Gracia et al., | ||||||
mapk20 | 败育发生在单核小孢子向二核小孢子转变期。花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Chen et al., | ||||||
孢子不育 Sporogenous male sterility | Slmyb32 | 败育发生时期不确定。突变后花粉部分失活 The stage of male sterility occurrence is uncertain. The mutants can only produce partial inactivated pollens | Chen et al., | |||||
Slnced1 | 败育发生在减数分裂期。四分体发育异常,花粉部分败育。雌蕊发育异常 The mutants show male and female sterility. Male sterility occurs during meiosis stage. The mutants can only develop few normal pollens owing to abnormal tetrad development | Dai et al., | ||||||
Slpin8 | 花药瘦小。败育发生时期不确定。80%花粉失去活力,花粉育性可部分被外源生长素恢复 The anthers are atrophied. Approximately 80% of the pollen grains are abnormal and lack viability,and the fertility is restored partially with IAA treatment | Gan et al., | ||||||
ms32 | 花器变小。败育发生在减数分裂期。减数分裂异常,孢母细胞退化,无法形成四分体 The flower is smaller. Male sterility occurs during meiosis stage. Meiosis dysfunctions. Microspore mother cells degrade and can not generate tetrads | Liu et al., | ||||||
Slida | 败育发生时期不确定。绒毡层延迟降解,多数花粉失活,花药无法开裂 The stage of male sterility occurrence is uncertain. The tapetums degradation is delayed. Most of pollens produced are inviable. The anthers are non-dehiscent | Wang et al., | ||||||
bzr1 | 败育发生时期不确定。绒毡层降解延迟,花粉部分败育 The stage of male sterility occurrence is uncertain. The tapetums degradation is delayed. The mutants can only produce partial inactivated pollens | Yan et al., | ||||||
pif3 | 败育发生在单核小孢子向二核小孢子转变期。花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Yang et al., | ||||||
Slglt1 | 败育发生在单核小孢子向二核小孢子转变期。花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Yang et al., | ||||||
Slcwin9 | 败育发生在单核小孢子向二核小孢子转变期 花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Yang et al., | ||||||
ams | 败育发生时期不确定。花粉发育异常,多数花粉失去活性 The stage of male sterility occurrence is uncertain. The pollens develop abnormally and most of them are inviable | Bao et al., | ||||||
lerboh lerbohe | 败育发生时期不确定。绒毡层降解延迟,花粉败育 The stage of male sterility occurrence is uncertain. The tapetums degradation is delayed. The mutants can only produce partial inactivated pollens | Dai et al., | ||||||
tpd1 | 败育发生在减数分裂前。绒毡层无法形成,孢母细胞无法进行减数分裂 Male sterility occurs before meiosis. Microspore mother cells fail to undergo meiosis and tapetum degrade grandually | Salazar-Sarasua et al., | ||||||
Slaco2 | 败育发生在减数分裂期。花粉形态结构正常,但活力极低 Male sterility occurs during meiosis stage. The mutants produce normal-shaped pollens,but the pollen viability is extremely low | Secgin et al., | ||||||
mapk4 | 败育发生在二核小孢子向成熟花粉转变期。花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Wang et al., | ||||||
bg10 | 败育发生在四分体向小孢子转变期。胼胝质降解受阻,小孢子无法从四分体解离,花粉畸形,活力和发芽率极低 Male sterility occurs during the transition stage from tetrads to microspores. Callose degradation is inhibited,and microspores can not be released from tetrads. The pollens are abnormal and almost inviable | Pei et al., |
表1 番茄雄性不育突变体
Table 1 Tomato male sterile mutants
类型Type | 突变体 Mutant | 表型Phenotype | 参考文献Reference | |||||
---|---|---|---|---|---|---|---|---|
结构不育 Structural male sterility | variable male sterile (vms) | 高温雄性不育,低温部分恢复 Male sterility occurs under higher temperatures,and is restored partially under lower temperatures | Rick & Boynton, | |||||
Sl-2/Slglo2/7b-1/tpi/ms30/ms33 | 雄蕊心皮化。sl 2高温不育,低温育性部分恢复。7b-1长日照下不育,短日照下育性部分恢复 Anthers develop abnormally with carpelloid-like stamens. sl 2 is male sterile under higher temperatures but show fertile under lower temperatures. 7b-1 shows male sterile in short days but fertile in long days. | Sawhney, | ||||||
green pistillate (gpi)/ pi-2(pistillate 2) | 雄蕊心皮化,同时伴有花瓣萼片化 Stamens are carpelloid,and petals are sepaloid | Rasmussen & Green, | ||||||
tag1 | 花药发育异常,雄蕊心皮化,花粉母细胞无法进行减数分裂,形成小孢子Anthers develop abnormally with carpelloid-like stamens,and pollen mother cells do not undergo meiosis to form microspores | Pnueli et al., | ||||||
Slglo1/globosa/lepi/tpib | 雄蕊发育异常。高温不育,低温育性部分恢复 Anthers develop abnormally. Male sterility occurs under higher temperature conditions,and fertility is restored under lower temperatures | Gómez et al., | ||||||
sl/Sl-pr/ tap3/sldef/csp | 雄蕊发育异常,高温不育,低温或喷施赤霉素育性部分恢复 Anthers develop abnormally. Male sterility occurs under higher temperature conditions,and fertility is restored partially under lower temperatures or with gibberellic acid treatment | Gómez et al., | ||||||
结构不育 Structural male sterility | ms-15/tm6/tdr6 | 花药发育异常,雄蕊心皮化,花粉母细胞无法进行减数分裂,形成小孢子Anthers develop abnormally with carpelloid-like stamens,and pollen mother cells do not undergo meiosis to form microspores | Cao et al., | |||||
功能不育 Functional male sterility | positional sterile (ps) | 成熟花药无法开裂,花粉无法散出 The mature pollens are not released due to non-dehiscent anthers | Larson & Paur, | |||||
