Institute of Deep-Sea Science and Engineering, Chinese Academy of Sciences, Sanya, China.
College of Earth Sciences, University of Chinese Academy of Sciences, Beijing, China.
Front Microbiol. 2020 Jan 10;10:2978. doi: 10.3389/fmicb.2019.02978. eCollection 2019.
Hadal trenches are characterized by not only high hydrostatic pressure but also scarcity of nutrients and high diversity of viruses. Snailfishes, as the dominant vertebrates, play an important role in hadal ecology. Although studies have suggested possible reasons for the tolerance of hadal snailfish to high hydrostatic pressure, little is known about the strategies employed by hadal snailfish to cope with low-nutrient and virus-rich conditions. In this study, the gut microbiota of hadal snailfish was investigated. A novel bacterium named " Mycoplasma liparidae" was dominant in the guts of three snailfish individuals from both the Mariana and Yap trenches. A draft genome of " Mycoplasma liparidae" was successfully assembled with 97.8% completeness by hybrid sequencing. A set of genes encoding riboflavin biosynthesis proteins and a clustered regularly interspaced short palindromic repeats (CRISPR) system was present in the genome of " Mycoplasma liparidae," which was unusual for . The functional repertoire of the " Mycoplasma liparidae" genome is likely set to help the host in riboflavin supplementation and to provide protection against viruses via a super CRISPR system. Remarkably, genes encoding common virulence factors usually exist in Tenericutes pathogens but were lacking in the genome of " Mycoplasma liparidae." All of these characteristics supported an essential role of " Mycoplasma liparidae" in snailfish living in the hadal zone. Our findings provide further insights into symbiotic associations in the hadal biosphere.
深渊沟渠不仅具有高静水压力,而且还缺乏营养物质和具有高度多样性的病毒。作为主要的脊椎动物,蜗牛鱼在深渊生态系统中发挥着重要作用。虽然研究已经提出了深渊蜗牛鱼对高静水压力的耐受可能的原因,但对于深渊蜗牛鱼应对低营养和富含病毒的条件所采用的策略知之甚少。在这项研究中,研究了深渊蜗牛鱼的肠道微生物群。在来自马里亚纳海沟和雅浦海沟的三个蜗牛鱼个体的肠道中,发现了一种名为“M ycoplasma liparidae”的新型细菌占主导地位。通过混合测序成功组装了“M ycoplasma liparidae”的基因组草图,完整性为 97.8%。该基因组中存在一套编码核黄素生物合成蛋白的基因和一个成簇规律间隔短回文重复(CRISPR)系统,这在支原体中很不寻常。“M ycoplasma liparidae”基因组的功能库可能有助于宿主补充核黄素,并通过超级 CRISPR 系统提供针对病毒的保护。值得注意的是,编码常见毒力因子的基因通常存在于厚壁菌门病原体中,但在“M ycoplasma liparidae”基因组中却不存在。所有这些特征都支持“M ycoplasma liparidae”在生活在深渊区的蜗牛鱼中发挥重要作用。我们的发现为深渊生物圈中的共生关系提供了进一步的见解。