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Seasonal variations in leaf litter substrate-induced respiration and metabolic quotient in a warm temperate broad-leaved forest

机译:温带宽叶林叶凋落物基质诱导的呼吸呼吸和代谢商的季节变化

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摘要

Seasonal variations in microbial biomass and metabolic quotient within the litter layer and the microorganism-mediated mechanisms causing seasonal variation in litter heterotrophic respiration in warm temperate forests have yet to be determined. We aimed to elucidate seasonal variations in substrate-induced respiration (SIR) as an index of microbial biomass and the ratio of basal respiration to SIR (BR/SIR) as a relative measure of the metabolic status of a microbial community in the litter layer and to investigate the microorganism-mediated mechanisms causing seasonal variation in litter heterotrophic respiration. We collected samples of unfragmented leaf litter (LL) and 1-cm litter fragments (FL) within the litter layer on a monthly basis over a 1-year period. SIR varied in accordance with seasonal temperature changes. Additionally, SIR showed a negative relationship with the C/N ratio in the early decomposition phase and a positive relationship when the C/N ratio was less than 30. BR/SIR in both LL and FL decreased as decomposition proceeded - possibly resulting from succession in the microbial community. Moreover, seasonal hysteresis in litter heterotrophic respiration at the site was similar for SIR; it was higher in spring than in autumn at the similar temperature, which may have been affected by the depletion of available carbon for microorganisms as decomposition proceeded in the mobilization phase. Our findings suggest that studies such as these should integrate assessments of the microbial community to better understand the microorganism-mediated heterotrophic respiration process.
机译:垃圾层内微生物生物量和代谢商的季节变化和微生物介导的机制,导致温水森林中凋落物异养呼吸的季节性变化。我们旨在阐明底物诱导的呼吸(SIR)作为微生物生物量指数的季节性变化,以及基础呼吸与SIR(BR / SIR)的比例,作为垃圾层中微生物群落的代谢状态的相对测量研究微生物介导的机制,导致垃圾异养呼吸的季节变化。在1年期间,我们每月在垃圾层内收集未经用品叶片垃圾(LL)的样品和垃圾层内的样品。 SIR根据季节性温度变化而变化。另外,SIR与早期分解阶段中的C / N比和当C / N比小于30时的阳性关系显示出负相关关系。在LL和FL中的BR / SIR随着分解而降低 - 可能是由继承引起的在微生物群落中。此外,目前在现场的垃圾异养呼吸中的季节性滞后是类似的;春季比在类似温度的秋天春天更高,这可能受到微生物耗尽的影响,因为在动员阶段进行了分解。我们的研究结果表明,这些研究应该整合微生物群落的评估,以更好地理解微生物介导的异养呼吸过程。

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