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Biological indicators of soil quality under conventional, reduced, and no-tillage systems

机译:传统、少耕和免耕制度下土壤质量的生物指标

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ABSTRACT Soil microbial processes can serve as sensitive indicators of soil quality. A 2-year field experiment was conducted to determine the combined effects of tillage (conventional, CT; reduced, RT; and no tillage, NT) and residue (with or without residue removal) on soil microbial and enzyme activities under wheat (Triticum aestivum L.)- and corn (Zea mays L.) in a rotation, using a split-plot design with three replications near Shiraz, Iran. The highest microbial biomass (660.19 and 667.00 µg MBC g−1 soil in wheat and corn, respectively) was recorded under RT. Soil respiration was affected by tillage in order NT > RT > CT. The lowest microbial quotient (qCO2) was obtained under RT (15.60 in wheat and 5.94 in corn, respectively), while NT and CT either showed similar effects or NT was superior over CT. The highest acid phosphatase enzyme was obtained under RT (442.65 and 374.17 µg PNP g−1 soil h−1 in wheat and corn, respectively). Alkaline phosphatase and urease enzymes were highest under NT. Our research has shown that replacing CT with conservation tillage (especially RT) can greatly improve soil enzymes and microbial biomass and optimize qCO2 values under wheat- and corn in a rotation in a short term.
机译:摘要 土壤微生物过程可作为土壤质量的敏感指标。进行了为期 2 年的田间试验,以确定耕作(常规耕作,CT;减耕,RT;和免耕,NT)和残留物(有或没有残留物去除)对小麦 (Triticum aestivum L.) 土壤微生物和酶活性的综合影响。- 和玉米(Zea mays L.)轮作,在伊朗设拉子附近采用分地设计,有三个复制品。温耕下土壤微生物生物量最高(小麦和玉米土壤分别为660.19和667.00 μg MBC g−1),土壤呼吸受耕作影响,依次为NT>RT>CT。室温下微生物商(qCO2)最低(小麦为15.60,玉米为5.94),NT和CT均有相似效果或NT优于CT。室温下酸性磷酸酶含量最高(小麦和玉米土壤h−1分别为442.65和374.17 μg PNP g−1)。碱性磷酸酶和脲酶在NT下最高。我们的研究表明,用保护性耕作(尤其是RT)代替CT可以大大改善土壤酶和微生物生物量,并在短期内优化小麦和玉米轮作的qCO2值。

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