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Kinetic Parameters of Soil Enzymes and Temperature Sensitivity Under Different Mulching Practices in Apple Orchards

作者:Yaokun Jiang, Huike Li, Meng Liang, Yang Wu, Ziwen Zhao, Yuanze Li, Guobin Liu, Sha Xue · 发表于:Agronomy · 年份:2025 · DOI:10.3390/agronomy15030617 · 被引用次数:8 · 研究领域:Soil Carbon and Nitrogen Dynamics、Horticultural and Viticultural Research、Agriculture, Soil, Plant Science

Soil mulching practices in apple orchards offer an effective solution to combat declining soil quality, restore land productivity, and boost apple yield. The kinetic parameters of soil enzymes, specifically the maximum reaction rate (Vmax) and the Michaelis constant (Km), are critical indicators of enzyme activity, while the temperature sensitivity (Q10) reflects the thermal stability of the enzymatic reaction system. However, the effects of different mulching practices on soil enzyme kinetic parameters and their temperature sensitivity remain poorly understood, and there is no consensus regarding the most effective mulching strategies for soil conservation. To address this gap, we focused on a typical apple orchard ecosystem in the Loess Plateau region and investigated the responses of soil enzyme kinetic parameters and their temperature sensitivity to various mulching practices, including different cover materials, grass species for cover crops, and cover duration. Our results show that, among the mulching practices, both ryegrass (RE) and maize straw significantly enhanced the maximum enzyme catalytic reaction rates (Vmax) and catalytic efficiency (Kcat) of β-glucosidase (BG), N-acetyl-β-glucosaminidase (NAG), and alkaline phosphatase (ALP). In contrast, black fabric (BF) reduced the temperature sensitivity of the enzyme system by decreasing Vmax and Kcat. Among the grass species used for cover, crown vetch (CV) had the most pronounced effect on Vmax, while long-term grass...