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Species diversity and chemical properties of litter influence non-additive effects of litter mixtures on soil carbon and nitrogen cycling

机译:凋落物的物种多样性和化学性质影响凋落物混合物对土壤碳氮循环的非加性效应

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摘要

Decomposition of litter mixtures generally cannot be predicted from the component species incubated in isolation. Therefore, such non-additive effects of litter mixing on soil C and N dynamics remain poorly understood in terrestrial ecosystems. In this study, litters of Mongolian pine and three dominant understory species and soil were collected from a Mongolian pine plantation in Northeast China. In order to examine the effects of mixed-species litter on soil microbial biomass N, soil net N mineralization and soil respiration, four single litter species and their mixtures consisting of all possible 2-, 3- and 4-species combinations were added to soils, respectively. In most instances, species mixing produced synergistic non-additive effects on soil microbial biomass N and soil respiration, but antagonistic non-additive effects on net N mineralization. Species composition rather than species richness explained the non-additive effects of species mixing on soil microbial biomass N and net N mineralization, due to the interspecific differences in litter chemical composition. Both litter species composition and richness explained non-additive soil respiration responses to mixed-species litter, while litter chemical diversity and chemical composition did not. Our study indicated that litter mixtures promoted soil microbial biomass N and soil respiration, and inhibited net N mineralization. Soil N related processes rather than soil respiration were partly explained by litter chemical composition and chemical diversity, highlighting the importance of functional diversity of litter on soil N cycling.
机译:通常不能从分离培养的组分物种中预测垃圾混合物的分解。因此,在陆地生态系统中,垃圾混合对土壤碳和氮动态的这种非累加效应仍然知之甚少。在这项研究中,从中国东北的一个蒙古松人工林中收集了蒙古松的凋落物和三种主要的林下物种和土壤。为了研究混合种类凋落物对土壤微生物生物量氮,土壤净氮矿化和土壤呼吸的影响,将四种单一的凋落物及其由所有可能的2种,3种和4种组合组成的混合物添加到土壤中。 , 分别。在大多数情况下,物种混合对土壤微生物生物量氮和土壤呼吸产生协同的非累加作用,但对净氮矿化产生拮抗的非累加作用。物种组成而不是物种丰富性解释了物种混合对土壤微生物生物量氮和净氮矿化的非累加效应,这是由于凋落物化学组成的种间差异所致。凋落物的物种组成和丰富度都解释了土壤对混合物种凋落物的非累加性呼吸反应,而凋落物的化学多样性和化学组成却没有。我们的研究表明,凋落物混合物可促进土壤微生物量氮和土壤呼吸,并抑制净氮矿化。凋落物的化学成分和化学多样性可以部分解释土壤氮的相关过程而不是土壤呼吸,这突出说明了凋落物功能多样性对土壤氮循环的重要性。

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