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Soil microbial biomass, organic C, and soybean physiology in integrated crop–livestock systems with different inputs

机译:不同投入的作物-畜牧一体化系统中的土壤微生物生物量、有机碳和大豆生理学

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摘要

ABSTRACT This study assessed the effect of soil inputs, i.e., lime, gypsum and fertilizers, on biological parameters, total organic C (TOC), and growth and physiology of soybean under integrated crop-livestock system (ICLS). Five soil inputs were evaluated: CT (no input), T1 (lime), T2 (lime and gypsum), T3 (lime, gypsum and NPK), and T4 (lime, gypsum, NPK and micronutrients). The highest TOC and soil microbial biomass values were found in T4 (7.8 g kg−1) and T1 (146.7 mg C kg−1), respectively. Soil respiration and dehydrogenase were higher in T2 (5.2 mg CO2 kg−1 and 0.19 mg kg−1, respectively). The highest soybean biomass, shoot dry weight, and chlorophyll values were found in T2 (14.1 g plant−1, 12.6 g plant−1, and 12.9 chlorophyll index plant−1, respectively), while total N and phenols were higher in T1 (27.4 mg N g−1 and 34.1 µg mL−1, respectively). The highest lipid peroxidation and peroxidase activity values were observed in CT (1.9 µM g−1) and T1 (1.58 µM g−1), respectively. The soil conditioning via the application of lime and gypsum can contribute to improving the status of biological parameters and TOC in ICLS, and it could contribute for improving the growth and physiology of soybean.
机译:摘要 本研究评估了石灰、石膏和肥料等土壤投入物对作物-畜牧一体化系统(ICLS)下大豆生物参数、总有机碳(TOC)以及生长和生理的影响。评估了五种土壤输入:CT(无输入)、T1(石灰)、T2(石灰和石膏)、T3(石灰、石膏和氮磷钾)和T4(石灰、石膏、氮磷钾和微量营养素)。T4(7.8 g kg−1)和T1(146.7 mg C kg−1)的TOC和土壤微生物生物量值最高。T2组土壤呼吸和脱氢酶较高(分别为5.2 mg CO2 kg-1和0.19 mg kg-1)。T2的大豆生物量、地上条干重和叶绿素值最高(分别为14.1 g植株−1、12.6 g植株−1和12.9叶绿素指数—1),而T1的大豆总氮和总酚含量较高(分别为27.4 mg N g−1和34.1 μg mL−1)。在CT(1.9μM g-1)和T1(1.58μM g-1)中观察到最高的脂质过氧化和过氧化物酶活性值。施用石灰和石膏调理土壤有助于改善ICLS的生物参数和TOC状况,有助于改善大豆的生长和生理。

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