MutL Significantly Regulates the Formation of Biofilms in Bacillus amyloliquefaciens YT1

Q2 Agricultural and Biological Sciences Agriculture Pub Date : 2024-07-19 DOI:10.3390/agriculture14071193
Huafei Zhou, Min Chen, Baoyan Li, Haining Chen, Hongtao Wang, Shaoli Wang, Binghui Luan, Baoyou Liu
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Abstract

The purpose of this study is to discover and excavate more key factors and signaling pathways that regulate the formation intensity of biofilms and to fully reveal the possible models affecting biofilm formation. By using gene homologous recombination and bioinformatics technology, a MutL protein-directed deletion mutant strain was successfully constructed. The growth status of the mutant strain was observed, and it was confirmed that, except for the change in cell morphology, there were no significant differences in growth and reproduction between the mutant strain and the wild-type strain. By using the induced biofilm formation technique, the significant decrease in biofilm formation in the MutL mutant strain was successfully verified. The plate confrontation test confirmed that the inhibitory ability of the mutant strain against rice blast fungus was not significantly different from that of the WT strain. The colonization ability of the mutant strain on rice stems was tested, and it was confirmed that the colonization ability of the mutant strain was significantly lower than that of the WT strain. In terms of the prevention and control effect of rice blast disease, the mutant strain showed a significant decrease. By using transcriptomic big data, the gene and pathway expression differences between the mutant strain and the WT strain during biofilm formation were analyzed. The analysis revealed no significant correlation with the previously reported spo0A and tapA-sipW-tasA pathways. The key factor capB of the polyglutamic acid signaling pathway, which affects the formation of the biological model, was found to have a significant decrease in expression. A mechanical hypothesis was proposed: MutL may participate in regulating the formation intensity of Bacillus biofilms by regulating the formation of glutamic acid to polyglutamic acid.
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MutL 显著调控淀粉样芽孢杆菌 YT1 生物膜的形成
本研究旨在发现和挖掘更多调控生物膜形成强度的关键因子和信号通路,全面揭示影响生物膜形成的可能模式。利用基因同源重组和生物信息学技术,成功构建了MutL蛋白定向缺失突变株。通过观察突变株的生长状况,证实除了细胞形态发生变化外,突变株与野生型菌株在生长和繁殖方面没有明显差异。通过诱导生物膜形成技术,成功验证了 MutL 突变株的生物膜形成显著减少。平板对抗试验证实,突变菌株对稻瘟病菌的抑制能力与 WT 菌株无明显差异。对突变株在水稻茎秆上的定殖能力进行了测试,证实突变株的定殖能力明显低于 WT 株。突变株对稻瘟病的防控效果显著下降。利用转录组大数据,分析了突变株与 WT 株在生物膜形成过程中的基因和通路表达差异。分析结果显示,突变株与之前报道的 spo0A 和 tapA-sipW-tasA 通路无明显相关性。研究发现,影响生物模型形成的多谷氨酸信号通路的关键因子 capB 的表达量显著下降。提出了一个机械假说:MutL 可能通过调节谷氨酸到聚谷氨酸的形成,参与调节芽孢杆菌生物膜的形成强度。
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来源期刊
Agriculture
Agriculture Agricultural and Biological Sciences-Horticulture
CiteScore
1.90
自引率
0.00%
发文量
4
审稿时长
11 weeks
期刊介绍: The Agriculture (Poľnohospodárstvo) is a peer-reviewed international journal that publishes mainly original research papers. The journal examines various aspects of research and is devoted to the publication of papers dealing with the following subjects: plant nutrition, protection, breeding, genetics and biotechnology, quality of plant products, grassland, mountain agriculture and environment, soil science and conservation, mechanization and economics of plant production and other spheres of plant science. Journal is published 4 times per year.
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