Heterologous expression of the Limonium bicolor MYB transcription factor LbTRY in Arabidopsis thaliana increases salt sensitivity by modifying root hair development and osmotic homeostasis
文献类型: 外文期刊
作者: Leng, Bingying 1 ; Wang, Xi 1 ; Yuan, Fang 1 ; Zhang, Haonan 1 ; Lu, Chaoxia 1 ; Chen, Min 1 ; Wang, Baoshan 1 ;
作者机构: 1.Shandong Normal Univ, Coll Life Sci, Shandong Prov Key Lab Plant Stress, Jinan, Shandong, Peoples R China
2.Shandong Acad Agr Sci, Maize Res Inst, Jinan, Shandong, Peoples R China
关键词: MYB; Limonium bicolor; Heterologous expression; Complementation lines; Trichome; Root hair; Salt tolerance
期刊名称:PLANT SCIENCE ( 影响因子:4.729; 五年影响因子:5.132 )
ISSN: 0168-9452
年卷期: 2021 年 302 卷
页码:
收录情况: SCI
摘要: Arabidopsis thaliana TRY is a negative regulator of trichome differentiation that promotes root hair differentiation. Here, we established that LbTRY, from the recretohalophyte Limonium bicolor, is a typical MYB transcription factor that exhibits transcriptional activation activity and locates in nucleus. By in situ hybridization in L. bicolor, LbTRY may be specifically positioned in salt gland of the expanded leaves. LbTRY expression was the highest in mature leaves and lowest under NaCl treatment. For functional assessment, we heterologously expressed LbTRY in wild-type and try29760 mutant Arabidopsis plants. Epidermal differentiation was remarkably affected in the transgenic wild-type line, as was increased root hair development. Complementation of try29760 with LbTRY under both 35S and LbTRY specific promoter restored the wild-type phenotype. qRT-PCR analysis suggested that AtGL3 and AtZFP5 promote root hair cell fate in lines heterologously producing LbTRY. In addition, four genes (AtRHD6, AtRSL1, AtLRL2, and AtLRL3) involved in root hair initiation and elongation were upregulated in the transgenic lines. Furthermore, LbTRY specifically increased the salt sensitivity of the transgenic lines. The transgenic and complementation lines showed poor germination rates and reduced root lengths, whereas the mutant unexpectedly fared the best under a range of NaCl treatments. Under salt stress, the transgenic seedlings accumulated more MDA and Na+ and less proline and soluble sugar than try29760. Thus, when heterologously expressed in Arabidopsis, LbTRY participates in hair development, similar to other MYB proteins, and specifically reduces salt tolerance by increasing ion accumulation and reducing osmolytes. The expression of salt-tolerance marker genes (SOS1, SOS2, SOS3 and P5CS1) was significant reduced in the transgenic lines. More will be carried by downregulating expression of TRY homologs in crops to improve salt tolerance.
- 相关文献
作者其他论文 更多>>
-
The ZmbHLH47-ZmSnRK2.9 Module Promotes Drought Tolerance in Maize
作者:Yan, Zhenwei;Zhang, Fajun;Mu, Chunhua;Yao, Guoqi;Leng, Bingying;Liu, Xia;Ma, Changle;Sun, Yue;Hou, Jing
关键词:ABA response; drought tolerance; maize; ZmbHLH47; ZmSnRK2.9
-
Genome-Wide Investigation of the CRF Gene Family in Maize and Functional Analysis of ZmCRF9 in Response to Multiple Abiotic Stresses
作者:Yan, Zhenwei;Leng, Bingying;Yao, Guoqi;Zhang, Fajun;Mu, Chunhua;Liu, Xia;Hou, Jing;Ma, Changle;Sun, Yue
关键词:maize; cytokinin response factors; genome-wide analysis; expression analysis; abiotic stress
-
Molecular Mechanism of Gibberellins in Mesocotyl Elongation Response to Deep-Sowing Stress in Sweet Maize
作者:Leng, Bingying;Li, Ming;Mu, Chunhua;Yan, Zhenwei;Yao, Guoqi;Zhang, Fajun;Liu, Xia;Li, Ming;Ma, Changle;Liu, Xia;Kong, Xiangpei
关键词:sweet maize; deep-sowing; gibberellins; mesocotyls; GA20ox
-
Salt Stress Inhibits Photosynthesis and Destroys Chloroplast Structure by Downregulating Chloroplast Development-Related Genes in Robinia pseudoacacia Seedlings
作者:Lu, Chaoxia;Wan, Shubo;Li, Guowei;Li, Lingyu;Liu, Xiuling;Chen, Min;Li, Lingyu
关键词:Robinia pseudoacacia seedlings; photosynthesis; chloroplast; salt stress
-
Genome-Wide Analysis of the SNARE Family in Cultivated Peanut (Arachis hypogaea L.) Reveals That Some Members Are Involved in Stress Responses
作者:Lu, Chaoxia;Peng, Zhenying;Liu, Yiyang;Li, Guowei;Wan, Shubo
关键词:peanut; SNARE; gene family; vesicular transport; stress
-
A large deletion conferring pale green leaves of maize
作者:Yao, Guoqi;Zhang, Hua;Leng, Bingying;Cao, Bing;Shan, Juan;Yan, Zhenwei;Guan, Haiying;Cheng, Wen;Liu, Xia;Mu, Chunhua;Yao, Guoqi;Zhang, Hua;Leng, Bingying;Cao, Bing;Shan, Juan;Yan, Zhenwei;Guan, Haiying;Cheng, Wen;Liu, Xia;Mu, Chunhua;Yao, Guoqi;Zhang, Hua;Leng, Bingying;Cao, Bing;Shan, Juan;Yan, Zhenwei;Guan, Haiying;Cheng, Wen;Liu, Xia;Mu, Chunhua;Yao, Guoqi;Zhang, Hua;Leng, Bingying;Cao, Bing;Shan, Juan;Yan, Zhenwei;Guan, Haiying;Cheng, Wen;Liu, Xia;Mu, Chunhua;Liu, Xia
关键词:Maize; Pgl; Map based cloning; Large deletion
-
The ZmbHLH32-ZmIAA9-ZmARF1 module regulates salt tolerance in maize
作者:Yan, Zhenwei;Wang, Wenli;Leng, Bingying;Yao, Guoqi;Zhang, Fajun;Mu, Chunhua;Liu, Xia;Li, Ke;Li, Yanli
关键词:Signal transduction; Maize; Salt stress



