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苜蓿中华根瘤菌 bv. 三叶草 rosR 对于与三叶草的相互作用、生物膜形成和适应环境是必需的。

Rhizobium leguminosarum bv. trifolii rosR is required for interaction with clover, biofilm formation and adaptation to the environment.

机构信息

Department of Genetics and Microbiology, University of M Curie-Skłodowska, Lublin, Poland.

出版信息

BMC Microbiol. 2010 Nov 11;10:284. doi: 10.1186/1471-2180-10-284.

Abstract

BACKGROUND

Rhizobium leguminosarum bv. trifolii is a symbiotic nitrogen-fixing bacterium that elicits nodules on roots of host plants Trifolium spp. Bacterial surface polysaccharides are crucial for establishment of a successful symbiosis with legumes that form indeterminate-type nodules, such as Trifolium, Pisum, Vicia, and Medicago spp. and aid the bacterium in withstanding osmotic and other environmental stresses. Recently, the R. leguminosarum bv. trifolii RosR regulatory protein which controls exopolysaccharide production has been identified and characterized.

RESULTS

In this work, we extend our earlier studies to the characterization of rosR mutants which exhibit pleiotropic phenotypes. The mutants produce three times less exopolysaccharide than the wild type, and the low-molecular-weight fraction in that polymer is greatly reduced. Mutation in rosR also results in quantitative alterations in the polysaccharide constituent of lipopolysaccharide. The rosR mutants are more sensitive to surface-active detergents, antibiotics of the beta-lactam group and some osmolytes, indicating changes in the bacterial membranes. In addition, the rosR mutants exhibit significant decrease in motility and form a biofilm on plastic surfaces, which differs significantly in depth, architecture, and bacterial viability from that of the wild type. The most striking effect of rosR mutation is the considerably decreased attachment and colonization of root hairs, indicating that the mutation affects the first stage of the invasion process. Infection threads initiate at a drastically reduced rate and frequently abort before they reach the base of root hairs. Although these mutants form nodules on clover, they are unable to fix nitrogen and are outcompeted by the wild type in mixed inoculations, demonstrating that functional rosR is important for competitive nodulation.

CONCLUSIONS

This report demonstrates the significant role RosR regulatory protein plays in bacterial stress adaptation and in the symbiotic relationship between clover and R. leguminosarum bv. trifolii 24.2.

摘要

背景

三叶草根瘤菌是一种共生固氮细菌,它能在三叶草属植物的根部引发根瘤。细菌表面多糖对于与形成不定型根瘤的豆科植物(如三叶草、豌豆、巢菜和苜蓿属等)建立成功共生关系至关重要,这些多糖有助于细菌耐受渗透和其他环境压力。最近,控制多糖产生的根瘤菌三叶草亚种 RosR 调节蛋白已被鉴定和表征。

结果

在这项工作中,我们扩展了早期研究,对表现出多种表型的 rosR 突变体进行了表征。突变体产生的胞外多糖比野生型少三倍,并且聚合物中的低分子量部分大大减少。rosR 突变还导致脂多糖多糖成分的定量改变。rosR 突变体对表面活性剂洗涤剂、β-内酰胺类抗生素和一些渗透剂更敏感,表明细菌膜发生了变化。此外,rosR 突变体的运动性显著降低,在塑料表面形成生物膜,其深度、结构和细菌活力与野生型有显著差异。rosR 突变的最显著影响是根毛的附着和定植显著减少,表明突变影响了入侵过程的第一阶段。感染线的起始速度大大降低,并且在到达根毛底部之前经常中断。尽管这些突变体能在三叶草上形成根瘤,但它们不能固定氮,并且在混合接种中被野生型竞争淘汰,这表明功能性 rosR 对竞争结瘤很重要。

结论

本报告证明了 RosR 调节蛋白在细菌应激适应和三叶草与根瘤菌三叶草亚种 24.2 之间的共生关系中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f95/2996380/1717dde9e87a/1471-2180-10-284-1.jpg

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