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Not poles apart: Antarctic soil fungal communities show similarities to those of the distant Arctic

机译:并非遥不可及:南极土壤真菌群落与遥远的北极地区相似

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Antarctica's extreme environment and geographical isolation offers a useful platform for testing the relative roles of environmental selection and dispersal barriers influencing fungal communities. The former process should lead to convergence in community composition with other cold environments, such as those in the Arctic. Alternatively, dispersal limitations should minimise similarity between Antarctica and distant northern landmasses. Using high-throughput sequencing, we show that Antarctica shares significantly more fungi with the Arctic, and more fungi display a bipolar distribution, than would be expected in the absence of environmental filtering. In contrast to temperate and tropical regions, there is relatively little endemism, and a strongly bimodal distribution of range sizes. Increasing southerly latitude is associated with lower endemism and communities increasingly dominated by fungi with widespread ranges. These results suggest that microorganisms with well-developed dispersal capabilities can inhabit opposite poles of the Earth, and dominate extreme environments over specialised local species.
机译:南极洲的极端环境和地理隔离为测试环境选择和影响真菌群落的扩散障碍的相对作用提供了一个有用的平台。前一个过程应导致社区组成与其他寒冷环境(如北极环境)融合。另外,扩散限制应使南极洲与遥远的北部陆地之间的相似性最小化。使用高通量测序,我们发现与没有环境过滤的情况相比,南极洲与北极共享的真菌明显更多,并且显示出双极性分布的真菌更多。与温带和热带地区相反,地方特有的物种相对较少,并且范围大小具有强烈的双峰分布。向南纬度的增加与地方特有性的降低有关,而越来越多的真菌被分布范围广泛的真菌所主导。这些结果表明,具有充分发展的扩散能力的微生物可以栖息在地球的相反两极,并在本地特殊物种的极端环境中占主导地位。

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