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生态学杂志 ›› 2025, Vol. 44 ›› Issue (12): 4019-4030.doi: 10.13292/j.1000-4890.202512.026

• 研究报告 • 上一篇    下一篇

外源钙对马尾松ECM苗木磷营养及根际微生物群落结构的影响

庞丽1*,王云鹏2,乔志伟1,周文洋1,刘超3
  

  1. 1安顺学院农学院, 贵州安顺 561000; 2江西省科学院生物资源研究所, 南昌 330006; 3安顺学院资源与环境工程学院, 贵州安顺 561000)

  • 出版日期:2025-12-10 发布日期:2025-12-08

Effects of exogenous calcium on phosphorus nutrition and rhizosphere microbial community of ECM-associated Pinus massoniana seedlings.

PANG Li1*, WANG Yunpeng2, QIAO Zhiwei1, ZHOU Wenyang1, LIU Chao3   

  1. (1College of Agriculture, Anshun University, Anshun 561000, Guizhou, China; 2Institute of Biological Resources, Jiangxi Academy of Sciences, Nanchang 330006, China; 3College of Resources and Environmental Engineering, Anshun University, Anshun 561000, Guizhou, China).

  • Online:2025-12-10 Published:2025-12-08

摘要: 研究外源钙(Ca)对马尾松外生菌根菌共生(ECM)苗木根际微生物群落结构和土壤磷循环的影响,以期为提高ECM人工林生产力提供参考。本研究设置了对照、接种ECM菌、添加Ca、接种ECM菌+添加Ca共4个处理,采用宏基因组学分析了Ca添加对ECM苗木根际微生物群落组成的影响,采用结构方程模型分析了磷循环功能基因、微生物生物量(MBC、MBP)、胞外酶(CBH、ACP、POD)、根系参数等变量间的相互关系及影响苗木磷营养的主要因素。结果表明:(1)土壤中加入一定量的钙显著增加了ECM苗木根际放线菌门、芽孢杆菌门物种的相对丰度,主要富集了节杆菌(Arthrobacter)、分枝杆菌(Mycolicibacterium)、链霉菌(Streptomycetaceae)、芽孢杆菌(Bacillus)、红球菌(Rhodococcus)等;(2)富集的有益细菌与ECM菌协作显著增加了酸性磷酸酶(ACP)分泌,加入钙后根际微生物磷吸收转运基因pstB、无机磷溶解基因ppa、pqqC相对丰度增加,从而使ECM苗木根际MBP、苗木磷含量分别显著增加了86.21%和47.07%;(3)土壤加入钙诱导了ECM苗木直径较大(0.5 mm<RD≤2.0 mm)吸收根的萌生,苗木采取了改变根系构建和增强菌根共生的双重策略获取土壤磷养分。在磷限制条件下,加入一定量的钙能够改善土壤磷循环、促进ECM苗木对土壤磷的吸收。


关键词: 外源钙, ECM苗木, 微生物群落组成, 土壤磷循环, 植物磷营养

Abstract: We investigated the effects of exogenous calcium (Ca) on the rhizosphere microbial community structure and soil phosphorus cycling of ectomycorrhiza (ECM)associated Pinus massoniana seedlings, aiming to provide reference for improving the productivity of ECM-dominated forest plantations. There were four treatments, including control, ECM fungal inoculation, Ca addition, and ECM fungal inoculation + Ca addition. The effects of Ca addition on rhizosphere microbial community composition of ECM-associated seedlings were analyzed by metagenomics. The structural equation model (SEM) was used to analyze the relationship between phosphorus cycle functional genes, microbial biomass (MBC, MBP), extracellular enzymes (CBH, ACP, POD), and root parameters. The main factors affecting phosphorus nutrition of ECM-associated seedlings were analyzed. The results showed that: (1) Ca additions significantly increased the relative abundance of Actinobacteria and Bacillota in the rhizosphere of ECM-associated seedlings, mainly including species from Arthrobacter, Mycolicibacterium, Streptomycetaceae, Bacillus, and Rhodococcus; (2) These enriched beneficial bacteria cooperated with ECM fungi to significantly increase ACP secretion in rhizosphere. After the addition of Ca, the relative abundance of microbial phosphorus absorption and transport genes (pstB) and inorganic phosphorus dissolution genes (ppa and pqqC) increased in rhizosphere, which thereby significantly increased the rhizosphere MBP and phosphorus content of ECM-associated seedlings by 86.21% and 47.07%, respectively; (3) Ca additions increased the number of absorptive roots with larger diameter (root diameter of 0.5-2.0 mm) of ECM-associated seedlings. These seedlings adopted dual strategies of altering root architecture and enhancing mycorrhizal symbiosis to acquire soil phosphorus. Under the condition of phosphorus limitation, adding a certain amount of calcium can improve soil phosphorus cycling and promote the uptake of soil phosphorus by ECM-associated seedlings.


Key words: exogenous calcium, ECM-associated seedling, microbial community composition, soil phosphorus cycling, plant phosphorus nutrition