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Living and dead soil organic matter under different land uses on a Mediterranean island

机译:地中海岛屿上不同土地利用方式下的生物和死土壤有机物

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摘要

Soil under six different land uses on Pianosa Island, in the Mediterranean Sea, was characterized in terms of microbial activity and organic matter quality, in order to define relationships between living and dead organic matter. Biological measurements and chemical and spectroscopic (C-13 NMR and FTIR) investigation of the extracted soil organic matter provided clues to the effects of soil management on the reciprocal interactions between living and dead organic matter. In particular, the conversion from the original bushy maquis to other land uses, such as degraded thickets of holm oak, maquis-invaded groves of olive trees, stands of Aleppo pines and abandoned pastures, implied significant reduction of soil organic carbon (SOC) and its microbial fraction (MBC). Cropland, which is the land use with the greatest perturbation of soil, had the smallest SOC, MBC and soil respiration rate. Significant differences in extractable SOC among land uses occurred, both as total amount and as molecular mass distribution. The relatively good relationship between soil respiration and the extracted SOM-fraction of 2-50kDa, expressed on a molecular mass basis, suggests that this size is strongly linked to heterotrophic organisms and that it could be representative of a transitory pool of C in soil.
机译:为了确定活有机物和死有机物之间的关系,对地中海Pianosa岛上六种不同土地利用下的土壤进行了微生物活度和有机质质量表征。提取的土壤有机物的生物学测量以及化学和光谱分析(C-13 NMR和FTIR)研究为土壤管理对活有机物和死有机物之间的相互影响提供了线索。特别是,从原始的丛生灌木丛向其他土地用途的转变,例如退化的霍姆栎灌木丛,入侵灌木丛的橄榄树树林,阿勒颇松树和废弃的牧场,这意味着土壤有机碳和有机碳的显着减少。其微生物分数(MBC)。农田是土壤扰动最大的土地利用,其SOC,MBC和土壤呼吸速率最小。土地利用之间可提取的SOC的总量和分子质量分布均存在显着差异。土壤呼吸与提取的2-50kDa的SOM分数之间相对良好的关系(以分子质量表示)表明,该大小与异养生物紧密相关,并且可以代表土壤中C的瞬时库。

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