Literature DB >> 24102799

A novel membrane-bound E3 ubiquitin ligase enhances the thermal resistance in plants.

Zhi-Bin Liu1, Jian-Mei Wang, Feng-Xi Yang, Liang Yang, Yu-Fei Yue, Jun-Bei Xiang, Mei Gao, Fang-Jian Xiong, Dong Lv, Xian-Jun Wu, Ning Liu, Xun Zhang, Xu-Feng Li, Yi Yang.   

Abstract

High temperature stress disturbs cellular homoeostasis and results in a severe retardation in crop growth and development. Thus, it is important to reveal the mechanism of plants coping with heat stress. In this study, a novel gene that we identified from Brassica napus, referred to as BnTR1, was found to play a key role in heat stress response in planta. BnTR1 is a membrane-bound RINGv (C₄HC₃) protein that displays E3 ligase activity in vitro. We demonstrated that modest expression of BnTR1 is sufficient to minimize adverse environmental influence and confers thermal resistance on development without any detrimental effects in B. napus and Oryza sativa. Our investigation into the action mechanism indicates that BnTR1 is likely to be involved in mediating Ca²⁺ dynamics by regulating the activity of calcium channels, which further alters the transcripts of heat shock factors and heat shock proteins contributing to plant thermotolerance. Hence, our study identified BnTR1 as a novel key factor underlying a conserved mechanism conferring thermal resistance in plants.
© 2013 Society for Experimental Biology, Association of Applied Biologists and John Wiley & Sons Ltd.

Entities:  

Keywords:  BnTR1; Brassica napus; Oryza sativa; heat shock proteins; thermal resistance

Mesh:

Substances:

Year:  2013        PMID: 24102799     DOI: 10.1111/pbi.12120

Source DB:  PubMed          Journal:  Plant Biotechnol J        ISSN: 1467-7644            Impact factor:   9.803


  13 in total

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10.  Genome-wide transcriptome profile of rice hybrids with and without Oryza rufipogon introgression reveals candidate genes for yield.

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