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BglaTNB6 是一种由植物相关的非致病性细菌产生的细菌素,可预防水稻种传细菌性病害。

BglaTNB6, a tailocin produced by a plant-associated nonpathogenic bacterium, prevents rice seed-borne bacterial diseases.

机构信息

Crop Stress Management Group, Division of Plant Molecular Regulation Research, Institute of Agrobiological Sciences, NARO, Tsukuba, Ibaraki, Japan.

Biomacromolecules Research Unit, Research Center for Advanced Analysis, NARO, Tsukuba, Ibaraki, Japan.

出版信息

PLoS Pathog. 2024 Oct 18;20(10):e1012645. doi: 10.1371/journal.ppat.1012645. eCollection 2024 Oct.

Abstract

Rice seed-borne diseases caused by the bacterial pathogens Burkholderia glumae and B. plantarii pose a major threat to rice production worldwide. To manage these diseases in a sustainable manner, a biocontrol strategy is crucial. In this study, we showed that B. gladioli NB6 (NB6), a nonpathogenic bacterium, strongly protects rice from infection caused by the above-mentioned pathogens. NB6 was isolated from the indica rice cultivar Nona Bokra seedlings, which possesses genetic resistance to B. glumae. We discovered that cell suspensions of NB6 and its culture filtrate suppressed the disease symptoms caused by B. glumae and B. plantarii in rice seedlings, which indicated that NB6 secretes a plant-protective substance extracellularly. Through purification and mass spectrometry analysis of the culture filtrate, combined with transmission electron microscopy and mutant analysis, the substance was identified as a tailocin and named BglaTNB6. Tailocins are bacteriotoxic multiprotein structures morphologically similar to headless phage tails. BglaTNB6 exhibited antibacterial activity against several Burkholderia species, including B. glumae, B. plantarii, and B. gladioli, suggesting it can prevent pathogen infection. Interestingly, BglaTNB6 greatly contributed only to the biocontrol activity of NB6 cell suspensions against B. plantarii, and not against B. glumae. BglaTNB6 was shown to be encoded by a prophage locus lacking genes for phage head proteins, and a B. gladioli strain with the coded BglaTNB6-like locus equipped with phage head proteins failed to prevent rice seedlings from being infected with B. plantarii. These results suggested that BglaTNB6 may enhance the competitiveness of NB6 against a specific range of bacteria. Our study also highlights the potential of tailocin-producing endophytes for managing crop bacterial diseases.

摘要

由细菌病原体稻生黄单胞菌和黄单胞菌引起的水稻种传病害对全球水稻生产构成了重大威胁。为了以可持续的方式管理这些疾病,生物防治策略至关重要。在这项研究中,我们表明,非致病性细菌甘蓝荧光假单胞菌 NB6(NB6)强烈保护水稻免受上述病原体引起的感染。NB6 是从籼稻品种 Nona Bokra 幼苗中分离出来的,该品种对稻生黄单胞菌具有遗传抗性。我们发现,NB6 的细胞悬浮液及其培养滤液抑制了水稻幼苗中稻生黄单胞菌和黄单胞菌引起的疾病症状,这表明 NB6 在外分泌一种植物保护物质。通过对培养滤液进行纯化和质谱分析,结合透射电子显微镜和突变分析,确定该物质为一种尾菌素,并将其命名为 BglaTNB6。尾菌素是一种形态上类似于无头噬菌体尾部的细菌毒性多蛋白结构。BglaTNB6 对几种黄单胞菌,包括稻生黄单胞菌、黄单胞菌和甘蓝荧光假单胞菌,表现出抗菌活性,表明它可以防止病原体感染。有趣的是,BglaTNB6 仅对 NB6 细胞悬浮液对黄单胞菌的生物防治活性有很大贡献,而对稻生黄单胞菌则没有。BglaTNB6 被证明是由一个缺乏噬菌体头部蛋白基因的前噬菌体基因座编码的,而带有编码 BglaTNB6 样基因座的甘蓝荧光假单胞菌菌株配备了噬菌体头部蛋白,却未能防止水稻幼苗感染黄单胞菌。这些结果表明,BglaTNB6 可能增强了 NB6 对特定范围细菌的竞争力。我们的研究还强调了产尾菌素内生菌在管理作物细菌性疾病方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c58d/11524443/aae4fc6bfbd6/ppat.1012645.g001.jpg

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