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首页> 外文期刊>Soil Biology & Biochemistry >Soil microbial residue storage linked to soil legacy under biofuel cropping systems in southern Wisconsin, USA.
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Soil microbial residue storage linked to soil legacy under biofuel cropping systems in southern Wisconsin, USA.

机译:在美国威斯康星州南部,土壤微生物残留存储与生物燃料种植系统下的土壤遗留联系在一起。

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摘要

Microbial residues can be a significant component of soil organic matter, and their component amino sugars are integrative indicators of biologically relevant ecosystem properties. We evaluate the impact of soil attributes, microbial functional group biomass, and cropping system type on soil amino sugar profiles in three model biofuel cropping systems in southern Wisconsin, USA. Total soil carbon and clay content explained differences in soil amino sugar profiles, with glucosamine and galactosamine more strongly related to soil carbon and muramic acid associated with clay content. Amino sugars were not correlated to cropping system or to microbial functional group lipid abundance, suggesting amino sugar differences among locations were due to differences in soil legacy properties such as total carbon, clay content and culture age rather than to current biotic drivers. The disconnect between the current biotic composition and legacies of past microbial activity suggests that microbial residues should be considered as trajectories over time rather than static system properties.
机译:微生物残留物可能是土壤有机质的重要组成部分,其组成部分氨基糖是生物学相关生态系统特性的综合指标。我们评估了美国威斯康星州南部的三种生物燃料种植系统中土壤属性,微生物功能群生物量和种植系统类型对土壤氨基糖分布的影响。土壤总碳和粘土含量解释了土壤氨基糖分布的差异,其中氨基葡萄糖和半乳糖胺与土壤碳和与粘土含量相关的山酸的关系更密切。氨基糖与种植系统或微生物功能群脂质丰度均不相关,这表明位置之间的氨基糖差异是由于土壤遗留特性(如总碳,粘土含量和培养年龄)的差异所致,而不是当前的生物驱动因素。当前的生物成分与过去的微生物活动的遗产之间的脱节表明,应将微生物残留物视为随时间推移的轨迹,而不是静态系统特性。

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