Institute of Biology, Federal University of Bahia, Salvador, Brazil.
National Institute for Interdisciplinary and Transdisciplinary Studies in Ecology and Evolution (IN-TREE), Salvador, Brazil.
Microb Ecol. 2022 Jan;83(1):252-255. doi: 10.1007/s00248-021-01737-4. Epub 2021 Mar 23.
Understanding how microbial communities are structured in coral holobionts is important to estimate local and global impacts and provide efficient environment management strategies. Several studies investigated the relationship between corals and their microbial communities, including the environmental drivers of shifts in this relationship, associated with diseases and coral cover loss. However, these studies are often geographically or taxonomically restricted and usually focused on the most abundant microbial groups, neglecting the rare biosphere, including archaea in the group DPANN and the recently discovered bacterial members of the candidate phyla radiation (CPR). Although it is known that rare microbes can play essential roles in several environments, we still lack understanding about which taxa comprise the rare biosphere of corals' microbiome. Here, we investigated the host-related and technical factors influencing coral microbial community structure and the importance of CPR and DPANN in this context by analyzing more than a hundred coral metagenomes from independent studies worldwide. We show that coral genera are the main biotic factor shaping coral microbial communities. We also detected several CPR and DPANN phyla comprising corals' rare biosphere for the first time and showed that they significantly contribute to shaping coral microbial communities.
了解微生物群落在珊瑚整体共生体中的结构如何,对于评估本地和全球的影响以及提供有效的环境管理策略很重要。已有几项研究调查了珊瑚与其微生物群落之间的关系,包括与疾病和珊瑚覆盖率丧失相关的这种关系变化的环境驱动因素。然而,这些研究通常在地理或分类上受到限制,并且通常侧重于最丰富的微生物群体,而忽略了稀有生物界,包括 DPANN 组中的古菌和最近发现的候选门辐射(CPR)的细菌成员。尽管已知稀有微生物在几种环境中可以发挥重要作用,但我们仍然缺乏对哪些分类群构成珊瑚微生物组的稀有生物界的了解。在这里,我们通过分析来自世界各地的数十个独立研究的珊瑚宏基因组,研究了影响珊瑚微生物群落结构的宿主相关和技术因素,以及 CPR 和 DPANN 在这方面的重要性。我们表明,珊瑚属是塑造珊瑚微生物群落的主要生物因素。我们还首次检测到了几个包含珊瑚稀有生物界的 CPR 和 DPANN 门,并表明它们对塑造珊瑚微生物群落有重要贡献。