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In Situ Dynamics and Spatial Heterogeneity of Soil Bacterial Communities Under Different Crop Residue Management

机译:不同作物秸秆还田条件下土壤细菌群落的原位动态和空间异质性

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The effect of the location of wheat residues (soil surface vs. incorporated in soil) on their decomposition and on soil bacterial communities was investigated by the means of a field experiment. Bacterial-automated ribosomal intergenic spacer analysis of DNA extracts from residues, detritusphere (soil adjacent to residues), and bulk soil evidenced that residues constitute the zone of maximal changes in bacterial composition. However, the location of the residues influenced greatly their decomposition and the dynamics of the colonizing bacterial communities. Sequencing of 16S rRNA gene in DNA extracts from the residues at the early, middle, and late stages of degradation confirmed the difference of composition of the bacterial community according to the location. Bacteria belonging to the γ-subgroup of proteobacteria were stimulated when residues were incorporated whereas the α-subgroup was stimulated when residues were left at the soil surface. Moreover, Actinobacteria were more represented when residues were left at the soil surface. According to the ecological attributes of the populations identified, our results suggested that climatic fluctuations at the soil surface select populations harboring enhanced catabolic and/or survival capacities whereas residues characteristics likely constitute the main determinant of the composition of the bacterial community colonizing incorporated residues.
机译:通过田间试验研究了小麦残留物的位置(土壤表面相对于土壤中掺入的土壤)对其分解和土壤细菌群落的影响。细菌自动核糖体基因间间隔物分析,分析残留物,碎屑层(邻近残留物的土壤)和散装土壤中的DNA提取物,证明残留物构成细菌组成最大变化的区域。然而,残基的位置极大地影响了它们的分解和定居细菌群落的动力学。从降解的早期,中期和后期的残基中提取DNA的16S rRNA基因测序证实了细菌群落组成的不同。当掺入残留物时,会刺激属于变形杆菌γ-亚群的细菌,而当残留物留在土壤表面时会刺激α-亚群。此外,当残留物留在土壤表面时,放线菌更能代表。根据确定的种群的生态属性,我们的研究结果表明,土壤表面的气候波动选择了具有增强的分解代谢和/或生存能力的种群,而残留物的特性很可能是细菌群落组成掺入残留物的主要决定因素。

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