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生态学杂志 ›› 2026, Vol. 45 ›› Issue (7): 2276-2284.doi: 10.13292/j.1000-4890.202607.007

• 研究报告 • 上一篇    下一篇

玉米/苜蓿间作对褐土微生物群落的影响

梁思维1,3,周桦楠1,杜桂娟1,3,蔡倩1,3,李娜1,3,杨姝1,3,张诗雨1,3,娄义晟1,3,刘笑彤1,崔淑艳2*,孙占祥1,3*   

  1. (1辽宁省农业科学院, 沈阳 110161; 2沈阳师范大学生命科学学院, 沈阳 110034; 3国家农业环境阜新观测实验站, 辽宁阜新 123100)

  • 出版日期:2026-07-10 发布日期:2026-07-16

Effects of maize/alfalfa intercropping on microbial communities in cinnamon soil.

LIANG Siwei1,3, ZHOU Huanan1, DU Guijuan1,3, CAI Qian1,3, LI Na1,3, YANG Shu1,3, ZHANG Shiyu1,3, LOU Yisheng1,3, LIU Xiaotong1, CUI Shuyan2*, SUN Zhanxiang1,3*   

  1. (1Liaoning Academy of Agricultural Sciences, Shenyang 110161, China; 2College of Life Science, Shenyang Normal University, Shenyang 110034, China; 3National Agricultural Experimental Station for Agricultural Environment, Fuxin 123100, Liaoning, China).
  • Online:2026-07-10 Published:2026-07-16

摘要: 玉米/苜蓿间作作为提升农田土壤生态功能的重要模式,在改善土壤结构及养分循环方面具有显著潜力。该间作系统对褐土区微生物群落结构及年际动态演替的调控机制仍不明确,尤其是不同行比配置对土壤微生物多样性的长期影响缺乏系统研究。为探究玉米/紫花苜蓿不同行比配置的农业生态效应及其年际稳定性,本研究以辽西北褐土为对象,设置玉米单作(SM)、苜蓿单作(SA)、玉米2行与苜蓿2行相邻间作(M2A2)、玉米2行与苜蓿4行相邻间作(M2A4)及玉米4行与苜蓿4行相邻间作(M4A4)5种田间种植方式,通过高通量测序,解析土壤微生物多样性与群落结构的变化。结果表明:玉米苜蓿间作显著提升了微生物多样性,并显著改变了真菌群落结构,对细菌群落组间差异不显著;玉米/苜蓿间作(M2A2、M4A4)通过提高氮素有效性等理化性质显著提升了土壤微生物多样性。本研究为辽西北优化农田生态功能的种植模式提供理论依据。


关键词: 苜蓿, 间作, 微生物群落组成, 微生物多样性, 褐土

Abstract:

Maize/alfalfa intercropping serves as an important practice for enhancing soil functions, with significant potential in improving soil structure and nutrient cycling. However, it is unclear how such intercropping system regulates microbial community structure and interannual dynamic succession in cinnamon soil regions, particularly about the long-term effects of different row ratio configurations. We investigated the effects and interannual stability of different maize/alfalfa row ratio configurations in the cinnamon soil region of northwestern Liaoning. There were five planting treatments in a field experiment, including maize monoculture (SM), alfalfa monoculture (SA), maize-2-rows/alfalfa-2-rows intercropping (M2A2), maize-2-rows/alfalfa-4-rows intercropping (M2A4), and maize-4-rows/alfalfa-4-rows intercropping (M4A4). High-throughput sequencing was employed to analyze soil microbial diversity and community structure. The results showed that maize/alfalfa intercropping significantly increased microbial diversity and altered the community structure of soil fungi, while there was no significant variation in soil bacterial community composition among treatments. The maize/alfalfa intercropping (M2A2 and M4A4) significantly enhanced soil microbial diversity by improving nitrogen availability and other physicochemical properties. In general, this study provides a theoretical basis for optimizing planting patterns to enhance farmland ecological functions in northwestern Liaoning.


Key words: alfalfa, intercropping, microbial community composition, microbial diversity, cinnamon soil