文献类型: 外文期刊
作者: Ma Ya-nan;Xu Dong-bei;Fang Guang-ning;Wang Er-hui;Zhang Xiao-hong;Min Dong-hong;Ma Ya-nan;Chen Ming;Xu Zhao-shi;Li Lian-cheng;Ma You-zhi;Gao Shi-qing
作者机构:
关键词: Arabidopsis;heterotrimeric G-protein beta subunit;physiological processes;salt stress tolerance
期刊名称: JOURNAL OF INTEGRATIVE AGRICULTURE
ISSN: 2095-3119
年卷期: 2015 年 14 卷 2 期
页码:
收录情况: SCI
摘要: The heterotrimeric GTP-binding proteins (G-proteins) in eukaryotes consisted of alpha, beta and gamma subunits and are important in molecular signaling by interacting with G-protein-coupled receptors (GPCR), on which to transduce signaling into the cytoplast through appropriate downstream effectors. However, downstream effectors regulated by the G-proteins in plants are currently not well defined. In this study, the transcripts of AGB1, a G protein 13 subunit gene in Arabidopsis were found to be down-regulated by cold and heat, but up-regulated by high salt stress treatment. AGB1 mutant (agb1-2) was more sensitive to high salt stress than wild-type (WT). Compared with WT, the cotyledon greening rates, fresh weight, root length, seedling germination rates and survival rates decreased more rapidly in agb1-2 along with increasing concentrations of NaCI in normal (MS) medium. Physiological characteristic analysis showed that compared to WT, the contents of chlorophyll, relative proline accumulation and peroxidase (POD) were reduced, whereas the malonaldehyde (MDA) content and concentration ratio of Na+/K+ were increased in agb1-2 under salt stress condition. Further studies on the expression of several stress inducible genes associated with above physiological processes were investigated, and the results revealed that the expressions of genes related to praline biosynthesis, oxidative stress response, Na+ homeostasis, stress- and ABA-responses were lower in agb1-2 than in WT, suggesting that those genes are possible downstream genes of AGB1 and that their changed expression plays an important role in determining phenotypic and physiologic traits in agb1-2. Taken together, these findings indicate that AGB1 positively regulates salt tolerance in Arabidopsis through its modulation of genes transcription related to proline biosynthesis, oxidative stress, ion homeostasis, stress- and ABA-responses.
分类号:
- 相关文献
作者其他论文 更多>>
-
Genomic-Wide Analysis of the PLC Family and Detection of GmPI-PLC7 Responses to Drought and Salt Stresses in Soybean
作者:Chen Zhi-Feng;Ru Jing-Na;Sun Guo-Zhong;Du Yan;Chen Jun;Zhou Yong-Bin;Chen Ming;Ma You-Zhi;Xu Zhao-Shi;Zhang Xiao-Hong
关键词:abiotic stresses; genomic-wide analysis; Glycine max; hairy root assay; PLC proteins
-
The Nac-Like Transcription Factor. Sinac110 I.n Foxtail Millet (Setaria I talica L.) Confers Tolerance To Drought And High Salt Stress Through An Aba Independent Signaling Pathway
作者:Xu Dong-bei;Xie Li-na;Xu Zhao-shi;Zhou Yong-bin;Zhang Xiao-hong;Feng Lu;Chen Ming;Li Lian-cheng;Min Dong-hong;Ma You-zhi
关键词:foxtail millet (Setaria italica (L.); NAC-like transcription factor; drought stress; high salt stress; ABA-independent pathway
-
Characteristics and Expression Patterns of the Aldehyde Dehydrogenase (ALDH) Gene Superfamily of Foxtail Millet (Setaria italica L.)
作者:Chen Zhu;Chen Xue-ping;Chen Zhu;Chen Ming;Xu Zhao-shi;Li Lian-cheng;Ma You-zhi
关键词:
-
Characterization of Ethylene Receptors and Their Interactions with GmTPR-A Novel Tetratricopeptide Repeat Protein (TPR) in Soybean (Glycine max L.)
作者:Niu Yan-yan;Chen Xue-ping;Niu Yan-yan;Chen Ming;Ma You-zhi
关键词:soybean;Arabidopsis;ethylene receptor;TPR protein
-
Isolation and Functional Analysis of the bZIP Transcription Factor Gene TaABP1 from a Chinese Wheat Landrace
作者:Cao Xin-you;Chen Ming;Xu Zhao-shi;Li Lian-cheng;Yu Yue-hua;Liu Yang-na;Ma You-zhi;Cao Xin-you;Cao Xin-you;Chen Yao-feng
关键词:wheat;expression pattern;stress tolerance;sub-cellular localization;transcriptional activation
-
Expression profile analysis of the oxygen response in the nitrogen-fixing Pseudomonas stutzeri A1501 by genome-wide DNA microarray
作者:Dou YueTan;Lin Min;Dou YueTan;Yan YongLiang;Ping ShuZhen;Lu Wei;Chen Ming;Zhang Wei;Lin Min;Wang YiPing;Jin Qi
关键词: