Insight into abscisic acid perception and signaling to increase plant tolerance to abiotic stress
文献类型: 外文期刊
作者: Rehman Abdul;Azhar Muhammad Tehseen;Hinze Lori;Qayyum Abdul;Li Hongge;Peng Zhen;Qin Guangyong;Jia Yinhua;Pan Zhaoe;He Shoupu;Du Xiongming
作者机构:
关键词: ABA; ABA receptors; gene regulatory network; phytohormones; signal transduction
期刊名称: Journal of Plant Interactions
ISSN: 1742-9145
年卷期: 2021 年 16 卷 1 期
页码:
收录情况: JCR(2021版)
摘要: As changes occur in climate, abiotic stress to agricultural production is an inevitable threat to farmers’ ability to meet an increasing demand to feed people. Plants have developed a stress tolerance mechanism to reduce the effects of such environmental conditions by engaging various stress-responsive genes. Accordingly, various signal transduction networks are used to fabricate stress tolerance. Engineering of the phytohormone abscisic acid (ABA) could be a choice method for scientists to mitigate abiotic stress because of its widespread role in response to salt, drought, heat, and cold stresses including triggering stomatal regulation and leaf senescence. In addition, it plays a crucial role in seed maturation, seed dormancy, stomatal opening/closure and increases resistance against pathogens through callose depositions and regulates physiological strategies in stress signaling pathways through synchronizing of hormonal crosstalk. The transcriptional regulation can be achieved through ABA-dependent and ABA-independent signaling cascades. ABAI5 and RD29A genes are regulated in ABA-dependent and independent manners to mitigate stress tolerance. ABA regulatory components (RCARs) including pyrabactin resistance PYR/PYL genes, SnRK2 type protein kinases, transcription factors (WRKY, NAC, AREB1, bZIP, RGL2, and ABRE), reactive oxygen species, jasmonic acid and cytokinin hormones regulate ABA gene action in response to abiotic stresses. © 2021 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.
分类号:
- 相关文献
作者其他论文 更多>>
-
Cotton2035: From genomics research to optimized breeding
作者:Wang Kun;He Shoupu;Zhu Yuxian
关键词:cotton breeding;cotton ENCODE project;cotton genomics;genomics-to-breeding (G2B)
-
Pyramiding effects of favorable haplotypes of loci on major fiber yield and quality traits in Upland Cotton (Gossypium hirsutum L.)
作者:Yingrui Zhao;Baojun Chen;Hongge Li;Jingjing Wang;Yinhua Jia;Zhaoe Pan;Daowu Hu;Zhen Peng;Yingxiao Li;Xu Gao;Peng Zhang;Liru Wang;Jun Peng;Shoupu He;Du Xiongming
关键词:Favorable haplotypes;Fiber Quality;Fiber Yield;KASP;Pyramiding Effect;Upland Cotton
-
A genome-wide association study of lateral root number for Asian cotton (Gossypium arboreum L.)
作者:Hu Daowu;He Shoupu;Sun Gaofei;Jia Yinhua;Geng Xiaoli;Wang Liru;Pan Zhaoe;Chen Baojun;Li Hongge;Zubair, Iqbal;Wang Xiaoyang;Zhao Zibo;Ge Yuting;Pang Baoyin;Du Xiongming
关键词:GWAS;Lateral root;Asian cotton;SNPs;Candidate genes
-
QTL mapping of agronomic and economic traits for four F2 populations of upland cotton
作者:Li Hongge;Pan Zhaoe;He Shoupu;Jia Yinhua;Geng Xiaoli;Chen Baojun;Wang Liru;Pang Baoyin;Du Xiongming
关键词:Fiber quality traits; QTL mapping; Simultaneous improvement; Upland cotton; Yield traits
-
Genome-Wide Dissection, Characterization, and Expression Profiling of Cotton GASA Genes Reveal their Importance in Regulating Abiotic Stresses
作者:Shaban Muhammad;Khan Aamir Hamid;Noor Etrat;Qayyum Abdul;Malik Waqas;Shehzad Muhammad;Akram Umar;Razzaq Ayesha;Tabassum Muhammad Adnan
关键词:cotton; GASA genes; Genome-wide; Stress responses; Tissue expression
-
Evaluation of fourteen bread wheat (Triticum aestivum L.) genotypes by observing gas exchange parameters, relative water and chlorophyll content, and yield attributes under drought stress
作者:Wasaya Allah;Manzoor Sobia;Yasir Tauqeer Ahmad;Sarwar Naeem;Mubeen Khuram;Ismail Ismail A.;Raza Ali;Rehman Abdul;Hossain Akbar;Sabagh Ayman E. L.
关键词:Drought stress; Grain yield; Net photosynthesis; Relative water contents; SPAD-chlorophyll; Stomatal conductance
-
Genetic variability for yield and fiber related traits ingenetically modified cotton
作者:MANAN Abdul; HAROON Muhammad; SAJID Sunaina;REHMAN Abdul;MO Huijuan; ASHRAF Muhammad
关键词: