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Distinct regulation of microbial processes in the immobilization of labile carbon in different soils

机译:不同土壤中不稳定碳固定化的微生物过程的明显调节

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A process-based understanding of soil carbon (C) sequestration and stabilization has not been precisely characterized due to the lacking of linkage between microbial proliferation and mortality. In this study, stable isotope probing of phospholipid fatty acids and amino sugars were used to determine the microbial responses and microbial residue retention in two soils (Mollisol and Ultisol) with C-13-labeled glucose addition. The microbial responses stimulated by glucose were greater in C-poor Ultisol than in C-rich Mollisol. However, the transformation of labile C to microbial residues in Mollisol was more rapid. Therefore, the starvation effect may control microbial growth and microbial residue production, and thus resulting in distinct sequestration and stabilization process of labile C in different soils.
机译:由于缺乏微生物增殖和死亡率之间的联动,尚未精确地表征基于过程的对土壤碳(C)螯合和稳定化的理解。 在该研究中,使用稳定的同位素探测磷脂脂肪酸和氨基糖,用C-13标记的葡萄糖加入来确定两种土壤(Mollisol和Ultisol)中的微生物反应和微生物残留物保留。 通过葡萄糖刺激的微生物反应比C-富含C富含C的Mollisol更大。 然而,在Mollisol中的不稳定性C对微生物残留物的转化更快。 因此,饥饿效果可以控制微生物生长和微生物残留物生产,从而导致不同土壤中不稳定C的不同螯合和稳定过程。

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