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根瘤菌型菌株中环二鸟苷酸相关基因的基因组分析及其在 Rhizobium etli 中的功能分析。

Genomic analysis of cyclic-di-GMP-related genes in rhizobial type strains and functional analysis in Rhizobium etli.

机构信息

Centre of Microbial and Plant Genetics, KU Leuven, Kasteelpark Arenberg 20, P.O. Box 2460, 3001, Heverlee, Belgium.

出版信息

Appl Microbiol Biotechnol. 2014 May;98(10):4589-602. doi: 10.1007/s00253-014-5722-7. Epub 2014 Apr 12.

Abstract

Rhizobia are soil bacteria that can fix nitrogen in symbiosis with leguminous plants or exist free living in the rhizosphere. Crucial to their complex lifestyle is the ability to sense and respond to diverse environmental stimuli, requiring elaborate signaling pathways. In the majority of bacteria, the nucleotide-based second messenger cyclic diguanosine monophosphate (c-di-GMP) is involved in signal transduction. Surprisingly, little is known about the importance of c-di-GMP signaling in rhizobia. We have analyzed the genome sequences of six well-studied type species (Bradyrhizobium japonicum, Mesorhizobium loti, Rhizobium etli, Rhizobium leguminosarum, Sinorhizobium fredii, and Sinorhizobium meliloti) for proteins possibly involved in c-di-GMP signaling based on the presence of four domains: GGDEF (diguanylate cyclase), EAL and HD-GYP (phosphodiesterase), and PilZ (c-di-GMP sensor). We find that rhizobia possess a high number of these proteins. Conservation analysis suggests that c-di-GMP signaling proteins modulate species-specific pathways rather than ancient rhizobia-specific processes. Two hybrid GGDEF-EAL proteins were selected for functional analysis, R. etli RHE_PD00105 (CdgA) and RHE_PD00137 (CdgB). Expression of cdgA and cdgB is repressed by the alarmone (p)ppGpp. cdgB is significantly expressed on plant roots and free living. Mutation of cdgA, cdgB, or both does not affect plant root colonization, nitrogen fixation capacity, biofilm formation, motility, and exopolysaccharide production. However, heterologous expression of the individual GGDEF and EAL domains of each protein in Escherichia coli strongly suggests that CdgA and CdgB are bifunctional proteins, possessing both diguanylate cyclase and phosphodiesterase activities. Taken together, our results provide a platform for future studies of c-di-GMP signaling in rhizobia.

摘要

根瘤菌是一种能够与豆科植物共生固氮的土壤细菌,或者在根际中自由生活。它们复杂的生活方式的关键是能够感知和响应多样化的环境刺激,这需要精细的信号通路。在大多数细菌中,基于核苷酸的第二信使环二鸟苷酸(c-di-GMP)参与信号转导。令人惊讶的是,关于 c-di-GMP 信号在根瘤菌中的重要性知之甚少。我们基于四个结构域(GGDEF(双鸟苷酸环化酶)、EAL 和 HD-GYP(磷酸二酯酶)和 PilZ(c-di-GMP 感受器)的存在,分析了六种研究较好的模式种(大豆根瘤菌、根瘤菌、根瘤菌、根瘤菌、中华根瘤菌和苜蓿根瘤菌)的基因组序列,以寻找可能参与 c-di-GMP 信号的蛋白质。我们发现根瘤菌拥有大量的这些蛋白质。保守性分析表明,c-di-GMP 信号蛋白调节种特异性途径,而不是古老的根瘤菌特异性过程。选择了两种杂交 GGDEF-EAL 蛋白进行功能分析,R. etli RHE_PD00105(CdgA)和 RHE_PD00137(CdgB)。cdgA 和 cdgB 的表达受警报素(p)ppGpp 抑制。cdgB 在植物根部和自由生活中表达显著。cdgA、cdgB 或两者的突变不影响植物根定殖、固氮能力、生物膜形成、运动性和胞外多糖产生。然而,每种蛋白的 GGDEF 和 EAL 结构域的异源表达在大肠杆菌中强烈表明 CdgA 和 CdgB 是具有双功能的蛋白,同时具有双鸟苷酸环化酶和磷酸二酯酶活性。总之,我们的结果为根瘤菌中 c-di-GMP 信号的未来研究提供了一个平台。

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