Expansin Gene Taexpa2 Positively Regulates Drought Tolerance In Transgenic Wheat (Triticum Aestivum L.)
文献类型: 外文期刊
作者: Yang, JJ; Zhang, GQ; An, J; Li, QX; Chen, YH; Zhao, XY; Wu, JJ; Wang, Y; Hao, QQ; Wang, WQ; Wang, W
作者机构:
关键词: Wheat; Expansin; Drought Tolerance; Taexpa2; Antioxidant Capacity; Lateral Root
期刊名称: PLANT SCIENCE
ISSN: 0168-9452
年卷期: 2020 年 298 卷
页码:
收录情况: JCR(2021版)
摘要: Expansins loosen plant cell walls and are involved in cell enlargement and various abiotic stresses. In previous studies, we cloned the expansin gene TaEXPA2 from the wheat cultivar HF9703. Here, we studied its function and regulation in wheat drought stress tolerance. The results indicated that TaEXPA2-overexpressing wheat plants (OE) exhibited drought tolerant phenotypes, whereas down-regulation of TaEXPA2 by RNA interference (RNAi) resulted in elevated drought sensitivity, as measured by survival rate, photosynthetic rate and water containing ability under drought stress. Overexpression of TaEXPA2 enhanced the antioxidant capacity in wheat plants, via elevation of antioxidant enzyme activity and the increase of the transcripts of some ROS scavenging enzyme-related genes. Further investigation revealed that TaEXPA2 positively influenced lateral root formation under drought conditions. A MYB transcription factor of wheat named TaMPS activates TaEXPA2 expression directly by binding to its promoter. Overexpression of TaMPS in Arabidopsis conferred drought tolerance associated with improved lateral root number, and the close homolog genes of TaEXPA2 were up-regulated in Arabidopsis roots overexpressing TaMPS, which suggest that TaMPS may function as one of the regulator of TaEXPA2 gene expression in the root lateral development under drought stress. These findings suggest that TaEXPA2 positively regulates drought stress tolerance in wheat.
分类号:
- 相关文献
作者其他论文 更多>>
-
Genome Sequence Resource For Colletotrichum Scovillei the Cause Of Anthracnose Disease Of Chili
作者:Huo, JF; Wang, YF; Hao, YJ; Yao, YR; Wang, Y; Zhang, K; Tan, XQ; Li, ZQ; Wang, WL
关键词:Colletotrichum Scovillei; Chili; Genome; Nanopore
-
Effects Of Fumigation With Allyl Isothiocyanate On Soil Microbial Diversity And Community Structure Of Tomato
作者:Zhu, JH; Ren, ZJ; Huang, B; Cao, AC; Wang, QX; Yan, DD; Ouyang, CB; Wu, JJ; Li, Y
关键词:Aitc; Sir; Illumina High-Throughput Sequencing; Soil Microbial Diversity; Bacterial Community Structure; Fungal Community Structure
-
Genomic Variants Associated With The Number And Diameter Of Muscle Fibers In Pigs As Revealed By A Genome-Wide Association Study
作者:Zhang, L; Guo, Y; Wang, L; Liu, X; Yan, H; Gao, H; Hou, X; Zhang, Y; Guo, H; Yue, J; An, J; Wang, L
关键词:Genotyping Beadchip; Intercross Population; Longissimus Muscle; Quantitative Trait Loci; Swine
-
Morphological, Transcriptomics And Phytohormone Analysis Shed Light On The Development Of A Novel Dwarf Mutant Of Cabbage (Brassica Oleracea)
作者:Xing, MM; Su, HN; Liu, X; Yang, LM; Zhang, YY; Wang, Y; Fang, ZY; Lv, HH
关键词:Cabbage; Dwarf; Cytokinesis Defects; Transcriptome; Phytohormone
-
Resistance To Heterodera Filipjevi And H. Avenae In Winter Wheat Is Conferred By Different Qtl
作者:Cui, L; Qiu, D; Sun, L; Sun, Y; Ren, YK; Zhang, HJ; Li, JT; Zou, JW; Wu, PP; Hu, JH; Xie, JZ; Liu, HW; Yang, L; Zhou, Y; Wang, Y; Lv, Y; Liu, ZY; Murray, TD; Li, HJ
关键词:Genetics And Resistance
-
An Update On The Arsenal: Mining Resistance Genes For Disease Management Of Brassica Crops In The Genomic Era
作者:Lv, HH; Fang, ZY; Yang, LM; Zhang, YY; Wang, Y
关键词:
-
Detection And Molecular Characterization Of Canine Circovirus Circulating In Northeastern China During 2014-2016
作者:Niu, LD; Wang, Z; Zhao, LL; Wang, Y; Cui, XY; Shi, YJ; Chen, HY; Ge, JW
关键词: