School of Medicine & Dentistry, Institute of Medical Sciences, University of Aberdeen, Aberdeen, United Kingdom.
PLoS Biol. 2011 Oct;9(10):e1001169. doi: 10.1371/journal.pbio.1001169. Epub 2011 Oct 4.
Sinorhizobium meliloti differentiates into persisting, nitrogen-fixing bacteroids within root nodules of the legume Medicago truncatula. Nodule-specific cysteine-rich antimicrobial peptides (NCR AMPs) and the bacterial BacA protein are essential for bacteroid development. However, the bacterial factors central to the NCR AMP response and the in planta role of BacA are unknown. We investigated the hypothesis that BacA is critical for the bacterial response towards NCR AMPs. We found that BacA was not essential for NCR AMPs to induce features of S. meliloti bacteroids in vitro. Instead, BacA was critical to reduce the amount of NCR AMP-induced membrane permeabilization and bacterial killing in vitro. Within M. truncatula, both wild-type and BacA-deficient mutant bacteria were challenged with NCR AMPs, but this resulted in persistence of the wild-type bacteria and rapid cell death of the mutant bacteria. In contrast, BacA was dispensable for bacterial survival in an M. truncatula dnf1 mutant defective in NCR AMP transport to the bacterial compartment. Therefore, BacA is critical for the legume symbiosis by protecting S. meliloti against the bactericidal effects of NCR AMPs. Host AMPs are ubiquitous in nature and BacA proteins are essential for other chronic host infections by symbiotic and pathogenic bacteria. Hence, our findings suggest that BacA-mediated protection of bacteria against host AMPs is a critical stage in the establishment of different prolonged host infections.
根瘤菌属在豆科植物苜蓿的根瘤中分化成持久的、固氮的类菌体。根瘤特异性富含半胱氨酸的抗菌肽(NCR AMPs)和细菌 BacA 蛋白对于类菌体的发育是必不可少的。然而,对于 NCR AMP 反应的细菌中心因素和 BacA 在植物体内的作用尚不清楚。我们研究了 BacA 对于细菌对 NCR AMP 反应至关重要的假设。我们发现 BacA 对于 NCR AMP 诱导 S. meliloti 类菌体的特征在体外不是必需的。相反,BacA 对于减少 NCR AMP 诱导的体外膜通透性和细菌杀伤至关重要。在苜蓿中,野生型和 BacA 缺陷突变体细菌都受到 NCR AMP 的挑战,但这导致野生型细菌的持续存在和突变体细菌的快速死亡。相比之下,BacA 对于在 NCR AMP 向细菌区室运输缺陷的 M. truncatula dnf1 突变体中的细菌存活是可有可无的。因此,BacA 通过保护 S. meliloti 免受 NCR AMP 的杀菌作用,对于豆科植物共生至关重要。宿主 AMPs 在自然界中无处不在,BacA 蛋白对于共生和致病性细菌引起的其他慢性宿主感染是必不可少的。因此,我们的发现表明,BacA 介导的细菌对宿主 AMP 的保护是建立不同长期宿主感染的关键阶段。