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Evidence for regional aeolian transport of freshwater micrometazoans in arid regions

机译:干旱地区淡水微型甲烷的区域风沙运移的证据

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摘要

While separated by large expanses of dry terrain unsuitable for aquatic biota, aridland waters possess high biodiversity. How aquatic micrometazoans disperse to, and colonize, these isolated ephemeral habitats are not well understood. We used a multi-faceted approach including wind tunnel and rehydration experiments, and next-generation sequencing to assess potential movement of diapausing propagules of aquatic invertebrates by anemochory across regional scales (102–105 km). Wind tunnel experiments using dry playa sediments with added micrometazoan propagules demonstrated that after entrainment by saltation and downwind transport were subsequently recoverable as viable animals when rehydrated. Further, rehydration of fallen natural dust yielded micrometazoans, including rotifers, gastrotrichs, microcrustaceans, and nematodes. Using conserved DNA primers, we identified >3,300 eukaryotic Operational Taxonomic Units (excluding fungi) in the dust including some taxa found in rehydration experiments. Thus, we provide strong evidence that anemochory can disperse micrometazoans among isolated, ephemeral ecosystems in North American deserts and likely elsewhere.
机译:干旱地区被大片不适合水生生物的干旱地形所分隔,但其生物多样性却很高。水生微量金属甲虫如何分散到这些定居的短暂栖息地并在其中定居。我们使用了多方面的方法,包括风洞和补液实验,以及下一代测序,通过区域规模的电除草术评估了水生无脊椎动物滞育繁殖体的潜在运动(10 2 –10 5 公里)。使用干燥的普拉亚沉积物和微量金属甲硝唑繁殖体进行的风洞实验表明,经盐分夹带和顺风运输后,复水后可作为活体动物恢复。此外,下落的自然尘土的再水化产生了微型轮虫,包括轮虫,小肠,微甲壳动物和线虫。使用保守的DNA引物,我们确定了尘土中> 3,300个真核生物分类单位(不包括真菌),包括在水化实验中发现的一些分类单元。因此,我们提供了有力的证据表明,防风可以在北美沙漠中以及其他地方的短暂的短暂生态系统之间分散微金属甲。

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