exerted stigma (ex) | 柱头外露 Exserted stigmas | Rick & Robinson, | ||||||
style2.1 | 柱头外露 Exserted stigmas | Chen et al., | ||||||
ps2 | 药室外壁结构异常导致花药无法开裂,花粉无法散出 Locule wall of anthers develop abnormally,which lead to delayed anther dehiscence and failed pollen release | Gorguet et al., | ||||||
procera(pro) | 柱头外露exserted stigmas | Carrera et al., | ||||||
Solanum lycopersicum long styles (SlLst) | 柱头外露exserted stigmas | Cheng et al., | ||||||
孢子不育 Sporogenous male sterility | ms3 | 败育发生在减数分裂前。孢母细胞发育异常 Male sterility occurs before meiosis. Microspore mother cells develop abnormally | Rick & Butler, | |||||
ms5 | 败育发生在减数分裂期。减数分裂异常,绒毡层细胞发育异常 Male sterility occurs during meiosis stage. Meiosis dysfunctions and tapetum develops abnormally | Rick & Butler, | ||||||
ms11 | 败育发生在减数分裂期。绒毡层提前降解,减数分裂异常,无法形成四分体 Male sterility occurs during meiosis stage. Tapetum degrades in advance. Microspore mother cells fail to give rise to tetrads owing to dysfunctional meiosis | Gorman et al., | ||||||
Lesut2 | 败育发生时期不确定。花粉活力降低 The stage of male sterility occurrence is uncertain. The pollen viability reduces obviously | Hackel et al., | ||||||
ms1 | 败育发生时期不确定。花粉完全败育。 拟南芥、玉米、水稻ms1突变体绒毡层降解延迟,小孢子从四分体释放后花粉壁发育异常逐渐降解最终完全败育 The stage of male sterility occurrence is uncertain. The pollen is completely male sterile. The tapetums degradation is delayed and the microspores degenerate gradually owing to abnormal exine development,which lead to complete male sterility in ms1 of Arabidopsis,rice and corn. | Vizcay-Barrena & Wilson, | ||||||
ga20ox1 | 败育发生在减数分裂期。减数分裂异常,无法形成或只形成部分异常四分体,花粉部分败育。雌蕊发育异常 Male sterility occurs during meiosis stage. Owing to dysfunctional meiosis,microspore mother cells fail to produce tetrads or just produce few abnormal tetrads and generate few viable pollens. The mutant is also female sterile | Olimpieri et al., | ||||||
ms10 | 败育发生在减数分裂期。减数分裂后期发生异常,绒毡层细胞质空泡化膨大,小孢子无法形成 Male sterility occurs during meiosis stage. Tapetum is enlarged and vacuolated,and meiocytes degrade and fail to give rise to microspores at anaphase | Jeong et al., | ||||||
Lepro | 败育发生时期不确定。花粉在柱头水合受到影响,花粉管伸长受抑制 The stage of male sterility occurrence is uncertain. The tapetums degradation is delayed. The pollen hydration is affected,and the pollen tube elongation is inhibited | Yu & Mandayam, | ||||||
mapk7 | 败育发生在单核小孢子向二核小孢子转变期。绒毡层降解过快,花粉内壁发育异常,单核小孢子无法发育成成熟花粉,90%花粉无活力 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. The tapetum degrades in advance. Intine layer of pollen appears abnormal. And the uninucleate microspores can not develop into mature pollens. Approximately 90 % of the pollen grains lack viability | Chen et al., | ||||||
gpat6-a | 败育发生时期不确定。花粉数减少,花粉活力降低 The stage of male sterility occurrence is uncertain. The produced pollens decrease obviously,and pollen viability reduces. | Petit et al., | ||||||
hyd | 败育发生在减数分裂前。花药畸形,孢母细胞及绒毡层发育异常,无花粉产生 Male sterility occurs before meiosis. Microspore mother cells and tapetum layer develop abnormally in malformed anthers,and the mutant fail to produce any pollens | Rojas-Gracia et al., | ||||||
mapk20 | 败育发生在单核小孢子向二核小孢子转变期。花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Chen et al., | ||||||
孢子不育 Sporogenous male sterility | Slmyb32 | 败育发生时期不确定。突变后花粉部分失活 The stage of male sterility occurrence is uncertain. The mutants can only produce partial inactivated pollens | Chen et al., | |||||
Slnced1 | 败育发生在减数分裂期。四分体发育异常,花粉部分败育。雌蕊发育异常 The mutants show male and female sterility. Male sterility occurs during meiosis stage. The mutants can only develop few normal pollens owing to abnormal tetrad development | Dai et al., | ||||||
Slpin8 | 花药瘦小。败育发生时期不确定。80%花粉失去活力,花粉育性可部分被外源生长素恢复 The anthers are atrophied. Approximately 80% of the pollen grains are abnormal and lack viability,and the fertility is restored partially with IAA treatment | Gan et al., | ||||||
ms32 | 花器变小。败育发生在减数分裂期。减数分裂异常,孢母细胞退化,无法形成四分体 The flower is smaller. Male sterility occurs during meiosis stage. Meiosis dysfunctions. Microspore mother cells degrade and can not generate tetrads | Liu et al., | ||||||
Slida | 败育发生时期不确定。绒毡层延迟降解,多数花粉失活,花药无法开裂 The stage of male sterility occurrence is uncertain. The tapetums degradation is delayed. Most of pollens produced are inviable. The anthers are non-dehiscent | Wang et al., | ||||||
bzr1 | 败育发生时期不确定。绒毡层降解延迟,花粉部分败育 The stage of male sterility occurrence is uncertain. The tapetums degradation is delayed. The mutants can only produce partial inactivated pollens | Yan et al., | ||||||
pif3 | 败育发生在单核小孢子向二核小孢子转变期。花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Yang et al., | ||||||
Slglt1 | 败育发生在单核小孢子向二核小孢子转变期。花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Yang et al., | ||||||
