首页> 外文期刊>Journal of Forestry Research >Microbial biomass in subtropical forest soils: effect of conversion of natural secondary broad-leaved forest to Cunninghamia lanceolata plantation
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Microbial biomass in subtropical forest soils: effect of conversion of natural secondary broad-leaved forest to Cunninghamia lanceolata plantation

机译:亚热带森林土壤中的微生物生物量:天然次生阔叶林转化为杉木人工林的影响

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摘要

Conversion of natural secondary broad-leaved forest to Cunninghamia lanceolata plantation is a common management practice in subtropical China. In this study, we compared soil physico-chemical properties, microbial biomass in one natural secondary broad-leaved forest and two C. lanceolata plantation sites to estimate the effects of forest conversion on soil microbial biomass at the Huitong Experimental Station of Forestry Ecology, Chinese Academy of Sciences. Concentrations of soil organic carbon, total nitrogen, NH_4~+ -N and microbial biomass carbon and nitrogen were much lower under C. lanceolata plantations as compared to natural secondary broad-leaved forest. Soil microbial biomass C in the first and second rotation of C. lanceolata plantations was only 53%, 46% of that in natural secondary broad-leaved forest, and microbial biomass N was 97% and 79%, respectively. The contribution of microbial biomass C to soil organic C was also lower in the plantation sites. However, the contribution of microbial N to total nitrogen and NH_4~+ -N was greater in the C. lanceolata plantation sites. Therefore, conversion of natural secondary broad-leaved forest to C. lanceolata plantation and continuous planting of C. lanceolata led to the decline in soil microbial biomass and the degradation of forest soil in subtropical China.
机译:天然次生阔叶林向杉木杉木人工林的转化是中国亚热带地区的一种常见管理做法。在这项研究中,我们比较了一个自然的次生阔叶林和两个杉木植物人工林的土壤理化性质,微生物量,以评估森林生态系统惠通林业站森林转化对土壤微生物量的影响。科学院。与天然次生阔叶林相比,杉木植物人工林的土壤有机碳,总氮,NH_4〜+ -N,微生物生物量碳和氮的含量要低得多。轮叶杉木人工林第一轮和第二轮土壤微生物量碳分别仅为天然次生阔叶林的53%,46%,微生物量氮分别为97%和79%。人工林中微生物量碳对土壤有机碳的贡献也较低。然而,在杉木植物人工林中,微生物氮对总氮和NH_4〜+ -N的贡献更大。因此,亚热带天然次生阔叶林向杉木的人工林转化以及杉木的连续种植导致了亚热带土壤微生物量的下降和森林土壤的退化。

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