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Resolving environmental drivers of microbial community structure in Antarctic soils

机译:解决南极土壤微生物群落结构的环境驱动因素

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Antarctic soils are extremely cold, dry, and oligotrophic, yet harbour surprisingly high bacterial diversity. The severity of environmental conditions has constrained the development of multi-trophic communities, and species richness and distribution is thought to be driven primarily by abiotic factors. Sites in northern and southern Victoria Land were sampled for bacterial community structure and soil physicochemical properties in conjunction with the US and New Zealand Latitudinal Gradient Project. Bacterial community structure was determined using a high-resolution molecular fingerprinting method for 80 soil samples from Taylor Valley and Cape Hallett sites which are separated by five degrees of latitude and have distinct soil chemistry. Taylor Valley is part of the McMurdo Dry Valleys, while Cape Hallett is the site of a penguin rookery and contains ornithogenic soils. The influence of soil moisture, pH, conductivity, ammonia, nitrate, total nitrogen and organic carbon on community structure was revealed using Spearman rank correlation, Mantel test, and principal components analysis. High spatial variability was detected in bacterial communities and community structure was correlated with soil moisture and pH. Both unique and shared bacterial community members were detected at Taylor Valley and Cape Hallett despite the considerable distance between the sites.
机译:南极土壤极度寒冷,干燥和贫营养,但细菌多样性却高得惊人。环境条件的严重性限制了多营养群落的发展,并且物种丰富度和分布被认为主要是由非生物因素驱动的。结合美国和新西兰的纬度梯度项目,对维多利亚州北部和南部地区的细菌群落结构和土壤理化性质进行了采样。使用高分辨率分子指纹法对泰勒河谷和哈雷特角站点的80个土壤样品进行了细菌群落结构测定,这些样品被五个纬度分开并且具有独特的土壤化学性质。泰勒河谷是麦克默多干旱谷的一部分,而哈雷特角是企鹅群的所在地,其中包含鸟类生土。通过Spearman等级相关,Mantel检验和主成分分析,揭示了土壤水分,pH,电导率,氨,硝酸盐,总氮和有机碳对群落结构的影响。在细菌群落中检测到高空间变异性,并且群落结构与土壤水分和pH相关。尽管地点之间有相当大的距离,但在泰勒谷和哈雷特角都发现了独特和共有的细菌群落成员。

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