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玉米伴侣蛋白60(ZmCpn60-3)的抗病功能分析及互作蛋白筛选

Disease-Resistance Functional Analysis and Screening of Interacting Proteins of ZmCpn60-3, a Chaperonin 60 Protein from Maize.

作者信息

Su Bo, Mao Lixue, Wu Huiping, Yu Xinru, Bian Chongyu, Xie Shanshan, Ahmed Temoor, Jiang Hubiao, Ding Ting

机构信息

Key Laboratory of Biology and Sustainable Management of Plant Diseases and Pests of Anhui Higher Education Institutes, School of Plant Protection, Anhui Agricultural University, Hefei 230036, China.

Anhui Province Key Laboratory of Integrated Pest Management on Crops, Hefei 230036, China.

出版信息

Plants (Basel). 2025 Jun 30;14(13):1993. doi: 10.3390/plants14131993.

Abstract

Chaperonin 60 proteins plays an important role in plant growth and development as well as the response to abiotic stress. As part of the protein homeostasis system, molecular chaperones have attracted increasing attention in recent years due to their involvement in the folding and assembly of key proteins in photosynthesis. However, little is known about the function of maize chaperonin 60 protein. In the study, a gene encoding the chaperonin 60 proteins was cloned from the maize inbred line B73, and named . The gene was 1, 818 bp in length and encoded a protein consisting of 605 amino acids. Phylogenetic analysis showed that ZmCpn60-3 had high similarity with OsCPN60-1, belonging to the β subunits of the chloroplast chaperonin 60 protein family, and it was predicted to be localized in chloroplasts. The was highly expressed in the stems and tassels of maize, and could be induced by exogenous plant hormones, mycotoxins, and pathogens; Overexpression of in improved the resistance to DC3000 by inducing the hypersensitive response and the expression of SA signaling-related genes, and the HO and the SA contents of -overexpressing infected with DC3000 accumulated significantly when compared to the wild-type controls. Experimental data demonstrate that flg22 treatment significantly upregulated transcriptional levels of the PR1 defense gene in -transfected maize protoplasts. Notably, the enhanced resistance phenotype against Pseudomonas syringae pv. tomato DC3000 ( DC3000) in -overexpressing transgenic lines was specifically abolished by pretreatment with ABT, a salicylic acid (SA) biosynthetic inhibitor. Our integrated findings reveal that this chaperonin protein orchestrates plant immune responses through a dual mechanism: triggering a reactive oxygen species (ROS) burst while simultaneously activating SA-mediated signaling cascades, thereby synergistically enhancing host disease resistance. Additionally, yeast two-hybrid assay preliminary data indicated that ZmCpn60-3 might bind to ZmbHLH118 and ZmBURP7, indicating ZmCpn60-3 might be involved in plant abiotic responses. The results provided a reference for comprehensively understanding the resistance mechanism of in plant responses to abiotic or biotic stress.

摘要

伴侣蛋白60在植物生长发育以及对非生物胁迫的响应中发挥着重要作用。作为蛋白质稳态系统的一部分,分子伴侣近年来因其参与光合作用中关键蛋白质的折叠和组装而受到越来越多的关注。然而,关于玉米伴侣蛋白60的功能却知之甚少。在本研究中,从玉米自交系B73中克隆了一个编码伴侣蛋白60的基因,并将其命名为 。该基因长度为1818 bp,编码一个由605个氨基酸组成的蛋白质。系统发育分析表明,ZmCpn60 - 3与OsCPN60 - 1具有高度相似性,属于叶绿体伴侣蛋白60蛋白家族的β亚基,并且预测其定位于叶绿体中。 在玉米的茎和雄穗中高度表达,并且能够被外源植物激素、霉菌毒素和病原体诱导;在 中过表达 通过诱导超敏反应和SA信号相关基因的表达提高了对丁香假单胞菌番茄致病变种DC3000( DC3000)的抗性,与野生型对照相比,感染 DC3000的 过表达植株中HO和SA含量显著积累。实验数据表明,flg22处理显著上调了转染 的玉米原生质体中PR1防御基因的转录水平。值得注意的是,用SA生物合成抑制剂ABT预处理可特异性消除 过表达转基因株系对丁香假单胞菌番茄致病变种DC3000( DC3000)增强的抗性表型。我们的综合研究结果表明,这种伴侣蛋白通过双重机制协调植物免疫反应:引发活性氧(ROS)爆发,同时激活SA介导的信号级联反应,从而协同增强宿主抗病性。此外,酵母双杂交试验初步数据表明ZmCpn60 - 3可能与ZmbHLH118和ZmBURP7结合,表明ZmCpn60 - 3可能参与植物非生物响应。这些结果为全面了解 在植物对非生物或生物胁迫响应中的抗性机制提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44c3/12251557/416691ec8885/plants-14-01993-g004.jpg

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