Slcwin9 | 败育发生在单核小孢子向二核小孢子转变期 花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Yang et al., | ||||||
ams | 败育发生时期不确定。花粉发育异常,多数花粉失去活性 The stage of male sterility occurrence is uncertain. The pollens develop abnormally and most of them are inviable | Bao et al., | ||||||
lerboh lerbohe | 败育发生时期不确定。绒毡层降解延迟,花粉败育 The stage of male sterility occurrence is uncertain. The tapetums degradation is delayed. The mutants can only produce partial inactivated pollens | Dai et al., | ||||||
tpd1 | 败育发生在减数分裂前。绒毡层无法形成,孢母细胞无法进行减数分裂 Male sterility occurs before meiosis. Microspore mother cells fail to undergo meiosis and tapetum degrade grandually | Salazar-Sarasua et al., | ||||||
Slaco2 | 败育发生在减数分裂期。花粉形态结构正常,但活力极低 Male sterility occurs during meiosis stage. The mutants produce normal-shaped pollens,but the pollen viability is extremely low | Secgin et al., | ||||||
mapk4 | 败育发生在二核小孢子向成熟花粉转变期。花粉由单核向二核转变时发生败育 Male sterility occurs during the transition stage from uninucleate to binucleate microspores. Uninucleate microspores fail to undergo mitosis to generate binucleate microspores | Wang et al., | ||||||
bg10 | 败育发生在四分体向小孢子转变期。胼胝质降解受阻,小孢子无法从四分体解离,花粉畸形,活力和发芽率极低 Male sterility occurs during the transition stage from tetrads to microspores. Callose degradation is inhibited,and microspores can not be released from tetrads. The pollens are abnormal and almost inviable | Pei et al., |
类型 Type | 基因/位点 Gene/locus | 基因编号 ID | 编码蛋白 Protein | 表达 Expression | 调控机理 Molecular regulatory mechanism | 参考文献 Reference |
---|---|---|---|---|---|---|
结构不育 Structural male sterility | TAP3/SlDEF | Solyc04g081000 | MADS-box家族B类转录因子 Class B MADS-box transcription factors | 发育初期在花药组织内表达 Expressed in early stage of stamen development | 调控花器官发育的ABCDE分子模型 ABCDE model of flower development | Quinet et al., |
SlGLO1/GLOBOSA,/LePI/TPIB | Solyc08g06723 | MADS-box家族B类转录因子 Class B MADS-box transcription factors | 发育初期在花药组织内表达Expressed in early stage of stamen development | 调控花器官发育的ABCDE分子模型 ABCDE model of flower development | Guo et al., | |
7B-1/GLO2/MS30/MS33 | Solyc06g059970 | MADS-box家族B类转录因子 Class B MADS-box transcription factors | 发育初期在花药组织内表达Expressed in early stage of stamen development | 调控花器官发育的ABCDE分子模型 ABCDE model of flower development | Pucci et al., | |
MS-15/TM6/TDR6 | Solyc02g084630 | MADS-box家族B类转录因子 Class B MADS-box transcription factors | 发育初期在花药组织内表达 Expressed in early stage of stamen development | 调控花器官发育的ABCDE分子模型 ABCDE model of flower development | Cao et al., | |
功能不育 Functional male sterility | Style2.1 | Solyc02g087660 | Style2.1,basic helix-loop-belix (bHLH)转录因子 bHLH family transcription factor | 在花柱组织细胞内表达 Expressed in style through the whole development satge | 调控花柱细胞伸长,柱头外露 Controlling style cell elongation to protrude the style beyond the anthers | Chen et al., |
PS-2 | Solyc04g015530 | 多聚半乳糖醛酸酶 Polygalacturonase | 拟南芥同源基因在花药开裂区域表达Arabidopsis homolog of PS-2 is expressed in the anther dehiscence zone | 未知 Unknown | Gorguet et al., | |
孢子不育 Sporogenous male sterility | LeSUT2 | Solyc11g017010 | 蔗糖转运蛋白2 Sucrose transporter2 | 花药组织内高表达 Highly expressed in stamens | 可能具有蔗糖转运蛋白活性,参与蔗糖运输Probably participate in sucrose transport as the transporter protein | Hackel et al |
MS1 | Solyc04g008420 | Male sterility1,plant homeodomain(PHD) 转录因子 PHD transcription factor | 拟南芥同源基因在减数分裂期绒毡层表达 Arabidopsis homolog of MS1 is expressed in tapetum | 拟南芥和水稻同源基因调控花药脂质代谢,调控花粉壁发育相关的基因表达 Arabidopsis and rice homologs of MS1 regulate transcription of genes involved in lipid metabolism,programmed cell death of tapetum and pollen wall formation | Yang et al., Yang et al., | |
GA20ox1 | Solyc03g006880 | GA 20 氧化酶1,参与 GA 代谢 Gibberellins 20 oxidase1,involved in Gibberellins metabolism | 花药组织内高表达 Highly expressed in stamens | 赤霉素信号转导受阻导致减数分裂异常 Inhibition of GA signaling leads to abnormal meiosis | Olimpieri et al., | |
SlDELLA | Solyc11g011260 | DELLA蛋白,GA信号转导元件 GA signal transduction element | 未知 Unknown | 通过赤霉素信号转导调控花柱细胞伸长,柱头外露 Controlling style cell elongation to protrude the style beyond the anthers through GA signaling transduction | Carrera et al., | |
MS10 | Solyc02g079810 | Male sterility10,basic helix-loop-helix (bHLH) 家族转录因子 bHLH family transcription factor | 减数分裂以前在花粉母细胞、绒毡层细胞内表达;减数分裂期主要在绒毡层细胞内表达 Expressed in microspore mother cells and tapetums before meiosis. Expressed in tapetums during meiosis stage | 调控参与花粉发育相关的细胞壁形成、脂类代谢基因以及减数分裂相关基因 Regulating expression of genes involved in meiosis,pollen wall formation and lipid metabolism | Jeong et al., | |
LePro1 | Solyc12g044630 | 花粉肌动蛋白1 Pollen Profilin 1 | 在成熟花粉或花粉管中表达Expressed in mature pollen and pollen tubes | 调控花粉在柱头的水合、萌发以及花粉管生长,花粉活力降低 Controlling pollen hydration,germination and pollen tube elongation | Yu & Mandayam, | |
