The Conringia planisiliqua Alfin-like2 gene enhances drought and salt tolerance in Arabidopsis thaliana

被引:0
作者
Yanfei Zhu
Quanjia Chen
Xiaodong Liu
Yanying Qu
机构
[1] Xinjiang Agricultural University,College of Agronomy
来源
Theoretical and Experimental Plant Physiology | 2021年 / 33卷
关键词
family; Transgenic plant; Salt tolerance; Drought resistance;
D O I
暂无
中图分类号
学科分类号
摘要
Alfin-like (AL) gene plays a role in regulation of plant abiotic stress. Here we aimed to find a AL gene from the drought and salt stress tolerant plant Conringia planisiliqua. The approximately 187 bp long core fragments and the RACE method were used to obtain a full-length cDNA of approximately 1120 bp with an open reading frame of 735 bp. This cDNA encodes a protein composed of 245 amino acids with a calculated molecular mass of 27.691 kD. Real-time quantitative PCR analysis showed that expression of CpAL2 was induced strongly under 20% PEG6000 drought and 200 mM (NaCl) salt stress. Three independent overexpression lines were obtained and used for functional analysis. The survival rate of CpAL2-overexpressing A. thaliana plant was 2.5 times of wild-type A. thaliana under the soil drought stress. Under drought stress 1/2MS (− 0.5 MPa) plate, the overexpression lines grown on PEG plate exhibit a significantly greater root length compared with the control plants. The survival rate of CpAL2-overexpressing A. thaliana plant was approximately 1.4 times of wild-type A. thaliana under 200 mM·NaCl salt stress. Under 150 mM salt stress 1/2MS plate, the root growth of CpAL2-overexpressing A. thaliana plant was increased by 1.75–2.12 folds of wild-type A. thaliana. Overexpression of CpAL2 gene significantly enhanced salt tolerance and drought resistance in transgenic Arabidopsis. Our data indicated that CpAL2 plays an important role in the regulation of stress‐responses, and is useful in Arabidopsis with improving tolerance to salt and drought stresses.
引用
收藏
页码:427 / 441
页数:14
相关论文
共 82 条
[1]  
Bastola DR(1998)Alfin1, a novel zinc-finger protein in alfalfa roots that binds to promoter elements in the salt-inducible MsPRP2 gene Plant Mol Biol 38 1123-1135
[2]  
Pethe VV(2017)GaMYB85, an R2R3 MYB gene, in transgenic Arabidopsis plays an important role in drought tolerance BMC Plant Biol 17 142-720
[3]  
Winicov I(2013)ALFIN-LIKE 6 is involved in root hair elongation during phosphate deficiency in Arabidopsis New Phytol 198 709-743
[4]  
Butt HI(1998)Floral dip: a simplified method for Agrobacterium-mediated transformation of Plant J 16 735-6
[5]  
Yang Z(2014)Identification of salt-stress-induced genes from the RNA-Seq data of Int J Genomics 2014 672-78
[6]  
Gong Q(2017) using differential-display reverse transcription PCR Front Plant Sci 8 1-524
[7]  
Chen E(2016)Moderate drought stress affected root growth and grain yield in old, modern and newly released cultivars of winter wheat Int J Life Sci 10 67-87
[8]  
Chandrika NN(2019)Effect of drought stress and its mechanism in plants Horticulturae 5 68-408
[9]  
Sundaravelpandian K(2016)Abiotic stress effects on performance of horticultural crops Agric Ecosyst Environ 231 511-425
[10]  
Yu SM(2016)Rhizobacterial-plant interactions: strategies ensuring plant growth promotion under drought and salinity stress Acta Physiol Plantarum 58 84-1309