首站-论文投稿智能助手
典型文献
Calcineurin B-like protein 5 (SiCBL5) in Setaria italica enhances salt tolerance by regulating Na+homeostasis
文献摘要:
Salinity, a major abiotic stress, reduces plant growth and severely limits agricultural productivity. Plants regulate salt uptake via calcineurin B-like proteins (CBLs). Although extensive studies of the functions of CBLs in response to salt stress have been conducted in Arabidopsis, their functions in Setaria italica are still poorly understood. The foxtail millet genome encodes seven CBLs, of which only SiCBL4 was shown to be involved in salt response. Overexpression of SiCBL5 in Arabidopsis thaliana sos3-1 mutant rescued its salt hypersensitivity phenotype, but that of other SiCBLs (SiCBL1, SiCBL2, SiCBL3, SiCBL6, and SiCBL7) did not rescue the salt hypersensitivity of the Atsos3-1 mutant. SiCBL5 harbors an N-myristoylation motif and is located in the plasma membrane. Overexpression of SiCBL5 in foxtail millet increased its salt tolerance, but its knockdown increased salt hypersensitivity. Yeast two-hybrid and firefly luciferase complementa-tion imaging assays showed that SiCBL5 physically interacted with SiCIPK24 in vitro and in vivo. Co-overexpression of SiCBL5, SiCIPK24, and SiSOS1 in yeast conferred a high-salt-tolerance phenotype. Compared to wild-type plants under salt stress conditions, SiCBL5 overexpressors showed lower accumu-lations of Na+and stronger Na+efflux, whereas RNAi-SiCBL5 plants showed higher accumulations of Na+and weaker Na+efflux. These results indicate that SiCBL5 confers salt tolerance in foxtail millet by mod-ulating Na+homeostasis.
文献关键词:
作者姓名:
Jingwei Yan;Lan Yang;Ya Liu;Yingdi Zhao;Tong Han;Xingfen Miao;Aying Zhang
作者机构:
College of Life Sciences,Nanjing Agricultural University,Nanjing 210095,Jiangsu,China;State Key Laboratory of Crop Genetics and Germplasm Enhancement,Nanjing Agricultural University,Nanjing 210095,Jiangsu,China;College of Agriculture,Heilongjiang Bayi Agricultural University,Daqing 163319,Heilongjiang,China
引用格式:
[1]Jingwei Yan;Lan Yang;Ya Liu;Yingdi Zhao;Tong Han;Xingfen Miao;Aying Zhang-.Calcineurin B-like protein 5 (SiCBL5) in Setaria italica enhances salt tolerance by regulating Na+homeostasis)[J].作物学报(英文版),2022(01):234-242
A类:
SiCBL5,Na+homeostasis,SiCBL4,sos3,SiCBLs,SiCBL1,SiCBL2,SiCBL3,SiCBL6,SiCBL7,Atsos3,myristoylation,complementa,SiCIPK24,SiSOS1,overexpressors,Na+efflux
B类:
Calcineurin,like,Setaria,italica,enhances,salt,tolerance,by,regulating,Salinity,major,abiotic,stress,reduces,growth,severely,limits,agricultural,productivity,Plants,regulate,uptake,via,calcineurin,proteins,Although,extensive,studies,functions,response,have,been,conducted,Arabidopsis,their,still,poorly,understood,foxtail,millet,genome,encodes,seven,which,only,was,shown,involved,Overexpression,thaliana,mutant,rescued,hypersensitivity,phenotype,but,that,other,did,harbors,motif,located,plasma,membrane,increased,knockdown,Yeast,two,hybrid,firefly,luciferase,imaging,assays,showed,physically,interacted,vitro,vivo,overexpression,yeast,conferred,Compared,wild,plants,conditions,lower,Na+and,stronger,whereas,RNAi,higher,accumulations,weaker,These,results,indicate,confers,mod
AB值:
0.429832
相似文献
Agronomical selection on loss-of-function of GIGANTEA simultaneously facilitates soybean salt tolerance and early maturity
Lidong Dong;Zhihong Hou;Haiyang Li;Zhaobo Li;Chao Fang;Lingping Kong;Yongli Li;Hao Du;Tai Li;Lingshuang Wang;Milan He;Xiaohui Zhao;Qun Cheng;Fanjiang Kong;Baohui Liu-Guangdong Key Laboratory of Plant Adaptation and Molecular Design,Guangzhou Key Laboratory of Crop Gene Editing,Innovative Center of Molecular Genetics and Evolution,School of Life Sciences,Guangzhou University,Guangzhou Higher Education Mega Center,Guangzhou 510006,China;College of Agriculture,Heilongjiang Bayi Agricultural University,Daqing 510062,China;National Key Laboratory of Crop Genetics and Germplasm Enhancement,National Center for Soybean Improvement,Jiangsu Collaborative Innovation Center for Modern Crop Production,Nanjing Agricultural University,Nanjing 210095,China;College of Agriculture,Jilin Agricultural Science and Technology University,Jilin 132101,China;The Innovative Academy of Seed Design,Key Laboratory of Soybean Molecular Design Breeding,Northeast Institute of Geography and Agroecology,Chinese Academy of Sciences,Harbin 150081,China
The genome of Hibiscus hamabo reveals its adaptation to saline and waterlogged habitat
Zhiquan Wang;Jia-Yu Xue;Shuai-Ya Hu;Fengjiao Zhang;Ranran Yu;Dijun Chen;Yves Van de Peer;Jiafu Jiang;Aiping Song;Longjie Ni;Jianfeng Hua;Zhiguo Lu;Chaoguang Yu;Yunlong Yin;Chunsun Gu-Institute of Botany,Jiangsu Province and Chinese Academy of Sciences,Nanjing,210014,China;College of Horticulture,Academy for Advanced Interdisciplinary Studies,Nanjing Agricultural University,Nanjing 210095,China;State Key Laboratory of Pharmaceutical Biotechnology,School of Life Sciences,Nanjing University,Nanjing 210023,China;Department of Plant Biotechnology and Bioinformatics,Ghent University,VIB-UGent Center for Plant Systems Biology,B-9052 Ghent,Belgium;Department of Biochemistry,Genetics and Microbiology,University of Pretoria,Pretoria 0028,South Africa;College of Horticulture,Nanjing Agricultural University,Nanjing 210095,China;College of Forest Sciences,Nanjing Forestry University,Nanjing,210037,China;Jiangsu Key Laboratory for the Research and Utilization of Plant Resources,Jiangsu Utilization of Agricultural Germplasm,Nanjing,210014,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。