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Factors affecting soil microbial biomass and functional diversity with the application of organic amendments in three contrasting cropland soils during a field experiment

机译:在田间试验中,在三种对比农田土壤中应用有机改良剂影响土壤微生物生物量和功能多样性的因素

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摘要

The effects of soil type and organic material quality on the microbial biomass and functional diversity of cropland soils were studied in a transplant experiment in the same climate during a 1-year field experiment. Six organic materials (WS: wheat straw, CS: corn straw, WR: wheat root, CR: corn root, PM: pig manure, CM: cattle manure), and three contrasting soils (Ferralic Cambisol, Calcaric Cambisol and Luvic Phaeozem) were chosen. At two time points (at the end of the 1st and 12th months), soil microbial biomass carbon (C) and nitrogen (N) (MBC and MBN) and Biolog Ecoplate substrate use patterns were determined, and the average well color development and the microbial functional diversity indices (Shannon, Simpson and McIntosh indices) were calculated. Organic material quality explained 29.5–50.9% of the variance in MBC and MBN when compared with the minor role of soil type (1.4–9.3%) at the end of the 1st and 12th months, and C/N ratio and total N of organic material were the main parameters. Soil properties, e.g., organic C and clay content were the predominant influence on microbial functional diversity in particular at the end of the 12th month (61.8–82.8% of the variance explained). The treatments of WS and CS significantly improved the MBC and microbial functional diversity indices over the control in the three soils in both sampling periods (P < 0.05). These results suggest that the application of crop straw is a long-term effective measure to increase microbial biomass, and can further induce the changes of soil properties to regulate soil microbial community.
机译:在一年的田间试验中,在相同气候下的移植试验中,研究了土壤类型和有机材料质量对农田土壤微生物生物量和功能多样性的影响。六种有机物质(WS:麦草,CS:玉米草,WR:麦根,CR:玉米根,PM:猪粪,CM:牛粪)和三种对比土壤(草甘膦,钙土和草甘膦)选择。在两个时间点(第1和12个月末),确定了土壤微生物生物量碳(C)和氮(N)(MBC和MBN)和Biolog Ecoplate底物的使用模式,并确定了平均孔的显色性和计算了微生物功能多样性指数(Shannon,Simpson和McIntosh指数)。与第一个月和第十二个月末土壤类型的次要作用(1.4-9.3%)相比,有机物质质量解释了MBC和MBN的变化的29.5-50.9%,以及有机物的碳氮比和总氮材料是主要参数。土壤特性(例如有机碳和粘土含量)是对微生物功能多样性的主要影响,尤其是在第12个月末(解释的差异为61.8–82.8%)。在两个采样期间,WS和CS处理均显着改善了三种土壤中的MBC和微生物功能多样性指数(P <0.05)。这些结果表明,农作物秸秆的施用是增加微生物量的长期有效措施,并且可以进一步引起土壤性质的变化以调节土壤微生物群落。

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