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首页> 外文期刊>Biology and Fertility of Soils >Effect of plant materials on microbial transformation of amino sugars in three soil microcosms
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Effect of plant materials on microbial transformation of amino sugars in three soil microcosms

机译:植物材料对三种土壤微观结构中氨基糖微生物转化的影响

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摘要

Amino sugars, being predominantly of microbial origin, can help elucidate the role of microbes in carbon and nitrogen cycling in soils. However, little is known about the microbial degradation and synthesis of soil amino sugars as affected by plant-derived organic materials. We conducted a 30-week microcosm study using three soils amended with soybean leaf or maize stalk to investigate changes in the amounts and patterns of amino sugars over time. The total soil amino sugar content initially increased during the incubation, but later decreased. Amino sugar content of soil amended with maize stalk peaked at an earlier time than it did for soybean leaf, suggesting nutrient quantity and substrate composition influence microbial transformation. Temporal dynamics of the proportion of total soil amino sugar to organic matter after plant material addition conformed to parabolic models (r > 0.8; p < 0.01), which tended to converge over time. The models predicted that the proportions would ultimately approach the initial values as determined before amendment. These findings suggest that soil organic matter has the ability to maintain a baseline steady-state level of amino sugars, and support the interpretation of soil amino sugar reservoir as two components: the Stable Pool (SP) and the Transition Pool (TP).
机译:氨基糖主要来自微生物,可帮助阐明微生物在土壤碳氮循环中的作用。但是,对于受植物来源的有机物质影响的土壤氨基糖的微生物降解和合成知之甚少。我们对使用大豆叶或玉米秸秆改良的三种土壤进行了为期30周的微观研究,以研究氨基糖含量和模式随时间的变化。在孵化过程中,土壤总氨基糖含量最初增加,但随后降低。玉米秸秆改良土壤中的氨基糖含量早于大豆叶片达到峰值,表明养分含量和底物组成影响微生物转化。添加植物材料后土壤总氨基糖与有机质的比例的时间动态符合抛物线模型(r> 0.8; p <0.01),并且随着时间趋于收敛。模型预测,比例最终将接近修正前确定的初始值。这些发现表明,土壤有机质能够保持氨基糖的基线稳态水平,并支持将土壤氨基糖储量解释为两个组成部分:稳定池(SP)和过渡池(TP)。

著录项

  • 来源
    《Biology and Fertility of Soils》 |2007年第6期|631-639|共9页
  • 作者单位

    Key Laboratory of Terrestrial Ecological Process Institute of Applied Ecology Chinese Academy of Sciences 110016 Shenyang People’s Republic of China;

    Key Laboratory of Terrestrial Ecological Process Institute of Applied Ecology Chinese Academy of Sciences 110016 Shenyang People’s Republic of China;

    Molecular and Environmental Toxicology Center University of Wisconsin Madison 53706 USA;

    Department of Soil Science University of Wisconsin 263 Soils Bldg 1525 Observatory Drive Madison WI 53706 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Amino sugar; Microbial residue; Plant material; Microbial transformation; Pool;

    机译:氨基糖;微生物残留;植物原料;微生物转化;池;

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