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Natural forests maintain a greater soil microbial diversity than that in rubber plantations in Southwest China

机译:天然森林维持比中国西南部的橡胶种植园更大的土壤微生物多样性

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The conversion of tropical forests to monoculture rubber plantations throughout Southeast Asia threatens to have widespread negative impacts on ecosystem services. The aim of this study was to identify the impacts of forest conversion to rubber plantations on soil microorganisms, using a space for time substitution design. Soil microbial communities from natural forests, young rubber and mature rubber plantations were investigated using phospholipid fatty acid (PLFA) analysis. Microbial PLFA biomass of all functional groups including actinomycete, arbuscular mycorrhiza, fungi, bacteria and protozoa was lower in rubber plantations as compared to natural forests. This was true for young rubber and mature rubber plantations tested in both dry and wet seasons. The composition of microbial communities differed between natural forests, young rubber and mature rubber plantations. Changes in microbial community composition were strongly correlated with pH, which was lower in mature rubber plantations than in natural forests and young rubber plantations. In addition, our results showed that the variation in soil microbial community composition was strongly affected by seasonality, with higher PLFA biomass recorded in the dry season than in the wet season. The low soil microbial biomass in rubber plantations has long term implications regarding the soil health of rubber plantations.
机译:热带森林转换为东南亚全殖民地橡胶种植园威胁要对生态系统服务普遍影响。本研究的目的是鉴定森林转换对土壤微生物橡胶种植园的影响,使用时间替代设计。采用磷脂脂肪酸(PLFA)分析研究了自然森林,幼橡胶和成熟橡胶种植园的土壤微生物群落。与天然森林相比,橡胶种植园中的所有官能团的微生物PLFA生物量,包括放线菌,丛枝菌疹,真菌,细菌,细菌和原生动物,较低。这对于在干燥和湿季节测试的年轻橡胶和成熟的橡胶园是如此。微生物社区的组成不同,天然林,幼橡胶和成熟橡胶园。微生物群落组合物的变化与pH值强烈相关,pH值低于成熟的橡胶种植园,而不是在天然森林和年轻橡胶园中。此外,我们的研究结果表明,土壤微生物群落组合物的变异受季节性的强烈影响,在旱季记录的旱季度较高的PLFA生物量。橡胶种植园中的低土微生物生物量对橡胶园的土壤健康有长期影响。

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