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Effects of Conservation Agriculture and Fertilization on Soil Microbial Diversity and Activity

机译:保护性农业和施肥对土壤微生物多样性和活性的影响

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Soil microbial communities perform critical functions in ecosystem processes. These functions can be used to assess the impact of agricultural practices on sustainable crop production. In this five-year study, the effect of various agricultural practices on soil microbial diversity and activity was investigated in a summer rainfall area under South African dryland conditions. Microbial diversity and activity were measured in the 0–15 cm layer of a field trial consisting of two fertilizer levels, three cropping systems, and two tillage systems. Using the Shannon–Weaver and Evenness diversity indices, soil microbial species richness and abundance were measured. Microbial enzymatic activities: β-glucosidase, phosphatase and urease, were used to evaluate ecosystem functioning. Cluster analysis revealed a shift in soil microbial community diversity and activity over time. Microbial diversity and activity were higher under no-till than conventional tillage. Fertilizer levels seemed to play a minor role in determining microbial diversity and activity, whereas the cropping systems played a more important role in determining the activity of soil microbial communities. Conservation agriculture yielded the highest soil microbial diversity and activity in diversified cropping systems under no-till.
机译:土壤微生物群落在生态系统过程中发挥关键作用。这些功能可用于评估农业实践对可持续作物生产的影响。在这项为期五年的研究中,在南非干旱地区的夏季降雨地区,研究了各种农业实践对土壤微生物多样性和活性的影响。在田间试验的0–15 cm层中测量了微生物多样性和活性,该试验由两种肥料水平,三种耕作系统和两种耕作系统组成。使用Shannon-Weaver和Evenness多样性指数,测量了土壤微生物物种的丰富度和丰度。微生物酶活性:使用β-葡萄糖苷酶,磷酸酶和脲酶来评估生态系统功能。聚类分析揭示了土壤微生物群落多样性和活性随时间的变化。免耕耕作的微生物多样性和活性高于常规耕作。肥料水平似乎在决定微生物多样性和活动中起次要作用,而种植系统在决定土壤微生物群落的活动中起更重要的作用。在免耕措施下,多样化种植系统中,保护性农业的土壤微生物多样性和活性最高。

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