Literature DB >> 19017110

Identification and characterization of proteins associated with plant tolerance to heat stress.

Bingru Huang1, Chenping Xu.   

Abstract

Heat stress is a major abiotic stress limiting plant growth and productivity in many areas of the world. Understanding mechanisms of plant adaptation to heat stress would facilitate the development of heat-tolerant cultivars for improving productivity in warm climatic regions. Protein metabolism involving protein synthesis and degradation is one of the most sensitive processes to heat stress. Changes in the level and expression pattern of some proteins may play an important role in plant adaptation to heat stress. The identification of stress-responsive proteins and pathways has been facilitated by an increasing number of tools and resources, including two-dimensional electrophoresis and mass spectrometry, and the rapidly expanding nucleotide and amino acid sequence databases. Heat stress may induce or enhance protein expression or cause protein degradation. The induction of heat-responsive proteins, particularly heat shock proteins (HSPs), plays a key role in plant tolerance to heat stress. Protein degradation involving various proteases is also important in regulating plant responses to heat stress. This review provides an overview of recent research on proteomic profiling for the identification of heat-responsive proteins associated with heat tolerance, heat induction and characteristics of HSPs, and protein degradation in relation to plant responses to heat stress.

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Year:  2008        PMID: 19017110     DOI: 10.1111/j.1744-7909.2008.00735.x

Source DB:  PubMed          Journal:  J Integr Plant Biol        ISSN: 1672-9072            Impact factor:   7.061


  32 in total

1.  Identification and characterization of high temperature stress responsive genes in bread wheat (Triticum aestivum L.) and their regulation at various stages of development.

Authors:  Harsh Chauhan; Neetika Khurana; Akhilesh K Tyagi; Jitendra P Khurana; Paramjit Khurana
Journal:  Plant Mol Biol       Date:  2010-10-23       Impact factor: 4.076

Review 2.  miRNomes involved in imparting thermotolerance to crop plants.

Authors:  Vijay Gahlaut; Vinay Kumar Baranwal; Paramjit Khurana
Journal:  3 Biotech       Date:  2018-11-24       Impact factor: 2.406

3.  Characterization of the cork formation and production transcriptome in Quercus cerris × suber hybrids.

Authors:  Brígida Meireles; Ana Usié; Pedro Barbosa; Ana Margarida Fortes; André Folgado; Inês Chaves; Isabel Carrasquinho; Rita Lourenço Costa; Sónia Gonçalves; Rita Teresa Teixeira; António Marcos Ramos; Filomena Nóbrega
Journal:  Physiol Mol Biol Plants       Date:  2018-04-11

4.  Harvest-inducibility of the promoter of alfalfa S-adenosyl-L-methionine: trans-caffeoyl-CoA3-O-methyltransferase gene.

Authors:  Jian Zhang; Larry R Erickson
Journal:  Mol Biol Rep       Date:  2011-06-11       Impact factor: 2.316

Review 5.  Proteomics of rice in response to heat stress and advances in genetic engineering for heat tolerance in rice.

Authors:  Jie Zou; Cuifang Liu; Xinbo Chen
Journal:  Plant Cell Rep       Date:  2011-07-17       Impact factor: 4.570

6.  Heat stress-induced BBX18 negatively regulates the thermotolerance in Arabidopsis.

Authors:  Qiming Wang; Xiaoju Tu; Jihong Zhang; Xinbo Chen; Liqun Rao
Journal:  Mol Biol Rep       Date:  2012-12-14       Impact factor: 2.316

7.  Evaluation of higher plant virus resistance genes in the green alga, Chlorella variabilis NC64A, during the early phase of infection with Paramecium bursaria chlorella virus-1.

Authors:  Janet M Rowe; David D Dunigan; Guillaume Blanc; James R Gurnon; Yuannan Xia; James L Van Etten
Journal:  Virology       Date:  2013-05-21       Impact factor: 3.616

8.  DREB2C acts as a transcriptional activator of the thermo tolerance-related phytocystatin 4 (AtCYS4) gene.

Authors:  Jihyun Je; Chieun Song; Jung Eun Hwang; Woo Sik Chung; Chae Oh Lim
Journal:  Transgenic Res       Date:  2013-07-19       Impact factor: 2.788

Review 9.  5-aminolevulinic acid-mediated plant adaptive responses to abiotic stress.

Authors:  Mohammad Saidur Rhaman; Shahin Imran; Md Masudul Karim; Jotirmoy Chakrobortty; Md Asif Mahamud; Prosenjit Sarker; Md Tahjib-Ul-Arif; Arif Hasan Khan Robin; Wenxiu Ye; Yoshiyuki Murata; Mirza Hasanuzzaman
Journal:  Plant Cell Rep       Date:  2021-04-10       Impact factor: 4.570

10.  Inheritance of heat tolerance in perennial ryegrass (Lolium perenne, Poaceae): evidence from progeny array analysis.

Authors:  Wagdi S Soliman; Ahmed M Abbas; Stephen J Novak; Masahiro Fujimori; Kazuhiro Tase; Shu-Ichi Sugiyama
Journal:  PeerJ       Date:  2021-07-20       Impact factor: 2.984

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