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spo0A-sinI-sinR 调控回路在蜡状芽孢杆菌 AR156 的生物膜形成、杀线虫活性和植物保护中发挥重要作用。

The spo0A-sinI-sinR Regulatory Circuit Plays an Essential Role in Biofilm Formation, Nematicidal Activities, and Plant Protection in Bacillus cereus AR156.

机构信息

1 Institute of Biotechnology, Zhejiang University, Hangzhou 310058, China.

2 Department of Biology, Northeastern University, Boston 02115, U.S.A.; and.

出版信息

Mol Plant Microbe Interact. 2017 Aug;30(8):603-619. doi: 10.1094/MPMI-02-17-0042-R. Epub 2017 Jun 19.

Abstract

The rhizosphere bacterium Bacillus cereus AR156 is capable of forming biofilms, killing nematodes, and protecting plants. However, the underlying molecular mechanisms of these processes are not well understood. In this study, we found that the isogenic mutants ΔBcspo0A and ΔBcsinI have significantly reduced colonization and nematicidal activity in vitro and biological control efficacy on the tomato plant under greenhouse conditions. We further investigated the role of the spo0A-sinI-sinR regulatory circuit in biofilm formation, killing against nematodes, and biological control in AR156. Results from mutagenesis of those regulatory genes in AR156 and their heterologous expression in B. subtilis suggested that the spo0A-sinI-sinR genetic circuit is not only essential for biofilm formation and cell differentiation in AR156 but also able to functionally replace their counterparts in B. subtilis in a nearly indistinguishable fashion. Genome-wide transcriptional profiling in the wild type and the ΔBcspo0A and ΔBcsinI mutants further revealed hundreds of differentially expressed genes, likely positively regulated by both Spo0A and SinI (via SinR) in AR156. Among them, 29 genes are predicted to be directly controlled by SinR, whose counterpart in B. subtilis is a biofilm master repressor. Collectively, our studies demonstrated the essential role of the spo0A-sinI-sinR regulatory circuit in biofilm formation, cell differentiation, and bacteria-host interactions in B. cereus AR156.

摘要

生境根际细菌蜡状芽孢杆菌 AR156 能够形成生物膜、杀死线虫并保护植物。然而,这些过程的潜在分子机制尚不清楚。在本研究中,我们发现同基因突变体 ΔBcspo0A 和 ΔBcsinI 在体外的定植和杀线虫活性以及温室条件下对番茄植株的生物防治效果显著降低。我们进一步研究了 spo0A-sinI-sinR 调控回路在 AR156 中生物膜形成、对线虫的杀伤和生物防治中的作用。在 AR156 中突变这些调控基因的结果及其在枯草芽孢杆菌中的异源表达表明,spo0A-sinI-sinR 遗传回路不仅是 AR156 中生物膜形成和细胞分化所必需的,而且能够以几乎无法区分的方式在枯草芽孢杆菌中功能替代其对应物。在野生型和 ΔBcspo0A 和 ΔBcsinI 突变体中的全基因组转录谱分析进一步揭示了数百个差异表达基因,这些基因可能受到 Spo0A 和 SinI(通过 SinR)在 AR156 中的正调控。其中,有 29 个基因被预测为直接受 SinR 控制,而枯草芽孢杆菌中的对应物是生物膜主要阻遏物。总之,我们的研究表明 spo0A-sinI-sinR 调控回路在蜡状芽孢杆菌 AR156 中的生物膜形成、细胞分化和细菌-宿主相互作用中起着至关重要的作用。

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