Acta Horticulturae Sinica ›› 2025, Vol. 52 ›› Issue (7): 1718-1732.doi: 10.16420/j.issn.0513-353x.2024-0645
• Genetic & Breeding·Germplasm Resources·Molecular Biology • Previous Articles Next Articles
SUN Dongyu1, WEI Dong1, YANG Yinyan1, HU Caizhu1, HU Zhiqun1, ZHOU Donghui2,*(), and ZHOU Biyan1,*
Received:
2024-11-03
Revised:
2025-05-21
Online:
2025-07-23
Published:
2025-07-23
Contact:
ZHOU Donghui, and ZHOU Biyan
SUN Dongyu, WEI Dong, YANG Yinyan, HU Caizhu, HU Zhiqun, ZHOU Donghui, and ZHOU Biyan. Physiological Response and Transcriptome Analysis of Wax Apple Flowering to Foliar Application of Chlorpyrifos[J]. Acta Horticulturae Sinica, 2025, 52(7): 1718-1732.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.ahs.ac.cn/EN/10.16420/j.issn.0513-353x.2024-0645
引物名称 Primer name | 上游引物(5′-3′) Forward primer | 下游引物(5′-3′) Reverse primer |
---|---|---|
β-actin | CTCAATCCCAAGGCGAATA | ACGACCACTGGCATAAAGG |
qSsCUT1 | ACCACATTATCCCCCTCACC | CATCTGGAACTCGACGCTCT |
qSsAlb | TCAAGAAGGCACCCCGATTA | CACCAGGGACCCACTACAGC |
qSsBCB | GGCGGAGTAGTGTAGAGATT | CTATGGGTGATGATGAGGAG |
qSsHTH | TGGACCGTGGCAAATAAGTA | GCAGATGTCAGCCCGAACTC |
qSsACT1 | GTTGTCGCACACGATAGGTT | CAAATGGCTGATGAGGATGT |
qSsPNC1 | TTCCCACAGTTCTTCCTAAT | CGACAACAATCTCTCTCCTC |
qSsGOLS2 | TGCGAGAAGACATGGAGCCA | ACCGATTTCATACTGAGGGG |
qSsARAC7 | CAGTATCCCACAATCCCAAG | ACACCAGCAACAAGTTCCCT |
Table 1 Primers used in qRT-PCR analysis
引物名称 Primer name | 上游引物(5′-3′) Forward primer | 下游引物(5′-3′) Reverse primer |
---|---|---|
β-actin | CTCAATCCCAAGGCGAATA | ACGACCACTGGCATAAAGG |
qSsCUT1 | ACCACATTATCCCCCTCACC | CATCTGGAACTCGACGCTCT |
qSsAlb | TCAAGAAGGCACCCCGATTA | CACCAGGGACCCACTACAGC |
qSsBCB | GGCGGAGTAGTGTAGAGATT | CTATGGGTGATGATGAGGAG |
qSsHTH | TGGACCGTGGCAAATAAGTA | GCAGATGTCAGCCCGAACTC |
qSsACT1 | GTTGTCGCACACGATAGGTT | CAAATGGCTGATGAGGATGT |
qSsPNC1 | TTCCCACAGTTCTTCCTAAT | CGACAACAATCTCTCTCCTC |
qSsGOLS2 | TGCGAGAAGACATGGAGCCA | ACCGATTTCATACTGAGGGG |
qSsARAC7 | CAGTATCCCACAATCCCAAG | ACACCAGCAACAAGTTCCCT |
处理 Treatment | 花穗总数 Number of whole flowering spikes | 成花枝率/% Flower branch rate |
---|---|---|
水H2O(对照Control) | 28.0 ± 2.2 | 35.0 ± 1.4 |
氯吡硫磷Chlorpyrifos | 78.4 ± 5.1 *** | 68.0 ± 4.3 *** |
Table 2 The effect of spraying chlorpyrifos on the flowering of wax apple
处理 Treatment | 花穗总数 Number of whole flowering spikes | 成花枝率/% Flower branch rate |
---|---|---|
水H2O(对照Control) | 28.0 ± 2.2 | 35.0 ± 1.4 |
氯吡硫磷Chlorpyrifos | 78.4 ± 5.1 *** | 68.0 ± 4.3 *** |
Fig. 1 Effects of MAD,AsA,GSH,soluble proteins content,and SOD,POD activities of chlorpyrifos spraying on wax apple After 13 days of chlorpyrifos treatment,flower buds were observed,while no flower buds were observed after 20 days of water spray treatment. Independent sample t-test,* P ≤ 0.05,** P ≤ 0.01,*** P ≤ 0.001,n = 5
样品 Sample | 清洁读取数量 Clean reads | 鸟嘌呤和胞嘧啶的含量百分比/% GC | 质量分数大于等于20的碱基比例/% Q20 | 质量分数大于等于30的碱基比例/% Q30 |
---|---|---|---|---|
