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小麦感染白粉病和条锈病后热休克蛋白的鉴定与表达分析。

Identification and expression analysis of heat-shock proteins in wheat infected with powdery mildew and stripe rust.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas, College of Agronomy, Northwest A&F University, Yangling, Shaanxi, 712100, P.R. China.

China-Australia Joint Research Center for Abiotic and Biotic Stress Management, Northwest A&F University, Yangling, Shaanxi, 712100, P.R. China.

出版信息

Plant Genome. 2021 Jul;14(2):e20092. doi: 10.1002/tpg2.20092. Epub 2021 Mar 14.

Abstract

Heat-shock proteins (HSPs), which are encoded by conserved gene families in plants, are crucial for development and responses to diverse stresses. However, the wheat (Triticum aestivum L.) HSPs have not been systematically classified, especially those involved in protecting plants from disease. Here, we classified 119 DnaJ (Hsp40) proteins (TaDnaJs; encoded by 313 genes) and 41 Hsp70 proteins (TaHsp70s; encoded by 95 genes) into six and four groups, respectively, via a phylogenetic analysis. An examination of protein sequence alignment revealed diversity in the TaDnaJ structural organization, but a highly conserved J-domain, which was usually characterized by an HPD motif followed by DRD or DED motifs. The expression profiles of HSP-encoding homologous genes varied in response to Blumeria graminis f. sp. tritici (Bgt) and Puccinia striiformis f. sp. tritici (Pst) stress. A quantitative real-time polymerase chain reaction (qRT-PCR) analysis indicated a lack of similarity in the expression of DnaJ70b, Hsp70-30b, and Hsp90-4b in Bgt-infected resistant and susceptible wheat. Furthermore, a direct interaction between DnaJ70 and TaHsp70-30 was not detected in a yeast two-hybrid (Y2H) assay, but screening cDNA library and Y2H evidence supported that TaHsp70-30 not only interacts directly with heat-shock transcription factor (HSF) A9-like protein but also interacts with TaHsp90-4 by HSP organizing protein. This study revealed the structure and expression profiles of the HSP-encoding genes in wheat, which may be useful for future functional elucidation of wheat HSPs responses to fungal infections.

摘要

热休克蛋白(HSPs)是植物中保守基因家族编码的,对发育和应对各种胁迫至关重要。然而,小麦(Triticum aestivum L.)的 HSPs 尚未得到系统分类,特别是那些参与保护植物免受疾病侵害的 HSPs。在这里,我们通过系统发育分析,将 119 种 DnaJ(Hsp40)蛋白(TaDnaJs;由 313 个基因编码)和 41 种 Hsp70 蛋白(TaHsp70s;由 95 个基因编码)分别分为六组和四组。对蛋白质序列比对的检查显示,TaDnaJ 结构组织具有多样性,但存在高度保守的 J 结构域,通常以 HPD 基序为特征,后面跟着 DRD 或 DED 基序。HSP 编码同源基因的表达谱在受到小麦条锈菌(Bgt)和小麦叶锈菌(Pst)胁迫时表现出差异。实时定量聚合酶链反应(qRT-PCR)分析表明,在 Bgt 感染的抗性和敏感小麦中,DnaJ70b、Hsp70-30b 和 Hsp90-4b 的表达缺乏相似性。此外,在酵母双杂交(Y2H)试验中未检测到 DnaJ70 与 TaHsp70-30 之间的直接相互作用,但 cDNA 文库筛选和 Y2H 证据表明,TaHsp70-30 不仅与热休克转录因子(HSF)A9 样蛋白直接相互作用,而且与 HSP 组织蛋白直接相互作用。TaHsp90-4。这项研究揭示了小麦 HSP 编码基因的结构和表达谱,这可能对未来阐明小麦 HSPs 对真菌感染的反应功能有用。

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