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At limits of life: Multidisciplinary insights reveal environmental constraints on biotic diversity in Continental Antarctica

机译:生命极限:多学科洞察力揭示了南极大陆生物多样性的环境制约因素

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摘要

Multitrophic communities that maintain the functionality of the extreme Antarctic terrestrial ecosystems, while the simplest of any natural community, are still challenging our knowledge about the limits to life on earth. In this study, we describe and interpret the linkage between the diversity of different trophic level communities to the geological morphology and soil geochemistry in the remote Transantarctic Mountains (Darwin Mountains, 80°S). We examined the distribution and diversity of biota (bacteria, cyanobacteria, lichens, algae, invertebrates) with respect to elevation, age of glacial drift sheets, and soil physicochemistry. Results showed an abiotic spatial gradient with respect to the diversity of the organisms across different trophic levels. More complex communities, in terms of trophic level diversity, were related to the weakly developed younger drifts (Hatherton and Britannia) with higher soil C/N ratio and lower total soluble salts content (thus lower conductivity). Our results indicate that an increase of ion concentration from younger to older drift regions drives a succession of complex to more simple communities, in terms of number of trophic levels and diversity within each group of organisms analysed. This study revealed that integrating diversity across multi-trophic levels of biotic communities with abiotic spatial heterogeneity and geological history is fundamental to understand environmental constraints influencing biological distribution in Antarctic soil ecosystems
机译:维持极端南极陆地生态系统功能的多营养群落,虽然是任何自然群落中最简单的,但仍然挑战着我们对地球生命极限的认识。在这项研究中,我们描述和解释了在南极偏远山区(达尔文山,80°S)不同营养水平群落的多样性与地质形态和土壤地球化学之间的联系。我们检查了生物群(细菌,蓝细菌,地衣,藻类,无脊椎动物)相对于海拔,冰川漂流板的年龄和土壤物理化学的分布和多样性。结果表明,相对于不同营养水平的生物多样性,存在非生物空间梯度。就营养水平的多样性而言,更复杂的群落与较弱的较年轻的漂流(Hatherton和Britannia)有关,它们具有较高的土壤碳氮比和较低的总可溶性盐含量(因此电导率较低)。我们的结果表明,从营养水平的数量和所分析的每一类生物体内的多样性来看,从较年轻的漂移区到较老的漂移区,离子浓度的增加驱使复杂的群落过渡到更简单的群落。这项研究表明,将生物群落多营养水平的多样性与非生物空间异质性和地质历史相结合,对于理解影响南极土壤生态系统生物分布的环境约束至关重要。

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