Expression and Antagonistic Activity Against Plant Pathogens of the Phage Tail-like Protein from Burkholderia multivorans WS-FJ9.

IF 4.1 2区 生物学 Q2 MICROBIOLOGY
Tong-Yue Wen, Xing-Li Xie, Wei-Liang Kong, Xiao-Qin Wu
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引用次数: 0

Abstract

Microorganisms exert antagonistic effects on pathogens through different mechanisms, thereby achieving biological control of plant diseases. Many Burkholderia strains can produce complex secondary metabolites and substances that have toxic effects on host cells. The phage tail-like bacteriocins (tailocins) is a compound with antibacterial activity. However, its function in B. multivorans has not yet been reported. This article explores the ability of B. multivorans WS-FJ9 to antagonise plant pathogenic fungi and oomycetes, screening the potential tailocins in the strain WS-FJ9 and verifying their function, to reveal its novel antimicrobial mechanisms. We found that WS-FJ9 had strong antagonistic effects on the plant pathogenic fungi Phomopsis macrospore and Sphaeropsis sapinea, and the pathogenic oomycete Phytophthora cinnamomi. The phage tail-like protein Bm_67459 was predicted from the WS-FJ9 strain genome. The Bm_67459 cDNA encoded 111 amino acid sequence, and the relative molecular weight was approximately 11.69 kDa, the theoretical isoelectric point (pI) was 5.49, and it was a hydrophilic protein. Bm_67459 had no transmembrane helix region or signal peptide, and it belonged to the Phage_TAC_7 super family. qRT-PCR results showed that Bm_67459 gene expression was significantly upregulated during contact between WS-FJ9 and P. cinnamomi. The purified Bm_67459 protein significantly inhibited P. cinnamomi mycelial growth at 10 μg·mL-1. In summary, the WS-FJ9 strain had broad-spectrum anti-phytopathogenic activity, and the tailocin Bm_67459 was an important effector against the plant pathogen P. cinnamomi, which helps to reveal the antagonistic mechanism of this strain at the molecular level and provides excellent strain resources for the biological control of plant diseases.

多佛氏伯克氏菌噬菌体尾部样蛋白WS-FJ9的表达及其对植物病原菌的拮抗活性
微生物通过不同的机制对病原菌发挥拮抗作用,从而实现植物病害的生物防治。许多伯克氏菌菌株可以产生复杂的次生代谢物和对宿主细胞有毒性作用的物质。噬菌体尾状细菌素(tailocins)是一种具有抗菌活性的化合物。然而,其在多角螺旋体中的作用尚未见报道。本文探讨了多涡双歧杆菌WS-FJ9对植物病原真菌和卵菌的拮抗能力,筛选了菌株WS-FJ9中潜在的抑菌素并对其功能进行了验证,以期揭示其新的抑菌机制。结果表明,WS-FJ9对植物病原真菌大孢子磷菌(Phomopsis macrospore)和沙孢磷菌(Sphaeropsis sapinea)以及致病卵霉菌疫霉(Phytophthora cinnamomi)均有较强的拮抗作用。从WS-FJ9菌株基因组中预测了噬菌体尾部样蛋白Bm_67459。Bm_67459 cDNA编码111个氨基酸序列,相对分子量约为11.69 kDa,理论等电点(pI)为5.49,为亲水性蛋白。Bm_67459不含跨膜螺旋区和信号肽,属于Phage_TAC_7超家族。qRT-PCR结果显示,WS-FJ9与肉桂接触后,Bm_67459基因表达显著上调。纯化的Bm_67459蛋白在浓度为10 μg·mL-1时显著抑制了肉桂假单胞菌菌丝的生长。综上所述,菌株WS-FJ9具有广谱的抗植物病原菌活性,其中tailocin Bm_67459是对植物病原菌P. cinnamomi的重要效应物,这有助于在分子水平上揭示该菌株的拮抗机制,为植物病害的生物防治提供优良的菌株资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Microorganisms
Microorganisms Medicine-Microbiology (medical)
CiteScore
7.40
自引率
6.70%
发文量
2168
审稿时长
20.03 days
期刊介绍: Microorganisms (ISSN 2076-2607) is an international, peer-reviewed open access journal which provides an advanced forum for studies related to prokaryotic and eukaryotic microorganisms, viruses and prions. It publishes reviews, research papers and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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