Acta Horticulturae Sinica ›› 2025, Vol. 52 ›› Issue (6): 1463-1476.doi: 10.16420/j.issn.0513-353x.2024-0160
• Genetic & Breeding?Germplasm Resources?Molecular Biology • Previous Articles Next Articles
LI Meiqing, LUO Sifei, JIA Yaohao, WANG Weigui, and SUN Jin*()
Received:
2025-03-19
Revised:
2025-05-20
Online:
2025-06-20
Published:
2025-06-20
Contact:
and SUN Jin
LI Meiqing, LUO Sifei, JIA Yaohao, WANG Weigui, and SUN Jin. Expression Analysis of the Cucumber Mg-Dechelatase Gene CsMDC and Functional Verification of Its Role in Regulating Chlorlorophyll Degradation[J]. Acta Horticulturae Sinica, 2025, 52(6): 1463-1476.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.ahs.ac.cn/EN/10.16420/j.issn.0513-353x.2024-0160
用途Application | 引物名称Primer name | 引物序列(5′-3′)Primer sequence |
---|---|---|
CsMDC全长PCR PCR of CsMDC full length | CsMDC-F | TTAAACCGATCACAAACC |
CsMDC-R | AGGGCAGTCAATAAAATG | |
CsMDC实时荧光定量PCR qRT-PCR of CsMDC | qPCR-CsMDC-F | CGCAAAGAACTCCCTGTGGT |
qPCR-CsMDC-R | AATGCAAGTAATTTGCTGATAGTGT | |
CsAction实时荧光定量PCR qRT-PCR of CsActin | CsActin-F | CAGGAATCCACGAAACTACT |
CsActin-R | AGACCCTCCAATCCAAACAC |
Table 1 The primers of CsMDC gene of PCR or qRT-PCR
用途Application | 引物名称Primer name | 引物序列(5′-3′)Primer sequence |
---|---|---|
CsMDC全长PCR PCR of CsMDC full length | CsMDC-F | TTAAACCGATCACAAACC |
CsMDC-R | AGGGCAGTCAATAAAATG | |
CsMDC实时荧光定量PCR qRT-PCR of CsMDC | qPCR-CsMDC-F | CGCAAAGAACTCCCTGTGGT |
qPCR-CsMDC-R | AATGCAAGTAATTTGCTGATAGTGT | |
CsAction实时荧光定量PCR qRT-PCR of CsActin | CsActin-F | CAGGAATCCACGAAACTACT |
CsActin-R | AGACCCTCCAATCCAAACAC |
基因Gene | 正向引物(5′-3′)Forward primer | 反向引物(5′-3′)Reverse primer |
---|---|---|
NtRbcL | GTCCCCTGTTGGGATGTACTATT | TGTGAGTTCACGTTCTCATCATC |
NtRbcS | TCATTGGATTCGACAACGTG | CACAACCCCTAAAGACAAGACA |
NtLhcb1 | GCTGCTACAATGGCTCTTT | TGGCGACAGTCTTTCTCA |
NtLhcb2 | TCCGAGCAAACTCCATCT | CAGTGTCCCATCCGTAA |
NtLhcb4 | GAGATGGGCTATGTTGGC | TGGAGAATGGGAGTGGTT |
NtNYC | TAAACAACGCTGGGACAA | TAAACAACGCTGGGACAA |
NtRCCR | CTGTGGAGAATCGGCTTGG | ACCTGGGAAGAGGAGTGGC |
NtActin | CATTGGCGCTGAGAGATTCC | GCAGCTTCCATTCCGATCA |
Table 2 qPCR primers for the Chl. degredation genes of tobacco
基因Gene | 正向引物(5′-3′)Forward primer | 反向引物(5′-3′)Reverse primer |
---|---|---|
NtRbcL | GTCCCCTGTTGGGATGTACTATT | TGTGAGTTCACGTTCTCATCATC |
NtRbcS | TCATTGGATTCGACAACGTG | CACAACCCCTAAAGACAAGACA |
NtLhcb1 | GCTGCTACAATGGCTCTTT | TGGCGACAGTCTTTCTCA |
NtLhcb2 | TCCGAGCAAACTCCATCT | CAGTGTCCCATCCGTAA |
NtLhcb4 | GAGATGGGCTATGTTGGC | TGGAGAATGGGAGTGGTT |
NtNYC | TAAACAACGCTGGGACAA | TAAACAACGCTGGGACAA |
NtRCCR | CTGTGGAGAATCGGCTTGG | ACCTGGGAAGAGGAGTGGC |
NtActin | CATTGGCGCTGAGAGATTCC | GCAGCTTCCATTCCGATCA |
