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菌株NGJ1利用一种噬菌体尾样蛋白进行噬菌作用。

strain NGJ1 deploys a prophage tail-like protein for mycophagy.

作者信息

Kumar Rahul, Kumar Yadav Sunil, Swain Durga M, Jha Gopaljee

机构信息

Plant Microbe Interactions Laboratory, National Institute of Plant Genome Research, Aruna Asaf Ali Marg, New Delhi-110067, India.

出版信息

Microb Cell. 2017 Dec 31;5(2):116-118. doi: 10.15698/mic2018.02.617.

Abstract

Fungal pathogens are responsible for approximately two third of the infectious plant diseases. Historically they have been associated with several devastating famines, causing death and disabilities in humans. Mostly fungal diseases are being controlled by using fungicides which otherwise have adverse side effects on the health of consumers as well as environment. Due to extensive usages, pathogens have evolved resistance against most of the commonly used fungicides and rendered them ineffective. Controlling fungal disease in a sustainable and eco-friendly fashion remains a challenge. The antifungal biocontrol agents are being considered as potent, alternative and ecofriendly approach to manage fungal diseases. In our recent work, we have identified a rice associated bacterium; strain NGJ1 which demonstrates broad spectrum fungal eating (mycophagous) property. We determined that the bacterium utilizes its type III secretion system (Injectisome) machinery to deploy a prophage tail-like protein (Bg_9562) into fungal cells to devour them. The purified Bg_9562 protein from over-expressing recombinant strain demonstrates broad spectrum antifungal activity. Overall our study opens up a new opportunity to exploit prophage tail-like protein as potent antifungal compound to control plant as well as animal fungal diseases.

摘要

真菌病原体导致了约三分之二的植物传染性疾病。从历史上看,它们与几次毁灭性的饥荒有关,给人类带来死亡和残疾。大多数真菌疾病通过使用杀菌剂来控制,但这些杀菌剂对消费者健康和环境都有不良副作用。由于广泛使用,病原体已经对大多数常用杀菌剂产生了抗性,使其失效。以可持续和生态友好的方式控制真菌疾病仍然是一个挑战。抗真菌生物防治剂被认为是管理真菌疾病的有效、替代和生态友好的方法。在我们最近的工作中,我们鉴定出一种与水稻相关的细菌;菌株NGJ1,它具有广谱的噬真菌特性。我们确定该细菌利用其III型分泌系统(注射体)机制将一种前噬菌体尾样蛋白(Bg_9562)释放到真菌细胞中以吞噬它们。从过表达重组菌株中纯化的Bg_9562蛋白具有广谱抗真菌活性。总体而言,我们的研究为利用前噬菌体尾样蛋白作为有效的抗真菌化合物来控制植物和动物真菌疾病开辟了新机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d0f/5798411/15b9c9129f71/mic-05-116-g01.jpg

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