Horn Point Laboratory, University of Maryland Center for Environmental Science, Cambridge, MD 21613, USA.
ISME J. 2012 Mar;6(3):554-63. doi: 10.1038/ismej.2011.135. Epub 2011 Oct 20.
Few studies of microbial biogeography address variability across both multiple habitats and multiple seasons. Here we examine the spatial and temporal variability of bacterioplankton community composition of the Columbia River coastal margin using 16S amplicon pyrosequencing of 300 water samples collected in 2007 and 2008. Communities separated into seven groups (ANOSIM, P<0.001): river, estuary, plume, epipelagic, mesopelagic, shelf bottom (depth<350 m) and slope bottom (depth>850 m). The ordination of these samples was correlated with salinity (ρ=-0.83) and depth (ρ=-0.62). Temporal patterns were obscured by spatial variability among the coastal environments, and could only be detected within individual groups. Thus, structuring environmental factors (for example, salinity, depth) dominate over seasonal changes in determining community composition. Seasonal variability was detected across an annual cycle in the river, estuary and plume where communities separated into two groups, early year (April-July) and late year (August-Nov), demonstrating annual reassembly of communities over time. Determining both the spatial and temporal variability of bacterioplankton communities provides a framework for modeling these communities across environmental gradients from river to deep ocean.
很少有研究涉及微生物生物地理学在多个栖息地和多个季节的变异性。在这里,我们使用 2007 年和 2008 年采集的 300 个水样的 16S 扩增子焦磷酸测序,研究哥伦比亚河沿海边缘的浮游细菌群落组成的空间和时间变异性。群落分为 7 组(ANOSIM,P<0.001):河流、河口、羽流、表水层、中层、浅海底部(深度<350 m)和斜坡底部(深度>850 m)。这些样品的排序与盐度(ρ=-0.83)和深度(ρ=-0.62)相关。由于沿海环境之间的空间变异性,时间模式被掩盖,只能在单个组内检测到。因此,结构环境因素(例如盐度、深度)支配着决定群落组成的季节性变化。在河流、河口和羽流中,全年都可以检测到季节性变化,群落分为两组,早(4 月至 7 月)和晚(8 月至 11 月),表明群落随着时间的推移每年重新组合。确定浮游细菌群落的空间和时间变异性为从河流到深海的环境梯度建模这些群落提供了框架。