Fig. 2 Evolutionary relationships of MDC amino acid sequences of 19 species The decimal above the horizontal line represents the length of the evolutionary branch,and the integer near the node is the bootstrap value
Fig. 3 qRT-PCR analysis of CSMDC in cucumber leaves under different exogenous plant growth regulator treatments and abiotic stresses Control group:foliar spray with distilled water;Exogenous ABA,GA3,SA,and MeJA treatments:foliar spray with 100 μmoL · L⁻¹ ABA,GA3,SA,and MeJA,respectively;Drought treatment:20%(w/v)polyethylene glycol(PEG-6000);High temperature treatment:42 ℃;Low temperature treatment:4 ℃;Darkness treatment:Light intensity 0 μmoL · m-2 · s-1. Relative expression was calculated using the 2-∆∆CTmethod(Livak et al.,2001). Independent samples t-test was applied for significance analysis after confirming normality of the data through normality tests. * P < 0.05,** P < 0.01,*** P < 0.001
Fig. 4 Tissue-specific expression of CsMDC in cucumber Relative expression was calculated using the 2-∆∆CT method. Normality tests confirmed that the data met the normality assumption. Statistical significance was analyzed by one-way ANOVA followed by Duncan’s multiple range test and different lowercase letters indicate significant differences,P < 0.05,the same below
Fig. 5 The PCR analysis(A),qRT-PCR analysis(B),phenotype images of tobacco before and after dark treatment(C),and dry weight to fresh weight ratio(D)of cucumber CsMDC transgenic tobacco
Fig. 6 Chlorophyll content,net photosynthetic rate,maximum photochemical efficiency of leaves,and quantum yield of non-regulated energy dissipationin cucumber CsMDC transgenic tobacco plants before and after dark treatment
Fig. 8 Relative expression of chlorophyll degradation-related genes in cucumber CsMDC transgenic tobacco before and after dark treatment Wild type tobacco lacks the CsMDC gene,resulting in no detectable signal in this figure
Fig. 9 Relative expression of photosystem-related genes in cucumber CsMDC transgenic tobacco before and after dark treatment Lhcb1、Lhcb2、Lhcb4、RbcL and RbcS:Photosystem protein genes;GLN1:Glutamine synthetase gene,which encodes a protein that indirectly supports photosynthesis through nitrogen assimilation and photorespiration regulation
[1] |
|
[2] |
doi: 10.1104/pp.108.118430 pmid: 18359841 |
[3] |
doi: 10.1007/s00122-008-0768-5 pmid: 18427769 |
[4] |
doi: 10.1016/j.jplph.2010.07.011 pmid: 20727617 |
[5] |
doi: 10.13560/j.cnki.biotech.bull.1985.2016.11.001 |
丁跃, 吴刚, 郭长奎. 2016. 植物叶绿素降解机制研究进展. 生物技术通报, 32 (11):1-9.
doi: 10.13560/j.cnki.biotech.bull.1985.2016.11.001 |
|
[6] |
|
高亚新, 刘益克, 李恭峰, 李宁, 李青云. 2023. 新型稀土转光膜对塑料大棚早春茬黄瓜生长的影响. 现代农业科技,10:38-42.
|
|
[7] |
|
顾兴芳, 方秀娟, 张天明, 张圣平, 李竹梅, 徐彩青. 2003. 黄瓜新品种中农12号的选育. 中国蔬菜,(5):30-31.
|
|
[8] |
|
关锦毅, 郝再彬, 张达, 王秀丽. 2009. 叶绿素提取与检测及生物学功效的研究进展. 东北农业大学学报, 40 (12):130-134.
