ARC Centre of Excellence for Coral Reef Studies, James Cook University, Townsville, QLD, 4811, Australia.
Australian Institute of Marine Science, PMB 3, Townsville, QLD, 4810, Australia.
ISME J. 2019 Jun;13(6):1635-1638. doi: 10.1038/s41396-019-0358-3. Epub 2019 Jan 31.
The establishment of coral microbial communities in early developmental stages is fundamental to coral fitness, but its drivers are largely unknown, particularly for bacteria. Using an in situ reciprocal transplant experiment, we examined the influence of parental, planulation and early recruit environments on the microbiome of brooded offspring in the coral Pocillopora damicornis. 16S rRNA and ITS2 rDNA gene metabarcoding showed that bacterial and microalgal endosymbiont communities varied according to parental and planulation environments, but not with early recruit environment. Only a small number of bacterial strains were shared between offspring and their respective parents, revealing bacterial establishment as largely environmentally driven in very early life stages. Conversely, microalgal communities of recruits were highly similar to those of their respective parents, but also contained additional low abundance strains, suggesting both vertical transmission and novel ('horizontal') acquisition. Altogether, recruits harboured more variable microbiomes compared to their parents, indicating winnowing occurs as corals mature.
早期发育阶段珊瑚微生物群落的建立对珊瑚的适应能力至关重要,但其驱动因素在很大程度上尚不清楚,尤其是对于细菌而言。本研究通过原位互移植实验,研究了亲代、浮游幼虫和早期附着环境对滨珊瑚(Pocillopora damicornis)幼虫内共生微生物组的影响。16S rRNA 和 ITS2 rDNA 基因宏条形码分析表明,细菌和微藻内共生体群落随亲代和浮游幼虫环境而变化,但不受早期附着环境的影响。幼虫与其亲代之间仅共享少量细菌菌株,表明在非常早期的生命阶段,细菌的建立主要受环境驱动。相反,附着幼虫的微藻群落与其亲代高度相似,但也含有额外的低丰度菌株,这表明存在垂直传播和新的(“水平”)获得。总之,与亲代相比,附着幼虫的微生物组更为多样,表明珊瑚成熟过程中存在筛选。