SlMAPK7 | Solyc08g081490 | 裂原活化蛋白激酶7 Mitogen-activated protein kinase 7 | 未知 Unknown | 调控绒毡层程序化死亡和花粉内壁发育 | Chen et al., | |
Sl-IAA27 | Solyc03g120500 | Aux/IAA27 蛋白生长素信号转导元件Aux/IAA蛋白 auxin (IAA) signal transduction element | 未知 Unknown | 生长素信号转导受阻导致减数分裂异常 Auxin (IAA) signaling is blocked in the mutant,which leads to defect meiosis | Guillotin et al., | |
GPAT6-a | Solyc09g014350 | 甘油-3-磷酸酰基转移酶 Glycerol-3-phosphate acyltransferase | 未知 Unknown | 可能参与花粉发育过程中脂质、细胞壁生物合成及代谢 Probably regulating pollen wall formation and lipid metabolism | Petit et al., | |
HYD | Solyc07g063670 | HYDRA,SPOROCYTELESS/NOZZLE (SPL/NZZ) 转录因子 SPOROCYTELESS/NOZZLE (SPL/NZZ) transcription factor | 发育早期在雄蕊组织各部位表达,之后在孢母细胞内表达 Expressed in whole stamen tissues at early stage,then in microspore mother cells | 可能通过调控赤霉素合成影响雄蕊发育 Regulating stamen development through the modulation of gibberellin metabolism | Rojas-Gracia et al., | |
SlMAPK20 | Solyc07g056350 | 裂原活化蛋白激酶 Mitogen-activated protein kinase20 | 主要在四分体以及小孢子细胞中表达 Expressed in tetrads and microspores | 与SlMYB32协同转录调控蔗糖、生长素代谢和其它信号途径基因表达,调控减数分裂后花粉发育 Interacting with SlMYB32 to regulate transcription of genes involved in sucrose and IAA metabolism,as well as other signaling pathway after meiosis | Chen et al., | |
SlMYB32 | Solyc10g055410 | MYB32,R2R3 MYB 转录因子 R2R3MYB transcription factor 32 | 二核花粉时期在花药组织内高表达 Expressed in stamens at binucleate microspores stage | 未知 Unknown | Chen et al., | |
SlNCED1 | Solyc08g016720 | 9-顺式环氧类胡萝卜素双加氧酶1,参与ABA 合成 9-cis-epoxycarotenoid dioxygenase1,involved in ABA synthesis | 转录发生在花粉发育整个时期生殖细胞内 Expressed in germ cells through the whole pollen development stage | ABA信号调控花粉发育相关的脂类、碳水化合物以及细胞壁形成基因表达 Regulating expression of genes involved in lipid metabolism,carbohydrate metabolism and pollen wall formation through ABA signaling | Dai et al., | |
SlPIN8 | Solyc02g087660 | PIN-FORMED 8 蛋白,生长素转运蛋白 auxin (IAA) transport protein | 花粉发育后期在花粉细胞内表达 Expressed in germ cells at late-stage pollen development | 调控生长素稳态;正调控MS10基因表达。Regulating cellular auxin homoeostasis;Positively regulating MS10 gene expression | Gan et al., | |
MS32 | Solyc01g081100 | Male sterility1,basic helix-loop-helix (bHLH) 家族转录因子 bHLH family transcription factor | 未知 Unknown | 拟南芥同源基因DYT1-TDF1- AMS-bHLH10/89/ 91-MYB80 形成转录模块调控花粉和绒毡层发育 Arabidopsis homologs of DYT1-TDF1-AMS-bHLH10 /89/ 91-MYB80 form a transcriptional cascade to regulate pollen and tapetum development | Liu et al., | |
STR | Solyc03g053130 | 异胡豆苷合酶 Strictosidine synthase | 未知 Unknown | 拟南芥同源基因为花粉外壁发育代谢通路的关键基因 Arabidopsis homolog of STR is the key gene in metabolic pathway of pollen wall development | Du et al., | |
SlIDA | Solyc05g010000 | 14-mer烯醇化酶纤溶酶原互作多肽 14-mer enolase- plasminogen interaction peptide peptide | 发育前期在绒毡层、小孢子表达;发育后期在花药隔壁和成熟花粉以及花粉管内表达 Expressed in the tapetum and microspores during early stage;Expressed in septum,mature pollens and pollen tube during late stage | 正调控花粉及绒毡层内的活性氧水平 Positively regulating ROS levels in tapetums and pollens | Wang et al., | |
BZR1 | Solyc04g079980 | BRASSINAZOLE RESISTANT 1, 油菜素内酯信号转录因子 Brassinosteroid (BR) signaling transcription factor | 未知 Unknown | 影响了绒毡层活性氧和程序化死亡,导致绒毡层降解延迟或提早 Altering the timing of reactive oxygen species (ROS) production and programmed cell death (PCD) in tapetal cells,resulting in delayed or premature tapetal degeneration | Yan et al., | |
DWF | Solyc02g089160 | CYP85A1,细胞色素P450 Cytochrome P450 | 未知 Unknown | 影响了绒毡层活性氧和程序化死亡,导致绒毡层降解延迟或提早 Altering the timing of reactive oxygen species (ROS) production and programmed cell death (PCD) in tapetal cells,resulting in delayed or premature tapetal degeneration | Yan et al., | |
PIF3 | Solyc01g102300 | 光敏色素互作因子3,basic helix-loop-helix (bHLH) 家族转录因子 Phytochrome interacting factor3,bHLH family transcription factor | 转录发生在花粉发育整个时期生殖细胞内 Expressed in germ cells through the whole pollen development stage | 转录调控花粉发育相关的碳水化合物代谢以及生长素信号途径基因 Regulating transcription of genes involved in carbohydrate metabolism and IAA signaling | Yang et al., | |
SlGLT1 | Solyc03g083440 | NADH依赖的谷氨酰胺-氧戊二酸转氨酶 NADH-dependent glutamine-2-oxoglutarate aminotransferase | 主要在四分体及成熟花粉 Expressed in tetrads and mature pollens | 可能参与生长素合成前体代谢 Probably involved in synthesis of auxin precursors | Yang et al., | |
SlCWIN9 | Solyc10g085650 | 细胞壁酸性转化酶9 Cell wall invertase 9 | 主要在四分体及成熟花粉表达 Expressed in tetrads and mature pollens | 可能参与花粉发育相关的糖代谢 Regulating sugar metabolism involved in pollen development | Yang et al., | |
SlAMS | Solyc08g062780 | ABORTED MICROSPORES,bHLH 转录因子 bHLH family transcription factor | 花药组织内表达 Expressed specially in stamens | 拟南芥同源基因DYT1-TDF1- AMS-bHLH10/89/ 91-MYB80形成花粉、绒毡层发育转录调控模块 Arabidopsis homologs of DYT1-TDF1-AMS- bHLH10/89/ 91-MYB80 form a transcriptional cascade to regulate pollen and tapetum development | Bao et al., | |
