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Bacterial Diversity in Peat Soils of Forest Ecosystems and Oil Palm Plantation

机译:森林生态系统泥炭土壤中的细菌多样性

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Bacteria play a crucial role in regulating biogeochemical cycles in peatlands. Most of the studies on soil bacteria focus mainly on the peat surface and bacteria that exist in the deeper peat layers are still poorly known in tropical areas. This study was conducted to examine bacterial abundances along the peat depths in peat forest ecosystems (peat swamp forest (PSF) and logged-over secondary forest (LOF)) and an oil palm plantation (7.5 years after planting (7.5 YAP OPP)) at intervals of 0-30 cm, 30-40 cm, 40-50 cm, and 50-60 cm. Isolation of bacteria from peat samples was carried out on several selective and non-selective media. Bacteria identification was conducted by amplifying the 16S rRNA gene. The result showed that the same dominant bacterial taxa were found with different abundances in all study sites which were Proteobacteria, Firmicutes, and Actinobacteria. Vertical stratification of Proteobacteria and Firmicutes was observed along the depths, might due to the fluctuations of water table in the peatland mainly in 7.5 YAP OPP. Richness was highest at 0-30 cm in LOF and 7.5 YAP OPP, while PSF at 30-40 cm. This study suggests that deeper peat depth supports the bacterial growth and environmental conditions related to water table level influenced the bacterial abundances.
机译:细菌在调节泥炭地的生物地球化学循环方面发挥着至关重要的作用。大多数关于土壤细菌的研究主要关注泥炭表面和较深的泥炭层中存在的细菌在热带地区仍然是众所周知的。本研究进行了沿泥炭林生态系统(PEAT沼泽森林(PSF)和登录的次要林(LOF))和油棕种植园(种植后7.5年)的泥炭深度(7.5 yap))进行细菌丰度间隔为0-30厘米,30-40厘米,40-50厘米,50-60厘米。在几种选择性和非选择性培养基上进行来自泥炭样品的细菌的分离。通过扩增16S rRNA基因进行细菌鉴定。结果表明,所有研究部位的不同丰度都发现了相同的占状细菌分类群,这些遗传症是植物,压缩的型斑块。沿着深度观察到植物细菌和常规分层,可能是由于泥炭地的水桌子的波动主要在7.5 yap OPP中。在LOF的0-30厘米和7.5张OPP中,丰富度最高,而PSF为30-40厘米。本研究表明,深层泥炭深度支持与水位水平有关的细菌生长和环境条件影响细菌丰富。

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