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应用生态学报 ›› 2026, Vol. 37 ›› Issue (4): 1044-1054.doi: 10.13287/j.1001-9332.202604.019

• 研究论文 • 上一篇    下一篇

接种菌根真菌对NaCl胁迫下核桃幼苗生长及生理特性的影响

聂瑞宁1, 吴承勖1, 王锐2, 董明博3, 郑旭1, 李敖1, 姬新颖1, 孙乐园1, 苏一1, 张俊佩1*   

  1. 1中国林业科学研究院林业研究所/林木遗传育种全国重点实验室/国家林业和草原局林木培育重点实验室, 北京 100091;
    2陕西省林业科技推广与国际项目管理中心, 西安 710054;
    3商洛盛大实业股份有限公司, 陕西商洛 726109
  • 收稿日期:2025-08-26 修回日期:2026-03-09 出版日期:2026-04-18 发布日期:2026-05-29
  • 通讯作者: *E-mail: zhangjunpei@caf.ac.cn
  • 作者简介:聂瑞宁, 女, 2001年生, 硕士研究生。主要从事经济林栽培生理研究。E-mail: nieruining@163.com
  • 基金资助:
    国家重点研发计划项目(2022YFD2200402)

Effects of arbuscular mycorrhizal fungi inoculation on growth and physiological characteristics of walnut seedlings under NaCl stress

NIE Ruining1, WU Chengxu1, WANG Rui2, DONG Mingbo3, ZHENG Xu1, LI Ao1, JI Xinying1, SUN Leyuan1, SU Yi1, ZHANG Junpei1*   

  1. 1Institute of Forestry, Chinese Academy of Forestry/National Key Laboratory of Forest Tree Genetics and Breeding/Key Laboratory of Forest Tree Cultivation, National Forestry and Grassland Administration, Beijing 100091, China;
    2Shaanxi Provincial Forestry Science and Technology Promotion and International Project Management Center, Xi’an 710054, China;
    3Shangluo Shengda Industrial Co., Ltd., Shangluo 726109, Shaanxi, China
  • Received:2025-08-26 Revised:2026-03-09 Online:2026-04-18 Published:2026-05-29

摘要: 土壤盐渍化是制约农林业发展的全球性问题,利用微生物共生技术提升木本植物耐盐性是一种可持续的有效途径。为探究摩西斗管囊霉(Fm)和印度梨形孢(Pi)单接种及双接种对盐胁迫下核桃幼苗的调控机制,本研究以‘红仁核桃’实生2月龄幼苗为材料进行盆栽试验,设5个处理:1)非胁迫对照(CK),2)盐胁迫(0.8% NaCl,S),3)盐胁迫+Fm接种(S+Fm),4)盐胁迫+Pi接种(S+Pi),5)盐胁迫+FmPi双接种(S+FmPi),分别于处理后10、20、30 d测定幼苗生长指标、叶片叶绿素含量、根系抗氧化酶活性、渗透调节物质及叶片内源激素含量。结果表明:与CK相比,盐胁迫对植株的抑制效应随时间加剧,接种处理在不同时期均能有效缓解盐胁迫损伤,其中双接种表现优于单接种。处理10、20、30 d时,S+FmPi处理幼苗生物量较S处理分别提高6.6%、18.4%、24.2%;叶片叶绿素a含量分别提高43.3%、84.9%、56.5%,叶绿素b含量分别提高19.6%、107.6%、98.6%;根系超氧化物歧化酶活性分别提高40.6%、10.8%、9.7%,抗坏血酸过氧化物酶活性分别提高44.7%、57.3%、22.6%;根系丙二醛含量分别降低26.0%、28.3%、28.9%。与S处理相比,S+FmPi处理叶片吲哚乙酸含量在处理10 d时降低1.0%,20 d时升高4.0%,30 d时又降低3.3%;脱落酸含量在处理10 d时降低15.9%,20 d时升高2.0%,30 d时又降低7.9%。基于主成分综合得分计算的隶属函数值排序表明,各接种处理缓解盐胁迫的效果为S+FmPi>S+Fm>S+Pi。Fm和Pi双接种通过多途径协同调控显著增强了核桃幼苗的耐盐性,为盐渍土核桃栽培中菌根技术的应用提供了理论依据。

关键词: ‘红仁核桃’, 盐胁迫, 菌根真菌, 生理生化特征

Abstract: Soil salinization is a global problem constraining agricultural and forestry development. Utilizing micro-bial symbiosis to enhance the salt tolerance of woody plants is a sustainable and effective strategy. We conducted a pot experiment to investigate the regulatory mechanisms of single and combined inoculation with Funneliformis mosseae (Fm) and Piriformospora indica (Pi) on two-month-old ‘Red Kernel Walnut’ (Juglans regia) seedlings under salt stress. There were five treatments, including 1) non-stress control (CK), 2) salt stress (0.8% NaCl, S), 3) salt stress + Fm inoculation (S+Fm), 4) salt stress + Pi inoculation (S+Pi), and 5) salt stress + combined Fm and Pi inoculation (S+FmPi). We measured the growth parameters, chlorophyll content, antioxidant enzyme activities, osmotic regulatory substances, and endogenous hormone levels at 10, 20, and 30 days after the initiation of treatments. The results showed that the inhibitory effect of salt stress on plants intensified over time. Inoculation treatments effectively alleviated stress damage at all time points, with combined inoculation (FmPi) demonstrating superior efficacy compared to single inoculations. At 10, 20, and 30 days after treatment, compared to the salt stress group (S), the S+FmPi treatment increased seedling biomass by 6.6%, 18.4%, and 24.2%, respectively; leaf chlorophyll a content by 43.3%, 84.9%, and 56.5%, chlorophyll b content by 19.6%, 107.6%, and 98.6%; root superoxide dismutase activity by 40.6%, 10.8%, and 9.7%, and ascorbate peroxidase activity by 44.7%, 57.3%, and 22.6%; while decreased root malondialdehyde content by 26.0%, 28.3%, and 28.9%. Hormonally, compared with the salt stress group (S), combined inoculation (S+FmPi) resulted in 1.0% decrease, 4.0% increase, and 3.3% reduction in leaf indole-3-acetic acid content at 10 d, 20 d, and 30 d, respectively. Moreover, abscisic acid content was decreased by 15.9% at 10 d, increased by 2.0% at 20 d, and decreased by 7.9% at 30 d. Comprehensive evaluation using principal component analysis and membership function values ranked the alleviating effects of inoculation treatments as S+FmPi >S+Fm>S+Pi. Combined inoculation of Fm and Pi significantly enhanced salt tolerance of walnut seedlings through synergistic multi-pathway regulation. These findings would provide a theoretical foundation for applying mycorrhizal technology in walnut cultivation on saline soils.

Key words: Juglans regia ‘Robert Livermore’, salt stress, mycorrhizal fungi, physiological and biochemical cha-racteristic