Parada Alma E, Fuhrman Jed A
Department of Biological Sciences, University of Southern California, Los Angeles, CA, USA.
ISME J. 2017 Nov;11(11):2510-2525. doi: 10.1038/ismej.2017.104. Epub 2017 Jul 21.
Marine archaea are critical contributors to global carbon and nitrogen redox cycles, but their temporal variability and microbial associations across the water column are poorly known. We evaluated seasonal variability of free living (0.2-1 μm size fraction) Thaumarchaea Marine Group I (MGI) and Euryarchaea Marine Group II (MGII) communities and their associations with the microbial community from surface to seafloor (890 m) over 5 years by 16S rRNA V4-V5 gene sequencing. MGI and MGII communities demonstrated distinct compositions at different depths, and seasonality at all depths. Microbial association networks at 150 m, 500 m and 890 m, revealed diverse assemblages of MGI (presumed ammonia oxidizers) and Nitrospina taxa (presumed dominant nitrite oxidizers, completing the nitrification process), suggesting distinct MGI-Nitrospina OTUs are responsible for nitrification at different depths and seasons, and depth- related and seasonal variability in nitrification could be affected by alternating MGI-Nitrospina assemblages. MGII taxa also showed distinct correlations to possibly heterotrophic bacteria, most commonly to members of Marine Group A, Chloroflexi, Marine Group B, and SAR86. Thus, both MGI and MGII likely have dynamic associations with bacteria based on similarities in activity or other interactions that select for distinct microbial assemblages over time. The importance of MGII taxa as members of the heterotrophic community previously reported for photic zone appears to apply throughout the water column.
海洋古菌是全球碳和氮氧化还原循环的关键贡献者,但它们在水柱中的时间变异性和微生物关联却鲜为人知。我们通过16S rRNA V4-V5基因测序,评估了5年时间里从海面到海底(890米)自由生活的(0.2 - 1微米粒径级分)奇古菌海洋第一类群(MGI)和广古菌海洋第二类群(MGII)群落的季节变异性,以及它们与微生物群落的关联。MGI和MGII群落在不同深度呈现出不同的组成,且在所有深度都有季节性变化。在150米、500米和890米处的微生物关联网络显示,MGI(假定的氨氧化菌)和硝化刺菌属分类群(假定的主要亚硝酸盐氧化菌,完成硝化过程)有不同的组合,这表明不同的MGI - 硝化刺菌OTU在不同深度和季节负责硝化作用,硝化作用的深度相关和季节变异性可能受MGI - 硝化刺菌组合交替的影响。MGII分类群也与可能的异养细菌呈现出不同的相关性,最常见的是与海洋A群、绿弯菌门、海洋B群和SAR86的成员相关。因此,基于活动相似性或其他随着时间选择不同微生物组合的相互作用,MGI和MGII可能都与细菌有动态关联。先前报道的MGII分类群作为光合层异养群落成员的重要性似乎适用于整个水柱。