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Long-distance passive dispersal in microscopic aquatic animals

机译:微观水生动物的远距离被动扩散

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摘要

Given their dormancy capability (long-term resistant stages) and their ability to colonise and reproduce, microscopic aquatic animals have been suggested having cosmopolitan distribution. Their dormant stages may be continuously moved by mobile elements through the entire planet to any suitable habitat, preventing the formation of biogeographical patterns. In this review, I will go through the evidence we have on the most common microscopic aquatic animals, namely nematodes, rotifers, and tardigrades, for each of the assumptions allowing long-distance dispersal (dormancy, viability, and reproduction) and all the evidence we have for transportation, directly from surveys of dispersing stages, and indirectly from the outcome of successful dispersal in biogeographical and phylogeographical studies. The current knowledge reveals biogeographical patterns also for microscopic organisms, with species-specific differences in ecological features that make some taxa indeed cosmopolitan with the potential for long-distance dispersal, but others with restricted geographic distributions.
机译:考虑到它们的休眠能力(长期抗性阶段)以及它们的定殖和繁殖能力,已经暗示微观水生动物具有世界性分布。它们的休眠阶段可能会被移动元素连续移动到整个星球上,到达任何合适的栖息地,从而阻止了生物地理图案的形成。在这篇综述中,我将介绍我们对最常见的微观水生动物(即线虫,轮虫和节肢动物)的证据,其中每种假设都允许进行长距离扩散(休眠,存活和繁殖),并且所有证据我们的运输直接来自分散阶段的调查,间接来自生物地理学和系统地理学研究中成功分散的结果。当前的知识还揭示了微观生物的生物地理格局,其生态特征具有物种特定的差异,这使得某些分类单元确实具有世界性,具有远距离扩散的潜力,而另一些则具有有限的地理分布。

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