Marine Biology Research Division, Scripps Institution of Oceanography, University of California San Diego, La Jolla, San Diego, CA, United States of America.
Carlson College of Veterinary Medicine, Oregon State University, Corvallis, OR, United States of America.
PLoS One. 2020 Jan 28;15(1):e0227864. doi: 10.1371/journal.pone.0227864. eCollection 2020.
The type VI secretion system (T6SS) is a nanomachine capable of killing adjacent microbial cells in a contact-dependent manner. Due to limited studies, relatively little is known about the range of marine bacteria that are susceptible to T6SS attack. Here, 15 diverse marine bacterial isolates from the phyla Bacteroidetes and Ɣ-Proteobacteria were challenged against the marine bacterium and human pathogen, Vibrio cholerae, which has a well described T6SS. V. cholerae killed several of the tested Ɣ-Proteobacteria, including members of the orders Vibrionales, Alteromonadales, Oceanospirillales, and Pseudomonadales. In contrast, V. cholerae co-existed with multiple Bacteroidetes and Ɣ-Proteobacteria isolates, but was killed by Vibrio coralliilyticus. Follow-up experiments revealed that five V. coralliilyticus strains, including known coral and shellfish pathogens survived the T6SS challenge and killed V. cholerae. By using predicted protein comparisons and mutagenesis, we conclude that V. coralliilyticus protected itself in the challenge by using its own T6SS to kill V. cholerae. This study provides valuable insight into the resilience and susceptibility of marine bacteria to the V. cholerae T6SS, and provides the first evidence for a functional T6SS in V. coralliilyticus, both of which have implications for human and ocean health.
VI 型分泌系统(T6SS)是一种纳米机器,能够以接触依赖的方式杀死相邻的微生物细胞。由于研究有限,对于易受 T6SS 攻击的海洋细菌的范围相对了解较少。在这里,从拟杆菌门和γ-变形菌门中分离出的 15 种不同的海洋细菌分离株与海洋细菌和人类病原体霍乱弧菌进行了对抗,霍乱弧菌具有描述良好的 T6SS。霍乱弧菌杀死了几种测试的γ-变形菌,包括弧菌目、交替单胞菌目、海洋螺旋菌目和假单胞菌目的成员。相比之下,霍乱弧菌与多种拟杆菌门和γ-变形菌分离株共存,但被珊瑚弧菌杀死。后续实验表明,五种珊瑚弧菌菌株,包括已知的珊瑚和贝类病原体,在 T6SS 挑战中幸存下来并杀死了霍乱弧菌。通过使用预测蛋白比较和诱变,我们得出结论,珊瑚弧菌通过自身的 T6SS 杀死霍乱弧菌来保护自己免受挑战。这项研究为我们了解海洋细菌对霍乱弧菌 T6SS 的弹性和敏感性提供了有价值的见解,并为珊瑚弧菌中存在功能性 T6SS 提供了第一个证据,这两者都对人类和海洋健康具有重要意义。