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Highly Heterogeneous Soil Bacterial Communities around Terra Nova Bay of Northern Victoria Land Antarctica

机译:南极维多利亚州北部维多利亚土地的新星湾附近的高度异质土壤细菌群落

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摘要

Given the diminished role of biotic interactions in soils of continental Antarctica, abiotic factors are believed to play a dominant role in structuring of microbial communities. However, many ice-free regions remain unexplored, and it is unclear which environmental gradients are primarily responsible for the variations among bacterial communities. In this study, we investigated the soil bacterial community around Terra Nova Bay of Victoria Land by pyrosequencing and determined which environmental variables govern the bacterial community structure at the local scale. Six bacterial phyla, Actinobacteria, Proteobacteria, Acidobacteria, Chloroflexi, Cyanobacteria, and Bacteroidetes, were dominant, but their relative abundance varied greatly across locations. Bacterial community structures were affected little by spatial distance, but structured more strongly by site, which was in accordance with the soil physicochemical compositions. At both the phylum and species levels, bacterial community structure was explained primarily by pH and water content, while certain earth elements and trace metals also played important roles in shaping community variation. The higher heterogeneity of the bacterial community structure found at this site indicates how soil bacterial communities have adapted to different compositions of edaphic variables under extreme environmental conditions. Taken together, these findings greatly advance our understanding of the adaption of soil bacterial populations to this harsh environment.
机译:鉴于南极洲大陆土壤中生物相互作用的作用减弱,据认为非生物因子在微生物群落的结构中起着主导作用。然而,许多无冰地区仍未开发,尚不清楚哪个环境梯度是造成细菌群落间差异的主要原因。在这项研究中,我们通过焦磷酸测序研究了维多利亚州土地新星湾周围的土壤细菌群落,并确定了哪些环境变量控制着当地规模的细菌群落结构。六个细菌门,放线菌,变形杆菌,酸性杆菌,绿弯曲菌,蓝细菌和拟杆菌属占优势,但它们的相对丰度在不同位置之间差异很大。细菌群落结构受空间距离的影响很小,但受部位的影响更大,这与土壤的理化组成是一致的。在门和物种水平上,细菌群落结构主要由pH和水含量来解释,而某些地球元素和微量金属在塑造群落变异中也起着重要作用。在此地点发现的细菌群落结构较高的异质性表明土壤细菌群落如何在极端环境条件下适应不同的食道变量组成。综上所述,这些发现极大地促进了我们对土壤细菌种群适应这种恶劣环境的理解。

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