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Soil biology and warming play a key role in the release of old C from organic soils

机译:土壤生物学和变暖在有机土壤中释放旧碳中起关键作用

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A radiocarbon approach was used to investigate the roles of temperature and soil fauna activity in the turnover of old non-labile carbon in a peatland ecosystem. We investigated the impacts of enchytraeids on carbon turnover in two different soil layers, with different incorporation of the bomb peak, when incubated at two different temperatures. Results showed that, in agreement with previous studies, warmer temperatures promoted reproduction rates of enchytraeids, with the top layer supporting higher animal densities and biomass. With independence of the animal treatment, soil respiration in the top 5 cm was four times higher than in the deeper layer suggesting that decomposition was greater in the upper layer, with the response being greater at the highest temperature treatment. Furthermore, independent of temperature, the presence of enchytraeids in the top layer significantly enhanced the release of non-labile C as DOC. Similarly, at the bottom layer, older C sources were mobilised in response to warming and a greater amount of pre-bomb carbon was released into the soil solution at 20 pC when the worms were present. A strong positive link between the ages of the C assimilated by the animals and released through mineralization suggests an important role of soil biology in the mobilisation of the older C pools in soils and should be taken into account in developing global C models to predict the response of soil C dynamics to climate change.
机译:放射性碳方法被用来调查温度和土壤动物活动在泥炭地生态系统中旧的不稳定碳的周转中的作用。我们研究了在两种不同温度下孵育时,肠溶肽对两种不同土壤层中碳转化的影响,其中炸弹峰的掺入不同。结果表明,与先前的研究一致,较暖的温度促进了肠球菌的繁殖速率,顶层支持更高的动物密度和生物量。在不依赖动物处理的情况下,最上面5 cm处的土壤呼吸比深层高4倍,这表明上层的分解更大,在最高温度处理下响应更大。此外,与温度无关,顶层中存在的鞘磷脂显着增强了非不稳定C作为DOC的释放。同样,在底层,随着温度的升高,较旧的碳源被调动,当蠕虫出现时,在20 pC时,大量的前炸弹碳释放到土壤溶液中。动物吸收并通过矿化释放的碳的年龄之间有很强的积极联系,这表明土壤生物学在土壤中较老的碳库的动员中具有重要作用,在开发整体碳模型以预测反应时应考虑到这一点碳动力学对气候变化的影响。

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