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Tillage and manure effect on soil microbial biomass and respiration, and on enzyme activities

机译:耕作和肥料对土壤微生物生物量和呼吸作用以及酶活性的影响

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Application of liquid pig manure on soil for agricultural use increases the organic matter content and constitutes an important input of nutrients into the soil, increasing microbial activity through the direct addition of nutrients and microorganisms. The objective of this study was to determine the influence of both tillage and liquid pig manure application on soil microbial biomass, enzyme activities and microbial respiration in a meadow soil. The results obtained did not show any significant effect of tillage and manure on microbial biomass carbon (C) and nitrogen (N) nor on soil acid phosphatase activity. However, these treatments significantly increased microbial biomass P, urease, alkaline phosphatase and ammonification rates. The maximum microbial activity was observed in surface soil layer both under conventional tillage and zero-tillage. In fact, microbial respirations (CO2) of bacteria and actinomycetes were higher in the surface soil and increased with the level of manure. Tillage and manure application had no significant effect on fungal respiration but interaction between tillage and manure application significantly influenced soil urease and ammonification rates. Hence, we suggested that soil microbial biomass and enzyme activities were closely correlated to the N mineralization potential, N and C mineralization rates, total amounts of C or N, soil pH, ammonification rates and soil structural stability.
机译:液态猪粪肥在农业用土壤上的施用会增加有机质含量,并构成土壤中养分的重要输入,通过直接添加养分和微生物来增加微生物活性。这项研究的目的是确定耕作和液体猪粪肥施用对草甸土壤微生物微生物量,酶活性和微生物呼吸的影响。获得的结果未显示耕作和肥料对微生物生物量碳(C)和氮(N)或对土壤酸性磷酸酶活性没有任何显着影响。但是,这些处理显着提高了微生物生物量P,脲酶,碱性磷酸酶和氨化率。在常规耕作和零耕下均能在表层土壤中观察到最大的微生物活性。实际上,表层土壤中细菌和放线菌的微生物呼吸(CO2)较高,并且随着粪便水平的增加而增加。耕作和肥料施用对真菌的呼吸作用没有显着影响,但耕作和肥料之间的相互作用显着影响土壤脲酶和氨化率。因此,我们认为土壤微生物的生物量和酶活性与氮矿化潜力,氮和碳矿化速率,碳或氮总量,土壤pH,氨化速率和土壤结构稳定性密切相关。

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