首页> 外文期刊>European Journal of Soil Biology >Spatial structure of microbial biomass and activity in prairie soil ecosystems
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Spatial structure of microbial biomass and activity in prairie soil ecosystems

机译:草原土壤生态系统中微生物量的空间结构和活性

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摘要

Management of soil ecosystems requires assessment of key soil physicochemical and microbial properties and the spatial scale over which they operate. The objectives were to determine the spatial structure of microbial biomass and activity and related soil properties, and to identify spatial relationships of these properties in prairie soils under different management histories. Soil were sampled along a transect at 0.2 m intervals in each of five long-term treatments, namely, undisturbed, cattle grazed at two intensities, and cultivated with either wheat (Triticum aestivum L) or cotton (Gossypium hirsutum L). Contents of organic carbon (C-org), dissolved organic C (DOC), soluble nitrogen (N-sol), and microbial biomass C (C-mic) and N (N-mic) as well as dehydrogenase activity (DH) in 70 samples were evaluated. Results showed that long-term soil management altered the spatial structure and dependence of C-org and microbial biomass and activity. Cultivation has contributed to high nugget variance for C-org, C-mic, N-mic and DH which interfered with detection of spatial structure at the sampling scale used. Contents of C-org were spatially connected to microbial biomass and activity and to DOC in the uncultivated but not in the cultivated soils, indicating that various factors affected by management may operate at different spatial scales
机译:对土壤生态系统的管理需要评估关键的土壤理化和微生物特性,以及其运行的空间尺度。目的是确定微生物生物量,活性和相关土壤特性的空间结构,并确定不同管理历史下草原土壤中这些特性的空间关系。在五个长期处理中的每一个中,沿样条以每间隔0.2 m的间隔对土壤采样,即不受干扰,以两种强度放牧牛,然后用小麦(Triticum aestivum L)或棉花(Gossypium hirsutum L)进行耕种。土壤中的有机碳(C-org),溶解有机碳(DOC),可溶性氮(N-sol),微生物生物量碳(C-mic)和N(N-mic)的含量以及脱氢酶活性(DH)。评价了70个样品。结果表明,长期土壤管理改变了C-org的空间结构和依赖性以及微生物生物量和活性。耕作导致C-org,C-mic,N-mic和DH的块金变异较高,从而干扰了所用采样尺度下空间结构的检测。 C-org的含量在空间上与未经耕种但在耕作土壤中的微生物生物量和活性以及DOC有关,这表明受管理影响的各种因素可能在不同的空间尺度上起作用

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