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Cover Crop Influence on Soil Enzymes and Selected Chemical Parameters for a Claypan Corn–Soybean Rotation

机译:覆盖作物对Claypan玉米-大豆轮作的土壤酶和某些化学参数的影响

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Cover crops (CC) improve soil quality, including soil microbial enzymatic activities and soil chemical parameters. Scientific studies conducted in research centers have shown positive effects of CC on soil enzymatic activities; however, studies conducted in farmer fields are lacking in the literature. The objective of this study was to quantify CC effects on soil microbial enzymatic activities ( β -glucosidase, β -glucosaminidase, fluorescein diacetate hydrolase, and dehydrogenase) under a corn ( Zea mays L.)–soybean ( Glycine max (L.) Merr.) rotation. The study was conducted in 2016 and 2018 in Chariton County, Missouri, where CC were first established in 2012. All tested soil enzyme levels were significantly different between 2016 and 2018, irrespective of CC and no cover crop (NCC) treatments. In CC treatment, β -glucosaminidase activity was significantly greater at 0–10 cm depth in 2016 and at 10–20 and 20–30 cm in 2018. In contrast, dehydrogenase activity was significantly greater in NCC in 2018. Soil pH and organic matter (OM) content were found to be significantly greater in CC. Overall, CC have mixed effects on soil enzyme activities and positive effects on soil OM compared to NCC. This study highlights the short-term influence of CC and illustrates the high spatial and temporal variability of soil enzymes under farmer-managed fields.
机译:覆盖作物(CC)可改善土壤质量,包括土壤微生物的酶活性和土壤化学参数。在研究中心进行的科学研究表明,CC对土壤酶活性具有积极的作用。但是,文献中缺乏在农民田间进行的研究。这项研究的目的是量化在玉米(Zea mays L。)-大豆(Glycine max(L.)Merr)下,CC对土壤微生物酶活性(β-葡萄糖苷酶,β-葡萄糖苷酶,荧光素二乙酸水解酶和脱氢酶)的影响。 。) 回转。这项研究于2016年和2018年在密苏里州查里顿县进行,该研究于2012年首次建立CC。2016年至2018年之间,所有测试的土壤酶水平均存在显着差异,无论采用CC和不采用覆盖作物(NCC)处理都是如此。在CC处理中,2016年在0-10 cm深度处的β-氨基葡萄糖苷酶活性显着增加,在2018年在10-20和20-30 cm处β-氨基葡萄糖苷酶的活性显着增加。相反,2018年NCC中的脱氢酶活性显着增加。发现(OM)含量在CC中明显更高。总体而言,与NCC相比,CC对土壤酶活性具有混合作用,而对土壤OM具有积极作用。这项研究强调了CC的短期影响,并说明了在农民管理的田间土壤酶的高时空变异性。

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