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Analysis of the Bacterial Communities in Lime Concretion Black Soil upon the Incorporation of Crop Residues

机译:作物残渣掺入后石灰生石灰黑土中细菌群落的分析

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To analyze the bacterial communities in lime concretion black soil upon the incorporation of crop residues for two years in wheat-maize system, total DNA was directly extracted and PCR-amplified with the F357GC and R518 primers targeting the 16S rRNA genes of V3 region. The amplified fragments were analyzed by perpendicular DGGE. Analyzing of species richness index S and Shannon diversity index H revealed that there was a high diversity of soil bacterial community compositions among all treatments after incorporation of crop residues and fertilizing under field conditions. Eleven DGGE bands recovered were re-amplified, sequenced. Phylogenetic analysis of the representative DGGE fingerprints identified four groups of the prokaryotic communities in the soil by returning wheat residues and fertilizing under field conditions. The bacterial communities belonged to gamma proteobacterium, Cupriavidus sp, halophilic eubacterium, Acidobacterium sp, Sorangium sp, delta proteobacterium, Streptococcus sp and Streptococcus agalactiae were main bacterial communities. Principal Component Analysis (PCA) showed that there were the differences in DNA profiles among the six treatments. It showed that wheat residue returning, maize residue returning and fertilizing all can improve bacterial diversity in varying degrees. As far as improvement of bacterial diversity was concerned, wheat residue returning was higher than fertilizing, and fertilizing higher than maize residue returning.
机译:为了分析在小麦-玉米系统中掺入作物残渣两年后石灰固结黑土中的细菌群落,直接提取总DNA并用针对V3区16S rRNA基因的F357GC和R518引物进行PCR扩增。通过垂直DGGE分析扩增的片段。对物种丰富度指数S和香农多样性指数H的分析显示,在所有处理中,在作物残渣掺入并在田间条件下施肥后,土壤细菌群落组成差异很大。回收的11条DGGE带被重新扩增,测序。通过对代表性DGGE指纹进行系统发育分析,归还了小麦残留物并在田间条件下施肥,从而确定了土壤中的四组原核生物群落。细菌群落属于γ-变形杆菌,Cupriavidus sp,嗜盐性真细菌,嗜酸杆菌,Sorangium sp,δ变形杆菌,链球菌和无乳链球菌。主成分分析(PCA)显示,这6种处理方法之间的DNA谱存在差异。结果表明,小麦秸秆还田,玉米秸秆还田和施肥均能不同程度地改善细菌多样性。就改善细菌多样性而言,小麦残留还田比施肥还高,而施肥还高于玉米残茬。

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