|
|
[9] |
|
[10] |
|
[11] |
|
[12] |
|
李中海, 郭永峰, 任国栋, 张可伟, 缪颖, 郭红卫. 2023. 叶片衰老研究进展. 植物生理学报, 59 (9):1627-1656.
|
|
[13] |
|
[14] |
doi: 10.1006/meth.2001.1262 pmid: 11846609 |
[15] |
|
骆亮仲, 李卓蔚, 周浓, 夏李, 付旭娟, 黄梅, 郭冬琴. 2023. 滇重楼叶片和花萼的SPAD值与叶绿素含量的相关性分析. 南方农业, 17 (3):155-161,166.
|
|
[16] |
|
马林. 2007. 植物衰老期间生理生化变化的研究进展. 生物学杂志, 24 (3):12-15.
|
|
[17] |
pmid: 11557069 |
[18] |
|
[19] |
|
[20] |
|
[21] |
|
[22] |
|
戎红, 李美茹, 陈雅平, 吴国江, 姜华斌. 2011. 水稻永绿色基因超表达和突变对其叶片氮碳代谢若干指标的影响. 热带亚热带植物学报, 19 (5):407-411.
|
|
[23] |
|
[24] |
|
[25] |
|
[26] |
|
滕珂. 2020. 日本结缕草滞绿基因(ZjSGR)的功能研究[博士论文]. 北京: 北京林业大学.
|
|
[27] |
doi: 10.1093/jxb/eru037 pmid: 24600017 |
[28] |
doi: 10.16420/j.issn.0513-353x.2018-0799 |
王峰, 闫家榕, 陈雪玉, 姜程浩, 孟思达, 刘玉凤, 许涛, 齐明芳, 李天来. 2019. 光调控植物叶绿素生物合成的研究进展. 园艺学报, 46 (5):975-994.
doi: 10.16420/j.issn.0513-353x.2018-0799 |
|
[29] |
doi: 10.16420/j.issn.0513-353x.2023-0128 |
叶玙璠, 王誉洁, 傅前媛, 王璐, 郝心愿, 丁长庆, 王新超, 曹红利, 李娜娜. 2024. 茶树镁离子螯合酶H亚基基因CsChlH的克隆及其表达分析. 园艺学报, 51 (1):91-102.
doi: 10.16420/j.issn.0513-353x.2023-0128 |
|
[30] |
|
郑赟, 尹艺臻, 温宏伟, 王鹏, 李贵全. 2020. 大豆滞绿(stay-green)突变体诱变后代生理指标及品质分析. 中国农业大学学报, 25 (9):27-35.
|
|
[31] |
|
朱金龙, 吕勇, 叶坤国. 2021. 设施栽培黄瓜生理性病害诊断与防治. 现代农业科技,(9):115-117.
|
[1] | HU Jijun, TAI Liansai, WANG Tianyu, ZHOU Qi, JIN Haijun. A New Cucumber Hybrid‘Duanba Shenqing’ [J]. Acta Horticulturae Sinica, 2025, 52(S1): 125-126. |
[2] | LI Qiang, GU Liqiang, DOU Yajing, GAO Yongli, ZHAO Yuqian, LU Yaru, and SONG Xiaoming. A New Cucumber F1 Hybrid‘Duoxi 1’ [J]. Acta Horticulturae Sinica, 2025, 52(6): 1681-1682. |
[3] | MA Yuwan, LIU Ao, LIU Xiangdong, ZHANG Yajing, DONG Xuanke, LI Yufan, CHEN Jiren. Cloning of the RcRAP2.7 Gene and its Expression Analysis Under Abiotic Stresses in Rosa chinensis‘Yueyuehong’ [J]. Acta Horticulturae Sinica, 2025, 52(4): 921-932. |
[4] | WANG Rui, WU Hongfei, ZHANG Changyuan, CAO Haishun, TAN Delong, GUO Jinju, WANG Yunlong, WANG Rufang, YUAN Yu, WU Tingquan. CsPUB54 Negatively Regulates Cucumber Resistance to Phytophthora Melonis by Interacting with PmRXLR1 Effector [J]. Acta Horticulturae Sinica, 2025, 52(3): 591-602. |
[5] | WANG Yunyun, ZHOU Hui, QIU Keli, PAN Haifa, SHENG Yu, SHI Pei, XIE Qingmei, CHEN Hongli, ZHANG Jinyun, LI Dahui. Identification and Expression Analysis of Peach JMJ Histone Demethylase Gene Family [J]. Acta Horticulturae Sinica, 2025, 52(3): 575-590. |
[6] | DENG Shuqin, GAO Yingrui, LI Yutong, WANG Ying, GONG Chunmei, BAI Juan. Response of Ubiquitin-ligase Gene CsPUB21 to Different Abiotic Stress in Camellia sinensis [J]. Acta Horticulturae Sinica, 2025, 52(3): 655-670. |