LeRBOHE | Solyc07g042460 | 呼吸爆发氧化酶Respiratory burst oxidase | 花药组织内表达 Highly expressed in stamens | 正调控花药组织内活性氧水平,负调控绒毡层程序化死亡 Regulating ROS levels in anthers positively and regulating programmed cell death of tapetum negatively | Dai et al., | |
SlCMT4 | Solyc08g005400 | DNA甲基转移酶4 DNA methyltransferase 4 | 未知 Unknown | 转录调控花粉壁形成相关的果胶甲基酯酶抑制蛋白基因SlPMEI 和花粉管发育相关的前蛋白质原基因SlPRALF的表达,控制花粉活力和花粉管伸长 Transcriptionally regulating the expression of the pectin methylesterase inhibitor gene SlPMEI involved in pollen wall formation and the preproprotein gene SlPRALF that negatively regulates pollen tube elongation | Guo et al., | |
SlTPD1 | Solyc03g097530 | Tapetum determinant1,小肽,拟南芥同源蛋白为EMS1/EXS 配体 Tapetum determinant1,small peptide,Arabidopsis homolog of TPD1 acts as a ligand of EXCESS MICROSPOROCYTES 1/EXTRA SPOROGENOUS CELLS (EMS1/EXS) | 转录发生在发育各时期,主要在孢原细胞、绒毡层组织、花粉细胞表达 Expressed in sporogenous cells,tapetum,microspores and mature pollens of anthers at different stages of pollen development | 调控花药组织内活性氧稳态,调控花粉发育相关的多个基因如MS10,AMS等 Regulating redox homeostasis during male gametogenesis;Regulating transcription of genes involved in pollen development,such as MS10,AMS and so on | Salazar-Sarasua et al., | |
SlACO2 | Solyc12g005860 | ACC合成酶 1-aminocyclopropane-1- carboxylicacidoxidase,ACO | 未知 Unknown | 可能通过乙烯信号调控控制花粉发育 Probably regulating pollen development through ethylene signaling | Secgin et al., | |
SlMAPK4 | Solyc11g072630 | 裂原活化蛋白激酶 Mitogen-activated protein kinase 4 | 仅在成熟花粉粒中表达 Expressed in mature pollens | 调控花粉发育相关的碳水化合物代谢基因、信号转导基因。调控花粉壁发育 Involved in pollen wall development. Regulating gens of carbohydrate metabolism and signaling transduction | Wang et al., | |
SlBG10 | Solyc11g065280 | β-1,3-葡聚糖酶β-1,3-glucanase | 发育早期在幼蕾期组织内高表达Highly expressed in young stamens at early development stage | 具有胼胝质水解酶活性,参与胼胝质代谢 Involved in callus metabolism as callus hydrolase | Pei et al., |
表2 番茄雄性不育基因及分子调控机理
Table 2 Tomato male sterility gene and molecular regulatory mechanism
类型 Type | 基因/位点 Gene/locus | 基因编号 ID | 编码蛋白 Protein | 表达 Expression | 调控机理 Molecular regulatory mechanism | 参考文献 Reference |
---|---|---|---|---|---|---|
结构不育 Structural male sterility | TAP3/SlDEF | Solyc04g081000 | MADS-box家族B类转录因子 Class B MADS-box transcription factors | 发育初期在花药组织内表达 Expressed in early stage of stamen development | 调控花器官发育的ABCDE分子模型 ABCDE model of flower development | Quinet et al., |
SlGLO1/GLOBOSA,/LePI/TPIB | Solyc08g06723 | MADS-box家族B类转录因子 Class B MADS-box transcription factors | 发育初期在花药组织内表达Expressed in early stage of stamen development | 调控花器官发育的ABCDE分子模型 ABCDE model of flower development | Guo et al., | |
7B-1/GLO2/MS30/MS33 | Solyc06g059970 | MADS-box家族B类转录因子 Class B MADS-box transcription factors | 发育初期在花药组织内表达Expressed in early stage of stamen development | 调控花器官发育的ABCDE分子模型 ABCDE model of flower development | Pucci et al., | |
MS-15/TM6/TDR6 | Solyc02g084630 | MADS-box家族B类转录因子 Class B MADS-box transcription factors | 发育初期在花药组织内表达 Expressed in early stage of stamen development | 调控花器官发育的ABCDE分子模型 ABCDE model of flower development | Cao et al., | |
功能不育 Functional male sterility | Style2.1 | Solyc02g087660 | Style2.1,basic helix-loop-belix (bHLH)转录因子 bHLH family transcription factor | 在花柱组织细胞内表达 Expressed in style through the whole development satge | 调控花柱细胞伸长,柱头外露 Controlling style cell elongation to protrude the style beyond the anthers | Chen et al., |
PS-2 | Solyc04g015530 | 多聚半乳糖醛酸酶 Polygalacturonase | 拟南芥同源基因在花药开裂区域表达Arabidopsis homolog of PS-2 is expressed in the anther dehiscence zone | 未知 Unknown | Gorguet et al., | |
孢子不育 Sporogenous male sterility | LeSUT2 | Solyc11g017010 | 蔗糖转运蛋白2 Sucrose transporter2 | 花药组织内高表达 Highly expressed in stamens | 可能具有蔗糖转运蛋白活性,参与蔗糖运输Probably participate in sucrose transport as the transporter protein | Hackel et al |
MS1 | Solyc04g008420 | Male sterility1,plant homeodomain(PHD) 转录因子 PHD transcription factor | 拟南芥同源基因在减数分裂期绒毡层表达 Arabidopsis homolog of MS1 is expressed in tapetum | 拟南芥和水稻同源基因调控花药脂质代谢,调控花粉壁发育相关的基因表达 Arabidopsis and rice homologs of MS1 regulate transcription of genes involved in lipid metabolism,programmed cell death of tapetum and pollen wall formation | Yang et al., Yang et al., | |
GA20ox1 | Solyc03g006880 | GA 20 氧化酶1,参与 GA 代谢 Gibberellins 20 oxidase1,involved in Gibberellins metabolism | 花药组织内高表达 Highly expressed in stamens | 赤霉素信号转导受阻导致减数分裂异常 Inhibition of GA signaling leads to abnormal meiosis | Olimpieri et al., | |
SlDELLA | Solyc11g011260 | DELLA蛋白,GA信号转导元件 GA signal transduction element | 未知 Unknown | 通过赤霉素信号转导调控花柱细胞伸长,柱头外露 Controlling style cell elongation to protrude the style beyond the anthers through GA signaling transduction | Carrera et al., | |