L0-1 | 25 789 836 | 52.98 | 98.64 | 95.70 |
L0-2 | 23 913 102 | 53.08 | 98.53 | 95.41 |
LC1-1 | 24 353 062 | 53.80 | 98.35 | 95.03 |
LC1-2 | 25 939 216 | 53.75 | 98.31 | 94.91 |
LT1-1 | 23 117 038 | 53.76 | 98.32 | 94.95 |
LT1-2 | 21 600 592 | 53.78 | 98.20 | 94.66 |
LC2-1 | 21 019 944 | 53.83 | 98.35 | 95.01 |
LC2-2 | 21 746 492 | 54.09 | 98.62 | 95.61 |
LT2-1 | 22 263 240 | 53.77 | 98.30 | 94.88 |
LT2-2 | 25 333 724 | 54.05 | 98.58 | 95.52 |
Table 3 Transcriptional sequencing statistical results (quality control) of chlorpyrifos spray on wax apple flowering
样品 Sample | 清洁读取数量 Clean reads | 鸟嘌呤和胞嘧啶的含量百分比/% GC | 质量分数大于等于20的碱基比例/% Q20 | 质量分数大于等于30的碱基比例/% Q30 |
---|---|---|---|---|
L0-1 | 25 789 836 | 52.98 | 98.64 | 95.70 |
L0-2 | 23 913 102 | 53.08 | 98.53 | 95.41 |
LC1-1 | 24 353 062 | 53.80 | 98.35 | 95.03 |
LC1-2 | 25 939 216 | 53.75 | 98.31 | 94.91 |
LT1-1 | 23 117 038 | 53.76 | 98.32 | 94.95 |
LT1-2 | 21 600 592 | 53.78 | 98.20 | 94.66 |
LC2-1 | 21 019 944 | 53.83 | 98.35 | 95.01 |
LC2-2 | 21 746 492 | 54.09 | 98.62 | 95.61 |
LT2-1 | 22 263 240 | 53.77 | 98.30 | 94.88 |
LT2-2 | 25 333 724 | 54.05 | 98.58 | 95.52 |
Fig. 2 Number of differentially expressed genes in wax apple transcriptome induced by chlorpyrifos spray for flowering L0,LC1,LT1,LC2,and LT2 represent leaf samples collected at 0,1,and 4 days after treatment with chlorpyrifos or water(control),respectively. The same below
Fig. 7 The co-expression network of differentially expressed genes in wax apple induced by chlorpyrifos spraying for flowering Partial Least Squares Structural Equation Modeling(PLS-SEM)diagram. The central part of this diagram consists of the flowering induction module and the redox balance module,while the remaining modules are physiological processes and related hormones closely associated with the flowering induction process. The positive or negative path coefficients represent the positive or negative regulatory relationships between modules and between genes and modules. The width of the arrows reflects the absolute value of the closeness between factors,with the values on the arrows indicating the strength of factor loading for that pathway;larger values denote greater closeness. In the diagram,the pathways from the flowering induction module to the redox balance module,photosynthesis module,respiration module,and other modules form the primary pathways,while the pathways from the flowering induction module,redox balance module,photosynthesis module,respiration module,and other modules to various genes constitute the secondary pathways
[1] |
|
[2] |
|
陈建伟, 康晓梅, 蔡艺玮, 李树君, 程广有. 2023. 蒙古栎生长节律及开花结实过程观测. 北华大学学报(自然科学版), 24 (6):737-743.
|
|
[3] |
|
陈鹏, 闫龙祥, 黄凯, 裴童, 李丹, 于高波. 2017. 4种杀虫剂对番茄叶片GSH-ASA抗氧化系统的影响. 贵州农业科学, 45 (2):36-41.
|
|
[4] |
|
[5] |
|
[6] |
|
邓仁菊. 2015. 火龙果对低温胁迫的生理响应及离体诱变筛选抗寒突变体研究[博士论文]. 四川: 四川农业大学.
|
|
[7] |
|
高吉霞, 龚春梅, 刘西平. 2010. 水分胁迫对刺槐叶和根谷胱甘肽抗氧化系统的影响. 西北植物学报, 30 (7):1409-1414.
