Department of Microbiology, University of Sevilla, Avda. Reina Mercedes 6, 41012 Seville, Spain.
Department of Industrial and Environmental Microbiology, Institute of Biological Sciences, Faculty of Biology and Biotechnology, Maria Curie-Skłodowska University, Akademicka 19, 20-033 Lublin, Poland.
Int J Mol Sci. 2021 Jun 9;22(12):6233. doi: 10.3390/ijms22126233.
Rhizobia are soil proteobacteria able to engage in a nitrogen-fixing symbiotic interaction with legumes that involves the rhizobial infection of roots and the bacterial invasion of new organs formed by the plant in response to the presence of appropriate bacterial partners. This interaction relies on a complex molecular dialogue between both symbionts. Bacterial -acetyl-glucosamine oligomers called Nod factors are indispensable in most cases for early steps of the symbiotic interaction. In addition, different rhizobial surface polysaccharides, such as exopolysaccharides (EPS), may also be symbiotically relevant. EPS are acidic polysaccharides located out of the cell with little or no cell association that carry out important roles both in free-life and in symbiosis. EPS production is very complexly modulated and, frequently, co-regulated with Nod factors, but the type of co-regulation varies depending on the rhizobial strain. Many studies point out a signalling role for EPS-derived oligosaccharides in root infection and nodule invasion but, in certain symbiotic couples, EPS can be dispensable for a successful interaction. In summary, the complex regulation of the production of rhizobial EPS varies in different rhizobia, and the relevance of this polysaccharide in symbiosis with legumes depends on the specific interacting couple.
根瘤菌是土壤中的 Proteobacteria,能够与豆科植物进行固氮共生相互作用,其中包括根瘤菌对根的感染和植物为响应适当的细菌伙伴而形成的新器官的细菌入侵。这种相互作用依赖于两个共生体之间的复杂分子对话。在大多数情况下,细菌的 Nod 因子——乙酰葡萄糖胺低聚物对于共生相互作用的早期步骤是必不可少的。此外,不同的根瘤菌表面多糖,如胞外多糖 (EPS),也可能与共生有关。EPS 是位于细胞外的酸性多糖,与细胞的联系很少或没有,在自由生活和共生中都起着重要的作用。EPS 的产生受到非常复杂的调节,并且经常与 Nod 因子共同调节,但共同调节的类型因根瘤菌菌株而异。许多研究指出 EPS 衍生的低聚糖在根感染和根瘤入侵中的信号作用,但在某些共生对中,EPS 对于成功的相互作用是可有可无的。总之,根瘤菌 EPS 产生的复杂调节在不同的根瘤菌中有所不同,并且这种多糖在与豆科植物的共生中的相关性取决于特定的相互作用对。