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应用生态学报 ›› 2026, Vol. 37 ›› Issue (7): 2146-2156.doi: 10.13287/j.1001-9332.202607.015

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葡萄园行间生草对土壤有机碳组分的影响

井一泽1, 汪君冶1, 张海燕1, 曹建宏1,2, 李玉强2, 王雪飞1,3, 惠竹梅1,3,4*   

  1. 1西北农林科技大学葡萄酒学院, 陕西杨凌 712100;
    2香格里拉酒业股份有限公司, 云南香格里拉 674400;
    3西北农林科技大学合阳葡萄试验示范站, 陕西渭南 715300;
    4陕西省葡萄与葡萄酒工程技术研究中心, 陕西杨凌 712100
  • 收稿日期:2025-11-12 接受日期:2026-05-18 出版日期:2026-07-18 发布日期:2027-01-18
  • 通讯作者: *E-mail: xizhumei@nwafu.edu.cn
  • 作者简介:井一泽, 男, 2000年生, 硕士研究生。主要从事葡萄园土壤管理研究。E-mail: 1113028133@qq.com
  • 基金资助:
    云南省院士专家工作站(202405AF140048)、宁夏回族自治区重点研发计划项目(2023BCF01023)和陕西省重点研发项目(2024NC-YBXM-019)资助。

Impact of vineyard inter-row cover crops on soil organic carbon fractions

JING Yize1, WANG Junye1, ZHANG Haiyan1, CAO Jianhong1,2, LI Yuqiang2, WANG Xuefei1,3, XI Zhumei1,3,4*   

  1. 1College of Enology, Northwest A&F University, Yangling 712100, Shaanxi, China;
    2Shangri-la Winery Co., Ltd., Shangri-la 674400, Yunnan, China;
    3Heyang Grape Experimental Demonstration Station, Northwest A&F University, Weinan 715300, Shaanxi, China;
    4Shaanxi Grape and Wine Engineering Center, Yangling 712100, Shaanxi, China
  • Received:2025-11-12 Accepted:2026-05-18 Online:2026-07-18 Published:2027-01-18

摘要: 葡萄园行间生草条件下土壤有机碳组分变化和积累特征是决定葡萄园土壤碳库稳定性和可持续管理的关键因素。本研究以葡萄园清耕(CK)为对照,于2022—2024年设置行间覆盖毛叶苕子(MS)、黑麦草(HM)和自然生草(ZR)3个处理,测定了0~40 cm土层土壤有机碳、理化性质、酶活性,并分析了土壤性质与有机碳组分的相关性。结果表明:与清耕相比,0~20 cm土层3个生草处理土壤有效磷、有效钾和总有机碳含量平均提高了55.6%、20.5%和5.4%;20~40 cm土层MS处理土壤铵态氮含量提高40.6%,HM处理土壤全磷含量提高9.5%,ZR处理土壤总有机碳含量提高7.1%。各生草处理0~40 cm土层土壤微生物生物量碳和溶解性有机碳含量分别增加13.5%~57.6%和30.9%~74.4%。在0~20 cm土层,MS和HM处理的土壤总体酶活性(TEA)分别增加了36.6%和45.1%,MS和HM处理的土壤碳库管理指数(CPMI)提高,ZR处理的土壤CPMI值降低;在20~40 cm土层,HM和ZR处理的TEA值显著增加、CPMI值下降,而MS处理土壤CPMI值提高。相关性分析和冗余分析表明,0~20 cm土层中硝态氮、有效钾、亮氨酸氨基肽酶及β-木糖苷酶为影响土壤有机碳组分的主要因子;而20~40 cm土层中总磷和β-木糖苷酶是影响土壤有机碳组分的主要因子。综上,连续3年的行间人工生草显著提升了葡萄园0~20 cm土层土壤养分,促进了土壤有机碳积累,并提高了土壤总体酶活性和活性有机碳含量。其中,毛叶苕子在优化土壤碳库结构方面表现最佳,可作为葡萄园行间生草实现固碳增效的备选草种。

关键词: 葡萄园, 行间生草, 土壤养分, 土壤有机碳, 土壤酶活性

Abstract: The dynamics of soil organic carbon (SOC) fractions and accumulation under inter-row cover cropping serve as fundamental determinants of soil carbon pool stability and sustainable vineyard management. We conducted an experiment with three inter-row cover crop treatments, including Vicia villosa (MS), Lolium perenne (HM), and natural grass cover (ZR), in the vineyard from 2022 to 2024, and taking clean tillage (CK) as the control, to determine the soil organic carbon fractions, physicochemical properties, enzyme activities, and the relationships between soil properties and organic carbon fractions in the 0-40 cm soil layers. The results showed that three cover crop treatments significantly increased the contents of available phosphorus, available potassium, and total organic carbon in the 0-20 cm soil layer, with increases of 55.6%, 20.5%, and 5.4%, respectively. Different treatments significantly affected soil properties in the 20-40 cm soil layer, with the MS treatment increasing ammonium content by 40.6%, the HM treatment increasing total phosphorus content by 9.5%, and the ZR treatment increasing total organic carbon content by 7.1%. In the 0-40 cm soil layer, all cover crop treatments increased the contents of soil microbial biomass carbon and dissolved organic carbon by 13.5%-57.6% and 30.9%-74.4%, respectively. In the 0-20 cm soil layer, the MS and HM treatments increased total soil enzyme activity (TEA) by 36.6% and 45.1%, respectively. The MS and HM treatments enhanced soil carbon pool management index (CPMI), while the ZR treatment diminished soil CPMI. In the 20-40 cm soil layer, the HM and ZR treatments significantly increased TEA and diminished soil CPMI, while the MS treatment enhanced soil CPMI. Correlation and redundancy analysis revealed that nitrate, available potassium, leucine aminopeptidase, and β-xylosidase were the key factors influencing the SOC fractions in the 0-20 cm soil layer. Total phosphorus and β-xylosidase were the key factors influencing the SOC fractions in the 20-40 cm soil layer. In conclusion, three consecutive years of inter-row artificial cover cropping significantly enhanced soil nutrients, promoted soil organic carbon accumulation and resulted in higher enzyme activities and active organic carbon content in the 0-20 cm soil layer of vineyards. Among the tested cover crops, V. villosa performed the best in optimizing the structure of soil carbon pool, making it a candidate species for enhancing carbon sequestration and efficiency in vineyards inter-row management.

Key words: vineyard, inter-row cover crop, soil nutrient, soil organic carbon, soil enzyme activity