Arctic Ecology and Biogeochemistry, National Centre for Polar and Ocean Research, Ministry of Earth Sciences, Vasco da Gama 403 804, Goa, India.
Department of Ecology and Genetics, Uppsala University, Uppsala 752 36, Sweden.
FEMS Microbiol Ecol. 2021 Oct 22;97(11). doi: 10.1093/femsec/fiab139.
The assembly processes that underlie the composition and connectivity of free-living (FL) and particle-associated (PA) bacterial communities from surface to deep waters remain little understood. Here, using phylogenetic null modeling, we quantify the relative influence of selective and stochastic mechanisms that assemble FL and PA bacterial communities throughout the water column in a high Arctic fjord. We demonstrate that assembly processes acting on FL and PA bacterial communities are similar in surface waters, but become increasingly distinct in deep waters. As depth increases, the relative influence of homogeneous selection increases for FL but decreases for PA communities. In addition, dispersal limitation and variable selection increase with depth for PA, but not for FL communities, indicating increased residence time of taxa on particles and less frequent decolonization. As a consequence, beta diversity of PA communities is greater in bottom than in surface waters. The limited connectivity between these communities with increasing depth leads to highly distinct FL and PA bacterial communities in bottom waters. Finally, depth-related trends for FL and PA beta diversity and connectivity in this study are consistent with previous observations in the open ocean, suggesting that assembly processes for FL and PA bacterial communities may also be distinct in other aquatic environments.
自由生活(FL)和颗粒相关(PA)细菌群落的组成和连通性的组装过程在很大程度上仍未被理解。在这里,我们使用系统发育零模型,量化了在高北极峡湾的水柱中组装 FL 和 PA 细菌群落的选择和随机机制的相对影响。我们证明,作用于 FL 和 PA 细菌群落的组装过程在表面水中是相似的,但在深水中变得越来越不同。随着深度的增加,同质选择对 FL 的相对影响增加,而对 PA 群落的影响减小。此外,扩散限制和可变选择随着深度的增加而增加 PA,但 FL 群落没有,表明分类群在颗粒上的停留时间增加,去殖民化的频率降低。因此,底部 PA 群落的 beta 多样性大于表面水。随着深度的增加,这些群落之间的连通性有限,导致底部水域中存在高度独特的 FL 和 PA 细菌群落。最后,本研究中 FL 和 PA beta 多样性和连通性与深度相关的趋势与开阔海洋的先前观察结果一致,这表明 FL 和 PA 细菌群落的组装过程在其他水生环境中也可能不同。