|
|
[8] |
|
郭春晓, 田素波, 郑成淑, 王文莉, 孙宪芝. 2009. 光周期途径植物开花决定关键基因FT. 基因组学与应用生物学, 28 (3):613-618.
|
|
[9] |
|
[10] |
|
[11] |
|
[12] |
|
黄胜, 陈雄进. 2016. 促进莲雾提早开花调节产期措施研究. 热带农业工程, 40 (2):38-41.
|
|
[13] |
doi: 10.16420/j.issn.0513-353x.2022-0058 |
金洲, 卢山, 江俊浩, 李寿仁, 张楠, 江晓钰, 吴凡. 2023. 园艺植物花芽分化影响因素及机理研究进展. 园艺学报, 50 (5):1151-1164.
doi: 10.16420/j.issn.0513-353x.2022-0058 |
|
[14] |
|
[15] |
doi: 10.1111/jipb.12806 |
[16] |
|
[17] |
|
[18] |
|
[19] |
|
[20] |
|
[21] |
|
任毛飞, 毛桂玲, 刘善振, 王慰亲, 郑华斌, 唐启源. 2023. 光质对植物生长发育、光合作用和碳氮代谢的影响研究进展. 植物生理学报, 59 (7):1211-1228.
|
|
[22] |
|
[23] |
|
[24] |
|
[25] |
|
[26] |
|
[27] |
|
王兰, 蔡千蕙. 2011. 低温胁迫对水稻苗期SOD、POD活性的影响. 湖南农业科学,(11):56-58,62.
|
|
[28] |
|
王学奎. 2006. 植物生理生化实验原理和技术. 北京: 高等教育出版社.
|
|
[29] |
|
吴影. 2016. 乌桕花芽转录组测序分析及花发育调控机制研究[博士论文]. 安徽: 中国科学技术大学.
|
|
[30] |
|
[31] |
|
[32] |
|
杨荣萍, 陈贤, 张宏, 程竞卉, 胡晓雪, 李文祥. 2009. 莲雾研究进展. 中国果菜,(1):41-43.
|
|
[33] |
|
[34] |
|
张梦云, 袁凌云, 朱世东, 侯金锋, 侯喜林, 刘同坤, 单国雷, 陈国户, 唐小燕, 汪承刚. 2024. 十字花科植物抗氧化基因(OXR)的鉴定与生物信息学分析. 分子植物育种, 22 (17):5610-5621.
|
|
[35] |
|
[36] |
|
赵静一, 吴小旭, 胡云捷, 盖淑婷, 朱志浩, 秦蕾, 王勇. 2024. 洋葱AcGAI的克隆及其在开花途径的功能分析. 园艺学报, 51 (8):1792-1802.
|
|
[37] |
|
[38] |
|
郑加协, 周红玲, 张少平, 郑云云. 2016. 漳州莲雾产期调节技术研究. 果树学报, 33 (12):1517-1522.
|
|
[39] |
|
钟忠. 2003. 不同微肥对瓜叶菊开花和结果的影响. 安徽农业科学,(5):838-839,845.
|
|
[40] |
|
周红玲, 郑加协, 曾玉荣, 陈石. 2010. 莲雾产期调节技术及其在生产上的应用. 中国热带农业,(3):53-55.
|
|
[41] |
|
朱攀攀. 2017. 桑树脱落酸生物合成及裂解相关基因的鉴定及在桑椹生长发育中的表达分析[硕士论文]. 重庆: 西南大学.
