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首页> 外文期刊>Applied Soil Ecology >Pyrosequencing technology reveals the impact of different manure doses on the bacterial community in apple rhizosphere soil
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Pyrosequencing technology reveals the impact of different manure doses on the bacterial community in apple rhizosphere soil

机译:焦磷酸测序技术揭示了不同肥料剂量对苹果根际土壤细菌群落的影响

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We used DNA-based pyrosequencing to characterize the bacterial community structure of apple rhizosphere soil with different manure ratios. Five percentages of manure (5%, 10%, 15%, 20% and 25%) were examined. More than 10,000 valid reads were obtained for each replicate, and the community was composed of three dominant groups (Proteobacteria, Actinobacteria and Acidobacteria). Principal component analyses revealed that the rhizosphere samples were significantly different among the low manure treatments (control, 5% manure), the 10% manure treatment and the high manure treatments (15%, 20%, 25%). Four Bacillus species and 54 uncultured species showed a decreasing trend with increasing manure ratios. Soil treated with 10% manure showed the highest urease activity, a relatively higher saccharase activity, and the highest plant growth. Our experimental results suggested that although greater manure content leads to higher soil organic matter content, the 10% manure treatment resulted in significantly higher soil enzyme activity and a more diverse bacterial community composition
机译:我们使用基于DNA的焦磷酸测序来表征不同肥料比的苹果根际土壤的细菌群落结构。检查了五个百分比的肥料(5%,10%,15%,20%和25%)。每次重复均获得超过10,000次有效读数,该群落由三个优势群体(变形细菌,放线菌和酸性细菌)组成。主成分分析表明,在低肥料处理(对照,5%肥料),10%肥料处理和高肥料处理(15%,20%,25%)之间,根际样品存在显着差异。随着粪肥比的增加,芽孢杆菌属的4种和未培养菌种的54种呈下降趋势。用10%肥料处理的土壤显示出最高的脲酶活性,相对较高的糖酶活性和最高的植物生长。我们的实验结果表明,虽然较高的粪肥含量会导致较高的土壤有机质含量,但10%的粪肥处理会导致土壤酶活性显着提高,并且细菌群落组成也会更加多样化

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