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BcSpl1,一种角蛋白酶- platnin 家族蛋白,有助于灰葡萄孢的毒力,并在宿主中引发过敏反应。

BcSpl1, a cerato-platanin family protein, contributes to Botrytis cinerea virulence and elicits the hypersensitive response in the host.

机构信息

Departamento de Bioquímica y Biología Molecular, Universidad de La Laguna, La Laguna, Spain.

出版信息

New Phytol. 2011 Oct;192(2):483-95. doi: 10.1111/j.1469-8137.2011.03802.x. Epub 2011 Jun 27.

Abstract

Proteins belonging to the cerato-platanin family are small proteins with phytotoxic activity. A member of this family, BcSpl1, is one of the most abundant proteins in the Botrytis cinerea secretome. Expression analysis of the bcspl1 gene revealed that the transcript is present in every condition studied, showing the highest level in planta at the late stages of infection. Expression of a second cerato-platanin gene found in the B. cinerea genome, bcspl2, was not detected in any condition. Two bcspl1 knock-out mutants were generated and both showed reduced virulence in a variety of hosts. • bcspl1 was expressed in Pichia pastoris and the recombinant protein was able to cause a fast and strong necrosis when infiltrated in tomato, tobacco and Arabidopsis leaves, in a dose-dependent manner. The BcSpl1-treated plant tissues showed symptoms of the hypersensitive response such as induction of reactive oxygen species, electrolyte leakage, cytoplasm shrinkage, and cell autofluorescence, as well as the induction of defense genes considered to be markers of the hypersensitive response. The Arabidopsis bak1 mutation partially prevented the induction of necrosis in this plant by BcSpl1. Two different BcSpl1-derived 40-amino acids peptides were also active in inducing necrosis.

摘要

属于角斑素家族的蛋白质是具有植物毒性活性的小蛋白质。该家族的一个成员,BcSpl1,是 Botrytis cinerea 分泌物中最丰富的蛋白质之一。bcspl1 基因的表达分析表明,该转录本存在于研究的每种条件下,在感染后期植物中表达水平最高。在任何条件下都未检测到在 Botrytis cinerea 基因组中发现的第二个角斑素基因 bcspl2 的表达。生成了两个 bcspl1 敲除突变体,它们在多种宿主中均表现出降低的毒力。• bcspl1 在巴斯德毕赤酵母中表达,重组蛋白能够以剂量依赖的方式在番茄、烟草和拟南芥叶片中引起快速而强烈的坏死。BcSpl1 处理的植物组织表现出过敏反应的症状,如活性氧的诱导、电解质渗漏、细胞质收缩和细胞自发荧光,以及被认为是过敏反应标志物的防御基因的诱导。拟南芥 bak1 突变部分阻止了 BcSpl1 在这种植物中诱导坏死。两种不同的 40 个氨基酸的 BcSpl1 衍生肽也能有效诱导坏死。

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