[7] | WEN Zhengyang, SUN Jingbo, ZHANG Mengxia, ZHANG Feng, DONG Chunjuan. Identification of CsCuAO Gene Family in Cucumber and Their Regulatory Roles in Adventitious Root Formation [J]. Acta Horticulturae Sinica, 2025, 52(2): 309-321. |
[8] | MAO Xin, YUAN Wenfei, GUO Yurun, XU Xinxin, LI Yi, ZHANG Yi, MIAO Yanxiu, BAI Longqiang, LI Yansu. Analysis of the Decomposition of Organic Materials and Nutrients Contents in Root Zone and Leaves of Cucumber Under Organic Substrate Planting Board Cultivation in Solar Greenhouse [J]. Acta Horticulturae Sinica, 2025, 52(2): 439-452. |
[9] | WANG Shanshan, GUO Rui, HE Ling, WU Chunhong, CHEN Chanyou, WAN Heping, ZHAO Huixia. Identification of Long Cowpea Lhc Gene Family and Its Expression Analysis Under Salt Stress [J]. Acta Horticulturae Sinica, 2025, 52(1): 111-122. |
[10] | WANG Yanhong, XI Keyong, TIAN Ye, LIU Deqi, ZHOU Kegui, YIN Junliang, LIU Yiqing, ZHU Yongxing. Identification and Expression Pattern Analysis of GST in Zingiber officinale [J]. Acta Horticulturae Sinica, 2024, 51(8): 1803-1822. |
[11] | LI Yadi, WANG Hanxiang, HU Baigeng, YANG Hui, HU Xinxi, XIONG Xingyao, WANG Wanxing. Research Progress on Plant Growth Promoting Rhizobacteria to Alleviate Abiotic Stress Tolerance of Horticultural Crops [J]. Acta Horticulturae Sinica, 2024, 51(8): 1964-1976. |
[12] | LI Yachen, ZHENG Yanmei, SONG Wenpei, LI Dawei, LIANG Hong, ZHANG Xianzhi. Research Progress on the Role of Hydrogen-Rich Water in Plant Growth and Development and Stress Response [J]. Acta Horticulturae Sinica, 2024, 51(7): 1489-1500. |
[13] | LI Xin, CHAI Yingfang, TIAN Zhen, WANG Pengwei, CHENG Yunjiang. Isolation and Purification of Mitochondria and Its Application in Research on Fruit Ripening and Senescence [J]. Acta Horticulturae Sinica, 2024, 51(7): 1516-1528. |
[14] | YUAN Quan, LU Wei, WANG Jun, CHEN Ru, LI Yansu, YU Xianchang, HE Chaoxing, SUN Mintao, YAN Yan. Effects of Irrigation Lower Limits on Early-Spring Cucumber Grown Under Different Soil Textures in the Solar Greenhouse [J]. Acta Horticulturae Sinica, 2024, 51(6): 1377-1385. |
[15] | WANG Wenjiao, XING Junjie, SHEN Chengcheng, LI Bin. Screening and Functional Analysis of CsCOL5,the Upstream Regulator of CsCER1,in Cucumber Pericarp Wax Synthesis [J]. Acta Horticulturae Sinica, 2024, 51(5): 1005-1016. |
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