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林业科学 ›› 2026, Vol. 62 ›› Issue (9): 42-52.doi: 10.11707/j.1001-7488.LYKX20260119

• 前沿热点 • 上一篇    下一篇

枣树栽培方式对枣果黑斑病和枣瘿蚊发生的影响

王铮1,赵景玲2,马荣3,梁英梅4,田呈明1,*()   

  1. 1. 北京林业大学林学院 北京100083
    2. 阿克苏地区林业发展保障中心 阿克苏 843000
    3. 新疆农业大学林学与风景园林学院 乌鲁木齐 830052
    4. 北京林业大学博物馆 北京100083
  • 收稿日期:2026-02-28 修回日期:2026-06-29 出版日期:2026-09-10 发布日期:2026-09-16
  • 通讯作者: 田呈明 E-mail:chengmt@bjfu.edu.cn
  • 基金资助:
    国家重点研发计划课题(2023YFD1401303)。

Impact of Jujube Tree Cultivation Methods on the Occurrence of Jujube Fruit Black Spot Disease and Jujube Gall Midge

Zheng Wang1,Jingling Zhao2,Rong Ma3,Yingmei Liang4,Chengming Tian1,*()   

  1. 1. College of Forestry, Beijing Forestry University Beijing 100083
    2. Xinjiang Aksu Prefecture Forestry Development Support Center Aksu 843000
    3. College of Forestry and Landscape Architecture, Xinjiang Agricultural University Urumqi 830052
    4. Beijing Forestry University Museum Beijing 100083
  • Received:2026-02-28 Revised:2026-06-29 Online:2026-09-10 Published:2026-09-16
  • Contact: Chengming Tian E-mail:chengmt@bjfu.edu.cn

摘要:

目的: 探究新疆红枣主产区不同栽培管理因子对枣果黑斑病和枣瘿蚊发生的影响,量化关键因子的作用强度,为枣树病虫害绿色精准防控提供科学依据。方法: 以新疆阿克苏、和田、喀什3个红枣产区为研究区域,选取涵盖7~20年生灰枣、骏枣、冬枣等品种以及不同株行距、土壤类型、间作、灌溉、修剪、施肥等栽培管理因子的39个枣园,采用五点取样法调查枣果黑斑病和枣瘿蚊发生情况,数据整理和统计分析使用Excel 2016和SPSS 22.0,并基于R语言lavaan包构建结构方程模型(SEM),分析各栽培管理因子对枣病虫害的直接和间接作用,同时通过卡方自由度比(χ2/df)、近似均方根误差(RMSEA)、标准化残差均方根(SRMR)、拟合优度指数(GFI)和比较适配指数(CFI)等指标评价模型拟合优度。结果: 1) 枣果黑斑病发生率受品种、树龄、土壤类型等固有属性因子及修剪、施肥、灌溉等栽培管理措施的综合影响。其中,品种是关键因子(标准化路径系数0.68);树龄是加剧病害的直接影响因子,改变修剪方式和株行距可对病害产生间接效应。精细修剪可将发病率从7.80%降至2.14%,精细施肥、规律灌溉可使发病率分别降低至2.99%、2.97%。2) 枣瘿蚊卷叶率主要受品种和修剪方式影响,灌溉类型、树龄影响不显著;施肥方式和间作类型不直接影响卷叶率,但通过修剪方式产生间接效应,而株行距直接影响卷叶率,且标准株行距时卷叶率最低(2.77%)。3) 提出定间作物(无间作或种植绿肥油菜)、定株行距(避免密植:1 m × 3 m、1 m × 4 m)、定灌溉(每25天1次,年灌溉5~8次)、定修剪(留枣头枝35~40个,12月1次、夏季抹芽每月1次)以及定施肥(年施肥3~5次)的枣园“五定”抗病虫栽培方式。结论: 枣园“五定”抗病虫栽培方式,将防控重心转向可人为调控的修剪、施肥、灌溉、株行距和间作类型等栽培管理措施,能够有效降低枣果黑斑病和枣瘿蚊发生风险,减少化学农药施用,助力南疆红枣产业绿色高质量发展。

关键词: 枣树, 栽培, 枣果黑斑病, 枣瘿蚊, 结构方程模型

Abstract:

Objective: This study aims to evaluate the impact of different cultivation management factors on the incidence of jujube black spot (Alternaria alternata) and jujube gall midge (Dasineura jujubifolia) in the main Ziziphus jujuba (red jujube) production areas of Xinjiang, and quantify the relative importance of key factors, so as to provide a scientific basis for green and precise prevention and control of jujube tree pests and diseases. Method: This study was conducted in three major red jujube production areas of Xinjiang (Aksu, Hotan, and Kashgar). Thirty-nine orchards were selected, covering jujube varieties such as Huizao, Junzao, and Dongzao with the age of 7 to 20 years-old. The orchards were subjected to different cultivation management factors such as plant spacing, soil types, intercropping, irrigation, pruning, and fertilization practices. A five-point sampling method was used to investigate the incidence of jujube black spot and jujube gall midge. Data were analyzed using Excel 2016 and SPSS 22.0, and structural equation modeling (SEM) was performed in R language with the Lavaan package to assess the direct and indirect effects of cultivation management factors on jujube pests and diseases. The goodness of model fit was evaluated using the indicators of χ2/df, root mean square error of approximation (RMSEA), standardized root mean square residual (SRMR), goodness-of-fit index (GFI), and comparative fit index (CFI). Result: 1) The incidence of jujube black spot was influenced by both intrinsic factors (variety, tree age, soil type) and cultivation practices (pruning, fertilization, irrigation), with variety being the most important factor (standardized path coefficient = 0.68). Tree age not only directly increased disease incidence, but also indirectly affected it through pruning methods and plant spacing. Precise pruning markedly reduced disease incidence from 7.80% to 2.14%, while optimized fertilization and regular irrigation further decreased incidence by 2.99% and 2.97%, respectively. 2) The leaf-curling rate of jujube gall midge was mainly influenced by cultivar and pruning method, while irrigation regime and tree age had no significant effects. Fertilization practice and intercropping type did not directly affect the leaf-curling rate, but exerted indirect effects through pruning. Planting density (spacing) showed a direct effect on the leaf-curling rate, with the lowest leaf-curling rate (2.77%) observed under the standard spacing. 3) A “Five-Standardized” cultivation strategy for pest and disease resistance in jujube orchards was proposed, including: optimized intercropping (no intercropping or green manure rape), optimized planting density (avoiding high density, 1 m×3 m, 1 m×4 m), optimized irrigation (once every 25 days, 5?8 times per year), optimized pruning (retaining 35?40 fruiting shoots, with once pruning in December, and monthly pruning in summer), and optimized fertilization (3?5 applications per year). Conclusion: The integrated “Five-Standardized” control model for pest and disease resistance in jujube orchards shifts the focus of prevention and control to cultivation management measures such as pruning, fertilization, irrigation, plant spacing and row spacing, and intercropping types, which can be artificially regulated. This method can effectively reduce the occurrence risk of jujube black spot disease and jujube gall midge, decrease the application of chemical pesticides, and facilitate the green and high-quality development of the red jujube industry in southern Xinjiang.

Key words: Ziziphus jujuba tree, cultivation, jujube black spot disease, jujube gall midge, structural equation model

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