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生物营养相关分泌蛋白4(BAS4)参与从生物营养阶段到坏死营养阶段的转变。

The biotrophy-associated secreted protein 4 (BAS4) participates in the transition of from the biotrophic to the necrotrophic phase.

作者信息

Wang Chunmei, Liu Yanfang, Liu Lin, Wang Yunfeng, Yan Jinlu, Wang Changmi, Li Chengyun, Yang Jing

机构信息

State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming 65000, China.

Quality Standard and Testing Technology Research Institute, Yunnan Academy of Agricultural Sciences, Kunming 650205, China.

出版信息

Saudi J Biol Sci. 2019 May;26(4):795-807. doi: 10.1016/j.sjbs.2019.01.003. Epub 2019 Jan 8.

Abstract

The physiological and metabolic processes of host plants are manipulated and remodeled by phytopathogenic fungi during infection, revealed obvious signs of biotrophy of the hemibiotrophic pathogen. As we known that effector proteins play key roles in interaction of hemibiotrophic fungi and their host plants. BAS4 (biotrophy-associated secreted protein 4) is an EIHM (extrainvasive hyphal membrane) matrix protein that was highly expressed in infectious hyphae. In order to study whether BAS4 is involved in the transition of rice blast fungus from biotrophic to necrotrophic phase, The susceptible rice cultivar Lijiangxintuanheigu (LTH) that were pre-treated with prokaryotic expression product of BAS4 and then followed with inoculation of the blast strain, more serious blast disease symptom, more biomass such as sporulation and fungal relative growth, and lower expression level of pathogenicity-related genes appeared in lesion of the rice leaves than those of the PBS-pretreated-leaves followed with inoculation of the same blast strain, which demonstrating that BAS4 changed rice defense system to facilitate infection of rice blast strain. And the susceptible rice cultivar (LTH) were inoculated withBAS4-overexpressed blast strain, we also found more serious blast disease symptom and more biomass also appeared in lesion of leaves inoculated with BAS4-overexpressed strain than those of leaves inoculated with the wild-type strain, and expression level of pathogenicity-related genes appeared lower in biotrophic phase and higher in necrotrophic phase of infection, indicating BAS4 maybe in vivo regulate defense system of rice to facilitate transition of biotrophic to necrotrophic phase. Our data demonstrates that BAS4 in vitro and in vivo participates in transition from the biotrophic to the necrotrophic phase of .

摘要

在感染过程中,植物病原真菌会操纵和重塑寄主植物的生理和代谢过程,这显示出半活体营养型病原菌明显的活体营养特征。我们知道效应蛋白在半活体营养型真菌与其寄主植物的相互作用中起关键作用。BAS4(生物营养相关分泌蛋白4)是一种在侵染菌丝中高度表达的细胞外侵染菌丝膜(EIHM)基质蛋白。为了研究BAS4是否参与稻瘟病菌从活体营养阶段向死体营养阶段的转变,用BAS4的原核表达产物预处理感病水稻品种丽江新团黑谷(LTH),然后接种稻瘟病菌株,与接种相同稻瘟病菌株的PBS预处理叶片相比,水稻叶片病斑处出现更严重的稻瘟病症状、更多的生物量如产孢量和真菌相对生长量,以及致病性相关基因的表达水平更低,这表明BAS4改变了水稻的防御系统以促进稻瘟病菌株的侵染。并且用过表达BAS4的稻瘟病菌株接种感病水稻品种(LTH),我们还发现接种过表达BAS4菌株的叶片病斑处比接种野生型菌株的叶片出现更严重的稻瘟病症状和更多的生物量,并且在侵染的活体营养阶段致病性相关基因的表达水平较低,在死体营养阶段较高,表明BAS4可能在体内调节水稻的防御系统以促进从活体营养阶段向死体营养阶段的转变。我们的数据表明,BAS4在体外和体内都参与了稻瘟病菌从活体营养阶段向死体营养阶段的转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a33d/6486625/74d543c07518/gr1.jpg

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