Key Laboratory of Marine Genetic Resources, Third Institute of Oceanography, Ministry of Natural Resources, Xiamen, 361005, China.
China Ocean Sample Repository (Biology), Xiamen, 361005, China.
Environ Microbiol. 2021 Feb;23(2):744-756. doi: 10.1111/1462-2920.15162. Epub 2020 Aug 11.
Shewanella strains are characterized by versatile metabolic capabilities, resulting in their wide distribution in the ocean at different depths. Considering that particle sedimentation is an important dynamic process in the ocean, we hypothesized that hadal Shewanella species evolved from the upper ocean. In this study, we isolated three novel Shewanella strains from deep-sea sediments in the Southwest Indian Ocean. Genome sequencing indicated that strains YLB-06 and YLB-08 represent two novel species in the genus Shewanella. Through phylogenomic analysis, we showed that speciation and genomic changes in marine Shewanella strains are related to water depth. We further confirmed the aforementioned hypothesis and revealed a two-stage process of the evolutionary transition of Shewanella from the upper ocean to the hadal zone by comparative genomics and gene gain/loss analysis. Finally, the transcriptomic analysis demonstrated that recently obtained genes are strictly repressed and may thus play a minor role in the response to environmental changes.
希瓦氏菌属的菌株具有多种代谢能力,这使得它们在海洋的不同深度广泛分布。考虑到颗粒沉降是海洋中的一个重要动态过程,我们假设深渊希瓦氏菌是从上层海洋演化而来的。在这项研究中,我们从西南印度洋深海沉积物中分离到了三株新型希瓦氏菌。基因组测序表明,菌株 YLB-06 和 YLB-08 代表希瓦氏菌属中的两个新种。通过系统发育基因组分析,我们表明海洋希瓦氏菌菌株的物种形成和基因组变化与水深有关。我们进一步证实了上述假设,并通过比较基因组学和基因获得/缺失分析揭示了希瓦氏菌从上层海洋到深渊区的进化过渡的两个阶段过程。最后,转录组分析表明,最近获得的基因受到严格抑制,因此在应对环境变化方面可能作用较小。