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Maize heat shock proteins-prospection,validation,categorization and in silico analysis of the different ZmHSP families

作     者:Rubens Diogo-Jr. Edila Vilela de Resende Von Pinho Renan Terassi Pinto Lingrui Zhang Jorge Alberto Condori-Apfata Paula Andrade Pereira Danielle Rezende Vilela 

作者机构:Department of Horticulture and Landscape ArchitecturePurdue UniversityWest LafayetteIN(47907)USA Department of AgricultureFederal University of Lavras(UFLA)LavrasMG(37200-900)Brazil Faculty of Philosophy and Sciences at Ribeirao PretoUniversity of Sao Paulo(USP)Ribeirao PretoSP(14040-901)Brazil Faculty of Engineering and Agricultural SciencesUniversidad Nacional Toribio Rodriguez de Mendoza de Amazonas(UNTRM)ChachapoyasAM(01001)Peru 

出 版 物:《Stress Biology》 (逆境生物学(英文))

年 卷 期:2023年第3卷第1期

页      面:403-423页

学科分类:09[农学] 0901[农学-作物学] 

基  金:supported by scholarships from the Coordination for the Improvement of Higher Education Personnel(CAPES,process:CAPES-Print 88887.370528/2019-00) the Minas Gerais Research Funding Foundation(FAPEMIG) 

主  题:Biotechnology Genomics Corn Stress Drought Compendium 

摘      要:Among the plant molecular mechanisms capable of effectively mitigating the effects of adverse weather conditions,the heat shock proteins(HSPs),a group of chaperones with multiple functions,stand *** a time of full progress on the omic sciences,they look very promising in the genetic engineering field,especially in order to conceive superior genotypes,potentially tolerant to abiotic stresses(AbSts).Recently,some works concerning certain families of maize HSPs(ZmHSPs)were ***,there was still a lack of a study that,with a high degree of criteria,would fully conglomerate *** distinct but complementary strategies,we have prospected as many ZmHSPs candidates as possible,gathering more than a thousand *** detailed data mining,we accounted for 182 validated ones,belonging to seven families,which were subcategorized into classes with potential for functional *** them,we identified dozens of motifs with some degree of similarity with proteins from different kingdoms,which may help explain some of their still poorly understood means of *** in silico and in vitro approaches,we compared their expression levels after controlled exposure to several AbSts’sources,applied at diverse tissues,on varied phenological *** on gene ontology concepts,we still analyzed them from different perspectives of term *** have also searched,in model plants and close species,for potentially orthologous *** all these new insights,which culminated in a plentiful supplementary material,rich in tables,we aim to constitute a fertile consultation source for those maize researchers attracted by these interesting stress proteins.

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