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The influence of cryogenic mass exchange on the distribution of viable microfauna in cryozems

机译:低温大规模交流对低级可行微灌分布的影响

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The role of cryogenic mass exchange in the distribution of the viable microfauna (ciliates, heterotrophic flagellates, and nematodes) in the profiles of cryoturbated cryogenic soils and in the upper layers of permafrost was revealed. The material for microbiological investigations was collected from the main horizons of cryozem profiles, including the zones with morphologically manifested processes of cryogenic mass exchange (the development of barren spots, cryoturbation, and suprapermafrost accumulation) and the zones affected by solifluction. The radiocarbon dating of the soil samples showed that the age of the organic cryogenic material and material buried in the course of solifluction varied from 2100 to 4500 years. Some zones with specific ecological conditions promoting the preservation of species diversity of the microfauna were found to develop in the cryozem profiles. A considerable part of the community (38% of ciliates, 58% of flagellates, and 50% of nematodes) maintained its viability in the dormant state, and in some cases, it could pass to the state of long-term cryobiosis in the upper layer of permafrost.
机译:揭示了低温交换在低温冷冻型土壤和上层上层的可行微灌(纤毛,异养鞭率和线虫)分布中的作用。从低压型材的主要视野中收集了微生物研究的材料,包括具有相同的低温交换过程的区域(贫瘠斑点,丧失斑,cry cry和Suprapermrost积累的发展)和受衍生影响的区域。土壤样品的辐射碳的约会表明,在溶液过程中埋入的有机冷冻材料和材料的年龄可从2100〜4500岁之间变化。发现一些具有特异性生态条件的区域,促进了微生物血清的物种多样性的保护区。社区的相当大部分(38%的纤毛,58%的鞭打和50%的线虫)在休眠状态下保持了活力,在某些情况下,它可以通过鞋面长期冷冻症的状态多年冻土层。

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