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Changes in soil respiration components and their specific respiration along three successional forests in the subtropics

机译:亚热带三种演替森林土壤呼吸成分的变化及其比呼吸

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Understanding how soil respiration components change with forest succession is critical for modelling and predicting soil carbon (C) processes and its sequestration below-ground. The specific respiration (a ratio of respiration to biomass) is increasingly being used as an indicator of forest succession conceptually based on Odum's theory of ecosystem development. However, the hypothesis that specific soil respiration declines with forest succession remains largely untested. We used a trenching method to partition soil respiration into heterotrophic respiration and autotrophic respiration (R-H and R-A) and then evaluated the specific R-H and specific R-A in three successional forests in subtropical China. Our results showed a clear seasonality in the influence of forest succession on R-H, with no significant differences among the three forests in the dry season but a higher value in the old-growth forest than the other two forests in the wet season. R-A in the old-growth forest tended to be the highest among the three forests. Both the specific R-H and specific R-A decreased with the progressive maturity of three forests. Our results highlight the importance of forest succession in determining the variation of R-H in different seasons. With forest succession, soil microbes and plant roots become more efficient to conserve C resources, which would result in a greater proportion of C retained in soils.
机译:了解土壤呼吸成分随森林演替如何变化对于建模和预测土壤碳(C)过程及其在地下的固存至关重要。根据Odum的生态系统发展理论,特定呼吸(呼吸与生物量的比率)正越来越多地被用作森林演替的指标。但是,关于特定土壤呼吸随森林演替而下降的假设在很大程度上尚未得到证实。我们使用挖沟方法将土壤呼吸分为异养呼吸和自养呼吸(R-H和R-A),然后评估了亚热带中国三个演替森林中的特定R-H和特定R-A。我们的结果表明,森林演替对R-H的影响具有明显的季节性,在干旱季节,这三种森林之间没有显着差异,但在雨季,老龄森林的价值高于其他两种森林。旧林中的R-A往往是这三个森林中最高的。随着三个森林的逐渐成熟,其特定的R-H和特定的R-A均降低。我们的结果强调了森林演替在确定不同季节的R-H变化中的重要性。随着森林的演替,土壤微生物和植物根系变得更有效地保存了碳资源,这将导致更大比例的碳保留在土壤中。

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