|
[1] | LIN Ruxue, WANG Fei, ZHANG Yanjie, MA Li, LIU Xiaofeng, LI Shuran, LIU Yalong, WANG Chen, JIANG Shuling, OU Chunqing. Transcriptome Screening and Functional Analysis of Dwarf Related Genes in Pear [J]. Acta Horticulturae Sinica, 2025, 52(3): 545-560. |
[2] | ZHANG Wenhao, ZHANG Hui, LIU Yuting, WANG Yan, ZHANG Yingying, WANG Xinman, WANG Quanhua, ZHU Weimin, YANG Xuedong. Preliminary Transcriptome Analysis in Two Tomato Fruits Materials with Different Sugar Content [J]. Acta Horticulturae Sinica, 2024, 51(2): 281-294. |
[3] | WANG Hong, MIAO Chen, DING Xiaotao, SHEN Haibin, ZHU Weimin. Growth,Development and Transcriptome Analysis of Tomato Cultivars with Different Low Light Tolerances Under Low Light Condition [J]. Acta Horticulturae Sinica, 2024, 51(2): 335-345. |
[4] | WANG Yanan, LIU Xutao, JING Tongtong, CHAI Yating, ZHANG Xiaowei, AI Xizhen, BI Huangai. Effect of Melatonin on Antioxidant System of Tomato Senescent Leaves [J]. Acta Horticulturae Sinica, 2024, 51(11): 2594-2606. |
[5] | ZHOU Jie, LI Tianzhu, LIU Ruyi, LI Chenhao, YUAN Zenan, LI Jianming. Effects of Air Humidity and Soil Water Content Coupling on Tomato Gray Mold [J]. Acta Horticulturae Sinica, 2023, 50(8): 1779-1792. |
[6] | ZHAO Hui, GENG Xingmin, WANG Lulu, XU Shida. Research on the Effect of Ethylene in Heat Resistance Mechanism of Rhododendron [J]. Acta Horticulturae Sinica, 2022, 49(3): 561-570. |
[7] | XU Junxu1,LI Qingzhu1,LI Ye2,YANG Liuyan1,LI Xin1,WANG Zhen1,and ZHANG Yongchun1,*. Differential Expression of Genes Related to Endogenous Hormone During Bulb Development in Lycoris radiata [J]. ACTA HORTICULTURAE SINICA, 2020, 47(6): 1126-1140. |
[8] | LIU Pan,GENG Xingmin*,and ZHAO Hui. Subcellular Distribution and Responses of Antioxidant Systems in Leaves of Three Rhododendron Cultivars Under Alkali Stress [J]. ACTA HORTICULTURAE SINICA, 2020, 47(5): 916-926. |
[9] | LI Shengjuan,XU Zhongmin*,GUO Jia,ZHANG Enhui,JIANG Jiao,and SHI Wenwen. Comparative Heterosis Analysis of Cabbage Based on Transcriptome Data of Cabbage Heads Leaves [J]. ACTA HORTICULTURAE SINICA, 2019, 46(6): 1079-1092. |
[10] | WANG Ruonan,NIE Lanchun*,ZHANG Shuangshuang,CUI Qiang,and JIA Mingfei. Research Progress on Plant Resistance to Heavy Metal Stress [J]. ACTA HORTICULTURAE SINICA, 2019, 46(1): 157-170. |
[11] | WEI Xiuqing,XU Ling,ZHANG Xijuan,YU Dong,CHEN Zhifeng,ZHANG Limei,CHEN Changzhong,and XU Jiahui*. Analysis on SSR Information in Transcriptome and Development of Molecular Markers in Wax Apple [J]. ACTA HORTICULTURAE SINICA, 2018, 45(3): 541-551. |
[12] | LI Dandan,ZHANG Xiaowei,LIU Fengjiao,PAN Dongyun,and AI Xizhen*. Hydrogen Sulfide Interacting with Abscisic Acid Counteracts Oxidative Damages Against Chilling Stress in Cucumber Seedlings [J]. ACTA HORTICULTURAE SINICA, 2018, 45(12): 2395-2406. |
[13] | FAN Sheng,LEI Chao,XIN Mingzhi,SHAO Hongxia,Muhammad Mobeen Tahir,ZHANG Dong,and HAN Mingyu*. Cloning and Expression Analysis of the Gibberellin Signal Transduction Factor MdGAMYB in Malus [J]. ACTA HORTICULTURAE SINICA, 2017, 44(5): 817-827. |
[14] | HU Lin-li1,LIAO Wei-biao1,MA Yan-xia2,WANG Li-mei1,and YU Ji-hua1,*. Effects of Ammonium︰Nitrate Ratios on Growth and Antioxidant Enzyme Activities of Chinese Cabbage Seedling Under Low Light Intensity [J]. ACTA HORTICULTURAE SINICA, 2016, 43(5): 897-906. |
[15] | ZHANG Meng,MIAO Ying-jing,LI Yu-fan,and JIA Gui-xia*. Determination of the Critical Period of Floral Induction for Hybrid Plants Between Lilium × formolongi and Oriental Hybrid Lily [J]. ACTA HORTICULTURAE SINICA, 2016, 43(4): 735-742. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
Copyright © 2012 Acta Horticulturae Sinica 京ICP备10030308号-2 国际联网备案号 11010802023439
Tel: 010-82109523 E-Mail: yuanyixuebao@126.com
Support by: Beijing Magtech Co.Ltd