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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Understanding soil biodiversity using two orthogonal 1000km transects across New South Wales, Australia
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Understanding soil biodiversity using two orthogonal 1000km transects across New South Wales, Australia

机译:了解澳大利亚新南威尔士州的两个正交1000km横断面的土壤生物多样性

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摘要

The patterns of soil biodiversity across different soil gradients still require evaluation in different environments. A close relationship between soil biodiversity and soil physicochemical properties (e.g. soil pH) is evident in most studies, but a large unexplained residual variance is usually reported. This suggests that a deeper exploration into the multidimensional nature of these biotic-abiotic interactions will help develop our understanding of how a combination of soil properties drives soil biodiversity more than any one soil attribute. This was tested by analysing the multivariate associations between soil microbial diversity and soil physicochemical heterogeneity across different Australian soil landscapes. The study area involved two orthogonal transects each of -1000 km across the state of New South Wales (NSW). A set of 33 abiotic attributes including soil properties and other key environmental covariates were correlated against a soil microbial DNA dataset (16S rRNA and ITS genes) to profile the soil bio-physicochemical relationships. This was undertaken for two land use archetypes representing natural and managed ecosystems. The study found that soil microbial communities were highly related to multiple soil attributes and vegetation. Even though the extent of these relationships varied depending on the environmental scenario and the structural microbial community component analysed, the multidimensional association with soil heterogeneity was evident beyond any single soil property, environmental gradient or land use.
机译:不同土壤梯度的土壤生物多样性模式仍需要在不同环境中的评估。在大多数研究中,土壤生物多样性和土壤理化性质(例如土壤pH)之间的密切关系,但通常报告了大​​量不明原因的残余方差。这表明对这些生物非生物互动的多维性质的更深入的探索将有助于了解我们对土壤性质的组合驱动土壤生物多样性的理解,而不是任何一种土壤属性。通过分析不同澳大利亚土壤景观的土壤微生物多样性和土壤物理化学异质性之间的多变量关联来测试这一点。该研究区域涉及在新南威尔士州(NSW)的两个正交横断面。一组33个非生物属性,包括土壤性质和其他关键的环境协变量与土壤微生物DNA数据集(16S rRNA及其基因)相关,以思考土壤生物物理化学关系。这是两个土地使用代表自然和管理生态系统的土地使用原型。该研究发现,土壤微生物社区与多种土壤属性和植被有高度相关。尽管根据环境场景和分析的结构微生物群落成分的这些关系的程度,但是与土壤异质性的多维结合显而易见,超出任何单一土壤性质,环境梯度或土地使用。

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