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Warming deferentially altered multidimensional soil legacy induced by past land use history

机译:过去土地使用史引起的变暖改变了多维土壤遗产

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摘要

The legacy effects of previous land use and climate history may affect current soil function. However, the manner in which these legacy effects of land use are modulated by the subsequent climate remains unclear. For this reason, we investigated how the legacies of soil multiple functions left by conversion of grassland to agricultural management were mediated by climate warming with a reciprocal transplant approach. The overall legacy was further separated into the contributions by changes in the abiotic properties of the soil (abiotic process) and microbial community (biotic process). We here hypothesized that warming may mediate the legacy effects of previous land use, mainly by changing biotic processes. Results indicated that warming significantly influenced the total legacies of soil respiration and three exoenzyme activities representing recalcitrant carbon, nitrogen, and phosphorus cycling, but did not affect the total legacy of β-1,4-glucosidase activity, which is involved in labile carbon cycling. The relative contributions of abiotic and biotic processes to the warming effects on the total legacy depended on the type of soil function. The effects of warming on land use change legacies were derived from altered bacterial community structure. The results of the present study suggest that climate conditions could interact with land use legacy to determine the ecosystem functions in a process-specific way.
机译:先前土地使用和气候历史的遗留影响可能会影响当前的土壤功能。但是,尚不清楚随后的气候如何调节这些土地使用的传统影响。因此,我们研究了通过对等移植方法通过气候变暖来调节由草地向农业经营转变而留下的土壤多功能性的遗产。通过改变土壤的非生物特性(非生物过程)和微生物群落(生物过程),整个遗产被进一步分为贡献。我们在此假设,变暖可能主要通过改变生物过程来介导先前土地使用的遗留影响。结果表明,变暖显着影响土壤呼吸的总遗留力和代表顽固性碳,氮和磷循环的三种外酶活性,但不影响参与不稳定碳循环的β-1,4-葡糖苷酶活性的总残留量。 。非生物和生物过程对变暖对总遗留物的相对贡献取决于土壤功能的类型。变暖对土地利用变化的影响来自细菌群落结构的改变。本研究的结果表明,气候条件可以与土地利用的遗留因素相互作用,以特定于过程的方式确定生态系统功能。

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