MS10 | Solyc02g079810 | Male sterility10,basic helix-loop-helix (bHLH) 家族转录因子 bHLH family transcription factor | 减数分裂以前在花粉母细胞、绒毡层细胞内表达;减数分裂期主要在绒毡层细胞内表达 Expressed in microspore mother cells and tapetums before meiosis. Expressed in tapetums during meiosis stage | 调控参与花粉发育相关的细胞壁形成、脂类代谢基因以及减数分裂相关基因 Regulating expression of genes involved in meiosis,pollen wall formation and lipid metabolism | Jeong et al., | |
LePro1 | Solyc12g044630 | 花粉肌动蛋白1 Pollen Profilin 1 | 在成熟花粉或花粉管中表达Expressed in mature pollen and pollen tubes | 调控花粉在柱头的水合、萌发以及花粉管生长,花粉活力降低 Controlling pollen hydration,germination and pollen tube elongation | Yu & Mandayam, | |
SlMAPK7 | Solyc08g081490 | 裂原活化蛋白激酶7 Mitogen-activated protein kinase 7 | 未知 Unknown | 调控绒毡层程序化死亡和花粉内壁发育 | Chen et al., | |
Sl-IAA27 | Solyc03g120500 | Aux/IAA27 蛋白生长素信号转导元件Aux/IAA蛋白 auxin (IAA) signal transduction element | 未知 Unknown | 生长素信号转导受阻导致减数分裂异常 Auxin (IAA) signaling is blocked in the mutant,which leads to defect meiosis | Guillotin et al., | |
GPAT6-a | Solyc09g014350 | 甘油-3-磷酸酰基转移酶 Glycerol-3-phosphate acyltransferase | 未知 Unknown | 可能参与花粉发育过程中脂质、细胞壁生物合成及代谢 Probably regulating pollen wall formation and lipid metabolism | Petit et al., | |
HYD | Solyc07g063670 | HYDRA,SPOROCYTELESS/NOZZLE (SPL/NZZ) 转录因子 SPOROCYTELESS/NOZZLE (SPL/NZZ) transcription factor | 发育早期在雄蕊组织各部位表达,之后在孢母细胞内表达 Expressed in whole stamen tissues at early stage,then in microspore mother cells | 可能通过调控赤霉素合成影响雄蕊发育 Regulating stamen development through the modulation of gibberellin metabolism | Rojas-Gracia et al., | |
SlMAPK20 | Solyc07g056350 | 裂原活化蛋白激酶 Mitogen-activated protein kinase20 | 主要在四分体以及小孢子细胞中表达 Expressed in tetrads and microspores | 与SlMYB32协同转录调控蔗糖、生长素代谢和其它信号途径基因表达,调控减数分裂后花粉发育 Interacting with SlMYB32 to regulate transcription of genes involved in sucrose and IAA metabolism,as well as other signaling pathway after meiosis | Chen et al., | |
SlMYB32 | Solyc10g055410 | MYB32,R2R3 MYB 转录因子 R2R3MYB transcription factor 32 | 二核花粉时期在花药组织内高表达 Expressed in stamens at binucleate microspores stage | 未知 Unknown | Chen et al., | |
SlNCED1 | Solyc08g016720 | 9-顺式环氧类胡萝卜素双加氧酶1,参与ABA 合成 9-cis-epoxycarotenoid dioxygenase1,involved in ABA synthesis | 转录发生在花粉发育整个时期生殖细胞内 Expressed in germ cells through the whole pollen development stage | ABA信号调控花粉发育相关的脂类、碳水化合物以及细胞壁形成基因表达 Regulating expression of genes involved in lipid metabolism,carbohydrate metabolism and pollen wall formation through ABA signaling | Dai et al., | |
SlPIN8 | Solyc02g087660 | PIN-FORMED 8 蛋白,生长素转运蛋白 auxin (IAA) transport protein | 花粉发育后期在花粉细胞内表达 Expressed in germ cells at late-stage pollen development | 调控生长素稳态;正调控MS10基因表达。Regulating cellular auxin homoeostasis;Positively regulating MS10 gene expression | Gan et al., | |
MS32 | Solyc01g081100 | Male sterility1,basic helix-loop-helix (bHLH) 家族转录因子 bHLH family transcription factor | 未知 Unknown | 拟南芥同源基因DYT1-TDF1- AMS-bHLH10/89/ 91-MYB80 形成转录模块调控花粉和绒毡层发育 Arabidopsis homologs of DYT1-TDF1-AMS-bHLH10 /89/ 91-MYB80 form a transcriptional cascade to regulate pollen and tapetum development | Liu et al., | |
STR | Solyc03g053130 | 异胡豆苷合酶 Strictosidine synthase | 未知 Unknown | 拟南芥同源基因为花粉外壁发育代谢通路的关键基因 Arabidopsis homolog of STR is the key gene in metabolic pathway of pollen wall development | Du et al., | |
SlIDA | Solyc05g010000 | 14-mer烯醇化酶纤溶酶原互作多肽 14-mer enolase- plasminogen interaction peptide peptide | 发育前期在绒毡层、小孢子表达;发育后期在花药隔壁和成熟花粉以及花粉管内表达 Expressed in the tapetum and microspores during early stage;Expressed in septum,mature pollens and pollen tube during late stage | 正调控花粉及绒毡层内的活性氧水平 Positively regulating ROS levels in tapetums and pollens | Wang et al., | |
BZR1 | Solyc04g079980 | BRASSINAZOLE RESISTANT 1, 油菜素内酯信号转录因子 Brassinosteroid (BR) signaling transcription factor | 未知 Unknown | 影响了绒毡层活性氧和程序化死亡,导致绒毡层降解延迟或提早 Altering the timing of reactive oxygen species (ROS) production and programmed cell death (PCD) in tapetal cells,resulting in delayed or premature tapetal degeneration | Yan et al., | |
DWF | Solyc02g089160 | CYP85A1,细胞色素P450 Cytochrome P450 | 未知 Unknown | 影响了绒毡层活性氧和程序化死亡,导致绒毡层降解延迟或提早 Altering the timing of reactive oxygen species (ROS) production and programmed cell death (PCD) in tapetal cells,resulting in delayed or premature tapetal degeneration | Yan et al., | |
PIF3 | Solyc01g102300 | 光敏色素互作因子3,basic helix-loop-helix (bHLH) 家族转录因子 Phytochrome interacting factor3,bHLH family transcription factor | 转录发生在花粉发育整个时期生殖细胞内 Expressed in germ cells through the whole pollen development stage | 转录调控花粉发育相关的碳水化合物代谢以及生长素信号途径基因 Regulating transcription of genes involved in carbohydrate metabolism and IAA signaling | Yang et al., | |
