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首页> 外文期刊>Archives of Agronomy and Soil Science >Response of microbial community diversity and subsoil properties to cow manure amendment in mollisols
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Response of microbial community diversity and subsoil properties to cow manure amendment in mollisols

机译:微生物群落多样性和底土性质对软溶胶中牛粪改良剂的响应

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Subsoil fertilization can help agricultural sustainability, but this is not a widely adopted practice. Here, we conducted a pot experiment to study the response of microbial community diversity and topsoil/subsoil properties to cow manure amendment. Our results show that amending subsoil with cow manure (SM) increased available phosphorus (AP) and humic acid (HA) content and the ratio of humic acid to fulvic acid (HA/FA) by 22.2, 17.7, and 49.3, respectively, relative to manure-amended topsoil (TM) (p < 0.05). SM was also more favorable for organic matter degradation and had 61.9, 21.7, and 85.3 higher relative abundances of the bacterial phyla Bacteroidetes and Actinobacteria and the order Cytophagales, respectively, relative to the TM treatment (p < 0.05). Compared with that of unamended subsoil (S), the Chao1 index, operational taxonomic units, and Shannon index of fungi were increased but bacterial diversity was decreased by SM treatment (p < 0.05). The only significant difference of the TM-treated soil with the unamended topsoil (T) was a lower bacterial Shannon index (p < 0.05). In conclusion, soil physicochemical properties and subsoil microbial communities were sensitive to cow manure amendment, which has the potential to improve the productivity of subsoils.
机译:底土施肥有助于农业的可持续性,但这并不是一种被广泛采用的做法。本研究采用盆栽试验,研究了微生物群落多样性和表土/底土特性对牛粪改良剂的响应。结果表明,与粪肥改良表土相比,用牛粪改良底土可使速效磷(AP)和腐植酸(HA)含量以及腐植酸与黄腐酸(HA/FA)的比例分别提高22.2%、17.7%和49.3%(p < 0.05)。SM对有机质降解也更有利,细菌门拟杆菌门和放线菌门以及噬细胞目相对丰度分别比TM处理高61.9%、21.7%和85.3%(p < 0.05)。与未改良底土(S)相比,SM处理真菌的Chao1指数、操作分类单元和Shannon指数均有所增加,但细菌多样性有所降低(p < 0.05)。TM处理的土壤与未改良的表土(T)的唯一显著差异是细菌香农指数较低(p < 0.05)。综上所述,土壤理化性质和底土微生物群落对牛粪改良剂敏感,具有提高底土生产力的潜力。

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