数字农科院2.0

The Beneficial Roles of Elevated [CO2] on Exogenous ABA-Enhanced Drought Tolerance of Cucumber Seedlings

文献类型: 外文期刊

作者: Qiying Sun;Xinrui He;Tengqi Wang;Hengshan Qin;Xin Yuan;Yunke Chen;Zhonghua Bian;Qingming Li

作者机构:

关键词: ABA;antioxidant system;ASA–GSH;drought stress;elevated CO2

期刊名称: Horticulturae

ISSN: 2311-7524

年卷期: 2023 年 9 卷 4 期

页码:

收录情况: SCIE(2023版)

摘要: Drought stress severely limits crop growth and yield. With the atmospheric CO2 constantly increasing, plants will be affected by multiple effects of drought and increased CO2 in the future. Abscisic acid (ABA) plays vital roles in plant stress tolerance, especially drought stress. However, little is known about the effects of elevated CO2 concentration (e[CO2]) and exogenous ABA in cucumber (Cucumis sativus L.) response to drought stress. In the present study, we investigated the effects of e[CO2] and exogenous ABA on the drought tolerance of cucumber seedlings under the simulated drought stress induced by 5% polyethylene glycol 6000. The experiment was a split-plot design, in which the main factor was CO2 concentrations; atmospheric and elevated CO2 concentrations (~400 and 800 ± 40 μmol mol−1, respectively). The subplot factor was the combinations of exogenous ABA and its synthesis inhibitor sodium tungstate (Na2WO4); deionized water (control), 20 μM ABA, 2 mM Na2WO4, and 2 mM Na2WO4 + 20 μM ABA, which were applied to plant leaves. The results showed that compared with exogenous ABA application only, e[CO2] combined with exogenous ABA significantly increased the biomass, chlorophyll content, and net photosynthetic rate (Pn) of cucumber seedlings under drought stress. Meanwhile, e[CO2] and exogenous ABA were more efficient in reducing the contents of reactive oxygen species and malondialdehyde, promoting the accumulation of proline, soluble sugar, soluble protein, free amino acid, ascorbic acid, and glutathione. The ratios of ascorbic acid/dehydroascorbic acid (ASA/DHA), glutathione/oxidized glutathione (GSH/GSSG), as well as the activities of antioxidant enzymes were increased. In conclusion, e[CO2] and exogenous ABA synergistically alleviated oxidative damage of drought stress on cucumber seedlings by increasing antioxidant enzyme activities and accelerating the ASA–GSH cycle in cucumber seedlings, which in turn improved the drought tolerance of cucumber seedlings, and provided theoretical and practical support for further studies on the alleviation of drought stress in protected horticulture.

分类号:

  • 相关文献

[1]NtNAC053, A Novel NAC Transcription Factor, Confers Drought and Salt Tolerances in Tobacco. Li, Xiaoxu,Wang, Qi,Guo, Cun,Sun, Jinhao,Li, Zhiyuan,Wang, Yaofu,Yang, Aiguo,Pu, Wenxuan,Guo, Yongfeng,Gao, Junping,Wen, Liuying. 2022

[2]Foliar Selenium Application During Flowering and Fruiting Alleviates Drought-Induced Oxidative Damage and Promotes Tomato Growth. Haixue Cui,Yuan Zhong,Huanhuan Li,Xiaoman Qiang,Lijian Sun,Fukui Gao,Gang Wang,Hao Liu. 2025

[3]GmCIPK29 positively regulates drought tolerance through involvement in the reactive oxygen species scavenging and abscisic acid signaling pathway. Chao Wang,Ze Hao Hou,Ya Nan Kong,Long Guo Jin,Lei Zheng,Jun Chen,Yong Bin Zhou,Ming Chen,You Zhi Ma,Zheng Wu Fang,Zhao Shi Xu. 2023

[4]Overexpression of OsRbohH Enhances Heat and Drought Tolerance through ROS Homeostasis and ABA Mediated Pathways in Rice (Oryza sativa L.). Yating Chen,Rui Zhang,Rujie Wang,Jiangdi Li,Bin Wu、张海文、Guiqing Xiao. 2024

[5]Genetic Dissection for Leaf Correlative Traits of Rice (Oryza sativa L.)Under Drought Stress. Guo Longbiao,Qian Qian,Zeng Dali,Dong Guojun,Teng Sheng,Zhu Lihuang. 2004

[6]CsAREB转录因子在柑橘果实发育中的作用. 庞少萍,董翠翠,马岩岩,钱春,何绍兰,谢让金,邓烈. 2017

[7]外源ABA和Ca~(2+)对低温及低温恢复下赤霞珠幼苗蔗糖代谢的影响. 姜寒玉,王旺田,雷天翔,何百,张金林. 2017

[8]ABA、BA及DPI对高表达玉米C_4pepc基因的水稻光合特性及叶绿素荧光特性的影响. 李霞,任承钢. 2012

[9]水分胁迫下紫花苜蓿根系特征与ABA含量的变化. 毕舒贻,曹婧,李跃,万里强,李向林. 2016

[10]小麦胚休眠的蛋白质组分析. 孙果忠,张秀英,闫长生,肖世和. 2009

[11]水稻种子低温萌发生理机制的初步研究. 江玲,侯名语,刘世家,陈亮明,刘喜,翟虎渠,万建民. 2005

[12]ABA对渍水胁迫下油菜幼苗活性氧代谢过程的影响. 李玲,张春雷,李俊,马霓,李光明. 2011

[13]低温胁迫下外源ABA对甘蔗幼苗抗寒性及内源激素的影响. 陈明辉,杨丽涛,张保青,李杨瑞. 2013

[14]谷子非特异性磷脂酶C基因SiNPC_4的克隆及功能分析. 胡利芹,薛飞洋,李微微,王二辉,徐兆师,李连城,周永斌,贾冠清,刁现民,马有志,陈明. 2015

[15]转GmAREB基因提高拟南芥的干旱、氧化胁迫耐性. 高世庆,陈明,徐兆师,唐益苗,李连城,马有志,赵昌平. 2011

[16]苹果受精着果机理初报. 周学明,马焕普,王凤珍,李武兴,单永明. 1995

[17]参与ABA调控小麦种子胚休眠的dehydrin基因的分离与表达分析. 张海萍,常成,张秀英,闫长生,肖世和. 2008

[18]ABA处理对油菜角果光合特性及产量的影响(英文). 李俊,张春雷,马霓,余利平,晁赢,李玲. 2012

[19]薄皮甜瓜离体再生体系的优化. 付秋实,曹芸运,谭明明,王烨,郭仰东,王怀松. 2014

[20]谷子非特异性磷脂酶C基因SiNPC4的克隆及功能分析. 胡利芹,薛飞洋,李微微,王二辉,徐兆师,李连城,周永斌,贾冠清,刁现民,马有志,陈明. 2015

作者其他论文 更多>>