SlGLT1 | Solyc03g083440 | NADH依赖的谷氨酰胺-氧戊二酸转氨酶 NADH-dependent glutamine-2-oxoglutarate aminotransferase | 主要在四分体及成熟花粉 Expressed in tetrads and mature pollens | 可能参与生长素合成前体代谢 Probably involved in synthesis of auxin precursors | Yang et al., | |
SlCWIN9 | Solyc10g085650 | 细胞壁酸性转化酶9 Cell wall invertase 9 | 主要在四分体及成熟花粉表达 Expressed in tetrads and mature pollens | 可能参与花粉发育相关的糖代谢 Regulating sugar metabolism involved in pollen development | Yang et al., | |
SlAMS | Solyc08g062780 | ABORTED MICROSPORES,bHLH 转录因子 bHLH family transcription factor | 花药组织内表达 Expressed specially in stamens | 拟南芥同源基因DYT1-TDF1- AMS-bHLH10/89/ 91-MYB80形成花粉、绒毡层发育转录调控模块 Arabidopsis homologs of DYT1-TDF1-AMS- bHLH10/89/ 91-MYB80 form a transcriptional cascade to regulate pollen and tapetum development | Bao et al., | |
LeRBOHE | Solyc07g042460 | 呼吸爆发氧化酶Respiratory burst oxidase | 花药组织内表达 Highly expressed in stamens | 正调控花药组织内活性氧水平,负调控绒毡层程序化死亡 Regulating ROS levels in anthers positively and regulating programmed cell death of tapetum negatively | Dai et al., | |
SlCMT4 | Solyc08g005400 | DNA甲基转移酶4 DNA methyltransferase 4 | 未知 Unknown | 转录调控花粉壁形成相关的果胶甲基酯酶抑制蛋白基因SlPMEI 和花粉管发育相关的前蛋白质原基因SlPRALF的表达,控制花粉活力和花粉管伸长 Transcriptionally regulating the expression of the pectin methylesterase inhibitor gene SlPMEI involved in pollen wall formation and the preproprotein gene SlPRALF that negatively regulates pollen tube elongation | Guo et al., | |
SlTPD1 | Solyc03g097530 | Tapetum determinant1,小肽,拟南芥同源蛋白为EMS1/EXS 配体 Tapetum determinant1,small peptide,Arabidopsis homolog of TPD1 acts as a ligand of EXCESS MICROSPOROCYTES 1/EXTRA SPOROGENOUS CELLS (EMS1/EXS) | 转录发生在发育各时期,主要在孢原细胞、绒毡层组织、花粉细胞表达 Expressed in sporogenous cells,tapetum,microspores and mature pollens of anthers at different stages of pollen development | 调控花药组织内活性氧稳态,调控花粉发育相关的多个基因如MS10,AMS等 Regulating redox homeostasis during male gametogenesis;Regulating transcription of genes involved in pollen development,such as MS10,AMS and so on | Salazar-Sarasua et al., | |
SlACO2 | Solyc12g005860 | ACC合成酶 1-aminocyclopropane-1- carboxylicacidoxidase,ACO | 未知 Unknown | 可能通过乙烯信号调控控制花粉发育 Probably regulating pollen development through ethylene signaling | Secgin et al., | |
SlMAPK4 | Solyc11g072630 | 裂原活化蛋白激酶 Mitogen-activated protein kinase 4 | 仅在成熟花粉粒中表达 Expressed in mature pollens | 调控花粉发育相关的碳水化合物代谢基因、信号转导基因。调控花粉壁发育 Involved in pollen wall development. Regulating gens of carbohydrate metabolism and signaling transduction | Wang et al., | |
SlBG10 | Solyc11g065280 | β-1,3-葡聚糖酶β-1,3-glucanase | 发育早期在幼蕾期组织内高表达Highly expressed in young stamens at early development stage | 具有胼胝质水解酶活性,参与胼胝质代谢 Involved in callus metabolism as callus hydrolase | Pei et al., |
基因/位点 Gene/locus | 突变位点 Mutation site | 分子标记 Molecular marker | 参考文献 Reference |
---|---|---|---|
PS2 | 剪接点突变,G ˃ C Mutation in exon-intron splice junction | dCAPS标记,PCR产物用HpyCH4IV酶切 dCAPS marker,the PCR products are digested by restriction enzyme HpyCH4IV Fw:CAAATTGGATGAGAGTTTTGAA Rv:CATTTTACAAGTGTAACAACTTG | Gorguet et al., |
MS10 | 启动子区398 bp 转座子片段插入 Insertion of a 398 bp retrotransposable DNA fragment in promoter | 显性标记 Dominant marker Fw:TTCTGTTGTGCGGAATTTGAGATAATAC Rv:CCTACTTCCCTTTCTTCAGAGTTG | Jeong et al., |
GPAT6-a | G163R | 待开发 To be developed | Petit et al., |
MS-15/TM6/TDR6 | G110T | InDel标记 InDel marker Fw:TAGAAGAACCCATTGCACTTTGT Rv:CAGAACCTCTCCAACATCATAATC | Cao et al., |
MS32 | T287* | dCAPS标记,PCR产物用DdeI酶切 dCAPS marker,the PCR products are digested with restriction enzyme DdeI Fw:GATGATTGCGTGCATCTTGG Rv:CGAAGGGTTATCTTGTGATCAAGCGACTT | Liu et al., |
MS30 | S59I | KASP标记 KASP marker Fw:GAAGGTGACCAAGTTCATGCTTTGACTTACGTAGTAGAAGGGA;GAAGGTCGGAGTCAACGGATTCTTACGTAGTAGAAGGGC Rv:CTTTGCTAGTTCTGGAAAGATGCATG | Wei et al., |
表3 番茄雄性不育基因突变位点及分子标记
Table 3 Mutation site in tomato male sterility genes and developed molecular markers
基因/位点 Gene/locus | 突变位点 Mutation site | 分子标记 Molecular marker | 参考文献 Reference |
---|---|---|---|
PS2 | 剪接点突变,G ˃ C Mutation in exon-intron splice junction | dCAPS标记,PCR产物用HpyCH4IV酶切 dCAPS marker,the PCR products are digested by restriction enzyme HpyCH4IV Fw:CAAATTGGATGAGAGTTTTGAA Rv:CATTTTACAAGTGTAACAACTTG | Gorguet et al., |
MS10 | 启动子区398 bp 转座子片段插入 Insertion of a 398 bp retrotransposable DNA fragment in promoter | 显性标记 Dominant marker Fw:TTCTGTTGTGCGGAATTTGAGATAATAC Rv:CCTACTTCCCTTTCTTCAGAGTTG | Jeong et al., |
GPAT6-a | G163R | 待开发 To be developed | Petit et al., |
MS-15/TM6/TDR6 | G110T | InDel标记 InDel marker Fw:TAGAAGAACCCATTGCACTTTGT Rv:CAGAACCTCTCCAACATCATAATC | Cao et al., |
MS32 | T287* | dCAPS标记,PCR产物用DdeI酶切 dCAPS marker,the PCR products are digested with restriction enzyme DdeI Fw:GATGATTGCGTGCATCTTGG Rv:CGAAGGGTTATCTTGTGATCAAGCGACTT | Liu et al., |
MS30 | S59I | KASP标记 KASP marker Fw:GAAGGTGACCAAGTTCATGCTTTGACTTACGTAGTAGAAGGGA;GAAGGTCGGAGTCAACGGATTCTTACGTAGTAGAAGGGC Rv:CTTTGCTAGTTCTGGAAAGATGCATG | Wei et al., |
