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首页> 外文期刊>Applied Soil Ecology >Soil microbial communities under model biofuel cropping systems in southern Wisconsin, USA: Impact of crop species and soil properties
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Soil microbial communities under model biofuel cropping systems in southern Wisconsin, USA: Impact of crop species and soil properties

机译:美国南部威斯康星州模式生物燃料种植系统下的土壤微生物群落:作物种类和土壤特性的影响

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Biofuel-induced landscape change will have an enormous impact on terrestrial ecosystems in the near future due to globally escalating energy demands, but investigations into the biological properties of soil under potential biofuel crops have not been well documented. The soil microbiota plays a significant role in ecosystem services and especially their regulation of carbon and nutrient cycles. To improve our knowledge about the structure of soil microbial community and the factors that influence it, we analyzed microbial lipids and various soil physicochemical factors under model biofuel cropping systems of corn, switchgrass and mixed prairie in southern Wisconsin, USA. Principal component analysis of lipid biomarkers from soil microbial communities indicated that there were consistent differences among the crop species. Microbial biomass was significantly lower in corn than prairie soils, with switchgrass intermediate to these systems. An increase in fungi to bacteria ratio was coinciding with a net growth in fungal biomass when converting conventionally managed corn system to perennial systems, which indicates the microbial community change could be affected by the creation or expansion of niches for certain functional groups, rather than rebalancing of competitive interactions among these groups. The soil microbial community structure under corn was distinct from the perennial systems with markers indicative of greater in situ stress in annual corn sites and a reduced proportional abundance of arbuscular mycorrhizal fungi and an increased of gram-positive bacteria. Redundancy analysis (RDA) using 21 lipid biomarkers concurrently with 17 physicochemical indices showed that these properties correlated with different subsets of the microbial communities. We conclude that the cropping system shifted the microbial community composition at this regional scale, which may also affect the microbial processes associated with these differing communities. This may be significant when scaled up from regional to national, continental or global scales. Published by Elsevier B.V.
机译:由于全球能源需求的不断增长,生物燃料引起的景观变化将在不久的将来对陆地生态系统产生巨大影响,但是尚未充分记录对潜在生物燃料作物下土壤生物学特性的调查。土壤微生物群在生态系统服务,尤其是其碳和养分循环的调节中起着重要作用。为了提高我们对土壤微生物群落结构及其影响因素的认识,我们在美国威斯康星州南部的玉米,柳枝and和大草原混合模式生物燃料种植系统下分析了微生物脂质和各种土壤理化因素。来自土壤微生物群落的脂质生物标志物的主成分分析表明,农作物物种之间存在一致的差异。玉米中的微生物生物量明显低于草原土壤,柳枝switch在这些系统中。当将传统管理的玉米系统转换为多年生系统时,真菌与细菌的比率增加与真菌生物量的净增长相吻合,这表明微生物群落的变化可能受到某些功能性群体的创造或扩展,而不是重新平衡这些群体之间的竞争性互动。玉米下的土壤微生物群落结构与多年生系统不同,其标志物表明一年生玉米部位的原地胁迫更大,丛枝菌根真菌的比例丰度降低,革兰氏阳性菌增加。同时使用21种脂质生物标志物和17种理化指标的冗余分析(RDA)表明,这些特性与微生物群落的不同子集相关。我们得出的结论是,种植制度在这一区域规模上改变了微生物群落组成,这也可能影响与这些不同群落相关的微生物过程。当从区域规模扩展到国家,大陆或全球范围时,这可能很重要。由Elsevier B.V.发布

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