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与辣椒植株细胞死亡反应相关的多种免疫相关蛋白酶类。

Multiple classes of immune-related proteases associated with the cell death response in pepper plants.

机构信息

Department of Plant Sciences, Plant Genomics and Breeding Institute, Seoul National University, Seoul, Korea.

出版信息

PLoS One. 2013 May 16;8(5):e63533. doi: 10.1371/journal.pone.0063533. Print 2013.

Abstract

Proteases regulate a large number of biological processes in plants, such as metabolism, physiology, growth, and defense. In this study, we carried out virus-induced gene silencing assays with pepper cDNA clones to elucidate the biological roles of protease superfamilies. A total of 153 representative protease genes from pepper cDNA were selected and cloned into a Tobacco rattle virus-ligation independent cloning vector in a loss-of-function study. Silencing of 61 proteases resulted in altered phenotypes, such as the inhibition of shoot growth, abnormal leaf shape, leaf color change, and lethality. Furthermore, the silencing experiments revealed that multiple proteases play a role in cell death and immune response against avirulent and virulent pathogens. Among these 153 proteases, 34 modulated the hypersensitive cell death response caused by infection with an avirulent pathogen, and 16 proteases affected disease symptom development caused by a virulent pathogen. Specifically, we provide experimental evidence for the roles of multiple protease genes in plant development and immune defense following pathogen infection. With these results, we created a broad sketch of each protease function. This information will provide basic information for further understanding the roles of the protease superfamily in plant growth, development, and defense.

摘要

蛋白酶调节植物中的大量生物过程,如代谢、生理、生长和防御。在这项研究中,我们使用辣椒 cDNA 克隆进行病毒诱导的基因沉默实验,以阐明蛋白酶超家族的生物学作用。从辣椒 cDNA 中选择了总共 153 个代表性的蛋白酶基因,并将其克隆到烟草脆裂病毒连接独立克隆载体中进行功能丧失研究。61 种蛋白酶的沉默导致了表型的改变,如芽生长抑制、叶片形状异常、叶片颜色变化和致死。此外,沉默实验表明,多种蛋白酶在细胞死亡和对无毒和有毒病原体的免疫反应中发挥作用。在这 153 种蛋白酶中,有 34 种调节了由无毒病原体感染引起的过敏细胞死亡反应,16 种蛋白酶影响了由有毒病原体引起的疾病症状发展。具体来说,我们提供了实验证据,证明了多种蛋白酶基因在植物发育和免疫防御方面的作用,这些基因在病原体感染后发挥作用。有了这些结果,我们对每个蛋白酶功能进行了广泛的概述。这些信息将为进一步理解蛋白酶超家族在植物生长、发育和防御中的作用提供基础信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/949f/3656034/b60f16018e11/pone.0063533.g001.jpg

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