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分泌组学分析揭示了 与香蕉果实互作过程中与毒力相关的蛋白。

Secretome Profiling Reveals Virulence-Associated Proteins of during Interaction with Banana Fruit.

机构信息

Key Laboratory of Plant Resource Conservation and Sustainable Utilization, Guangdong Provincial Key Laboratory of Applied Botany, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China.

University of Chinese Academy of Sciences, Beijing 100039, China.

出版信息

Biomolecules. 2019 Jun 23;9(6):246. doi: 10.3390/biom9060246.

Abstract

Secreted proteins are vital for the pathogenicity of many fungi through manipulating their hosts for efficient colonization. is a phytopathogenic fungus infecting many crops, vegetables, and fruit, including banana fruit. To access the proteins involved in pathogen-host interaction, we used label-free quantitative proteomics technology to comparatively analyze the secretomes of cultured with and without banana peel in Czapek's broth medium. By analyzing the secretomes of , we have identified 105 proteins with 40 exclusively secreted and 65 increased in abundance in response to a banana peel. These proteins were involved in the promotion of invasion of banana fruit, and they were mainly categorized into virulence factors, cell wall degradation, metabolic process, response to stress, regulation, and another unknown biological process. The expressions of corresponding genes confirmed the existence of these secreted proteins in the banana peel. Furthermore, expression pattern suggested variable roles for these genes at different infection stages. This study expanded the current database of secreted proteins which might be involved in the infection strategy of this fungus. Additionally, this study warranted the further attention of some secreted proteins that might initiate infection of on banana fruit.

摘要

分泌蛋白对于许多真菌的致病性至关重要,它们通过操纵宿主以实现有效的定植。 是一种植物病原真菌,感染许多作物、蔬菜和水果,包括香蕉果实。为了研究参与病原体-宿主相互作用的蛋白质,我们使用无标记定量蛋白质组学技术比较分析了在 Czapek 肉汤培养基中培养的 和 与香蕉皮共培养的分泌组。通过分析 的分泌组,我们鉴定出 105 种蛋白质,其中 40 种为特有分泌蛋白,65 种在响应香蕉皮时丰度增加。这些蛋白质参与了香蕉果实的侵袭促进作用,它们主要分为毒力因子、细胞壁降解、代谢过程、应激反应、调节以及另一个未知的生物学过程。相应基因的表达证实了这些分泌蛋白在香蕉皮中的存在。此外,表达模式表明这些基因在不同感染阶段可能发挥不同的作用。本研究扩展了 当前数据库中 可能参与该真菌感染策略的分泌蛋白。此外,本研究还值得进一步关注一些分泌蛋白,这些分泌蛋白可能引发 对香蕉果实的感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51cb/6628180/6f0cdb5379d6/biomolecules-09-00246-g001.jpg

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