靶基因Target gene | 基因编号ID | 策略Stratedy | 材料Genotype | 参考文献Reference |
---|---|---|---|---|
LeSUT2 | Solyc11g017010 | RNAi | Micro-Tom | Hackel et al., |
GA20ox1 | Solyc03g006880 | RNAi | Chico III | Olimpieri et al., |
LePro1 | Solyc12g044630 | RNAi | Moneymaker | Yu & Mandayam, |
SlMAPK7 | Solyc08g081490 | RNAi | Micro-Tom | Chen et al., |
SlPIN8 | Solyc02g087660 | RNAi | Micro-Tom | Gan et al., |
SlMAPK4 | Solyc11g072630 | RNAi | Micro-Tom | Wang et al., |
Barnase | M14442.1 | 异源过表达 Heterologous overexpression | Micro-Tom Moneymaker | Cao et al., |
SlNCED1 | Solyc08g016720 | 过表达或RNAi Overexpression or RNAi | Jia Bao | Dai et al., |
SlMAPK20 | Solyc07g056350 | RNAi;CRISPR/Cas9基因敲除 RNAi;CRISPR/Cas9 knock out | Micro-Tom | Chen et al., |
SlMYB32 | Solyc10g055410 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Chen et al., |
STR | Solyc03g053130 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | TB0993 | Du et al., |
SlIDA | Solyc05g010000 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Zhongshu 6 | Wang et al., |
MS10 | Solyc02g079810 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Liu et al., |
PIF3 | Solyc01g102300 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Yang et al., |
SlGLT1 | Solyc03g083440 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Yang et al., |
SlCWIN9 | Solyc10g085650 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Yang et al., |
SlAMS | Solyc08g062780 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Ailsa Craig | Bao et al., |
RBOH, RBOHE | Solyc01g099620 Solyc07g042460 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Alisa Craig | Dai et al., |
MS1 | Solyc04g008420 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Crocker | Gökdemir et al., |
SlCMT4 | Solyc08g005400.2 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Ailsa Craig | Guo et al., |
SlTPD1 | Solyc03g097530 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Moneymaker | Salazar-Sarasua et al., |
SlBG10 | Solyc11g065280 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Pei et al., |
MS10 | Solyc02g079810 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | TB0993;TB0249 | Zhou et al., |
MS15 | Solyc02g079810 Solyc02g081340 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | TB0993;TB0249 | Zhou et al., |
表4 番茄雄性不育突变体创制
Table 4 Creation of tomato male sterility
靶基因Target gene | 基因编号ID | 策略Stratedy | 材料Genotype | 参考文献Reference |
---|---|---|---|---|
LeSUT2 | Solyc11g017010 | RNAi | Micro-Tom | Hackel et al., |
GA20ox1 | Solyc03g006880 | RNAi | Chico III | Olimpieri et al., |
LePro1 | Solyc12g044630 | RNAi | Moneymaker | Yu & Mandayam, |
SlMAPK7 | Solyc08g081490 | RNAi | Micro-Tom | Chen et al., |
SlPIN8 | Solyc02g087660 | RNAi | Micro-Tom | Gan et al., |
SlMAPK4 | Solyc11g072630 | RNAi | Micro-Tom | Wang et al., |
Barnase | M14442.1 | 异源过表达 Heterologous overexpression | Micro-Tom Moneymaker | Cao et al., |
SlNCED1 | Solyc08g016720 | 过表达或RNAi Overexpression or RNAi | Jia Bao | Dai et al., |
SlMAPK20 | Solyc07g056350 | RNAi;CRISPR/Cas9基因敲除 RNAi;CRISPR/Cas9 knock out | Micro-Tom | Chen et al., |
SlMYB32 | Solyc10g055410 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Chen et al., |
STR | Solyc03g053130 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | TB0993 | Du et al., |
SlIDA | Solyc05g010000 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Zhongshu 6 | Wang et al., |
MS10 | Solyc02g079810 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Liu et al., |
PIF3 | Solyc01g102300 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Yang et al., |
SlGLT1 | Solyc03g083440 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Yang et al., |
SlCWIN9 | Solyc10g085650 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Yang et al., |
SlAMS | Solyc08g062780 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Ailsa Craig | Bao et al., |
RBOH, RBOHE | Solyc01g099620 Solyc07g042460 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Alisa Craig | Dai et al., |
MS1 | Solyc04g008420 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Crocker | Gökdemir et al., |
SlCMT4 | Solyc08g005400.2 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Ailsa Craig | Guo et al., |
SlTPD1 | Solyc03g097530 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Moneymaker | Salazar-Sarasua et al., |
SlBG10 | Solyc11g065280 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | Micro-Tom | Pei et al., |
MS10 | Solyc02g079810 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | TB0993;TB0249 | Zhou et al., |
MS15 | Solyc02g079810 Solyc02g081340 | CRISPR/Cas9基因敲除 CRISPR/Cas9 knock out | TB0993;TB0249 | Zhou et al., |
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