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生态学杂志 ›› 2026, Vol. 45 ›› Issue (8): 2588-2600.doi: 10.13292/j.1000-4890.202608.013

• 研究论文 • 上一篇    下一篇

大兴安岭南麓饲草间作复种与施氮对土壤养分及微生物多样性的影响

王喆1,李立军1*,王英1,韩丽1,金浩齐1,李小龙2   

  1. 1内蒙古农业大学农学院, 呼和浩特 010019; 2阿荣旗鸿盛达农业科技服务有限公司, 内蒙古呼伦贝尔 162750)

  • 出版日期:2026-08-10 发布日期:2026-08-13

Effects of intercropping and double-cropping of forage grasses and nitrogen application on soil nutrients and microbial diversity in the southern piedmont of the Greater Khingan Mountains.

WANG Zhe1, LI Lijun1*, WANG Ying1, HAN Li1, JIN Haoqi1, LI Xiaolong2   

  1. (1College of Agriculture, Inner Mongolia Agricultural University, Hohhot 010019, China; 2Arong Banner Hongshengda Agricultural Technology Service Co., Ltd., Hulunbuir 162750, Inner Mongolia, China).

  • Online:2026-08-10 Published:2026-08-13

摘要: 为明确大兴安岭南麓黑土区饲草高效种植模式下的土壤微生态效应,本研究以饲用燕麦和饲用油菜为试验材料,采用裂区试验设计,试验第一季统一为燕麦间作油菜模式(FI),主区设置第二季燕麦单作(SO)、油菜单作(SR)、燕麦间作油菜(SI)3种复种模式;副区设置0(N0)、75(N1)、150(N2)和225(N3) kg·hm-2 4个施氮水平。基于(ITS)rDNA和16S rRNA基因测序,探究不同间作复种模式与施氮水平对土壤微生物群落特征及养分含量的影响。结果表明:(1)群落组成方面,在N2施氮下,第二季连续间作(SI)较第一季对应间作(FI)显著改变了关键菌门的相对丰度,其中,芽单胞菌门(Gemmatimonadota)和被孢菌门(Mortierellomycota)的相对丰度分别提高了9.65%和10.27%,而放线菌门(Actinobacteriota)、变形菌门(Proteobacteria)和子囊菌门(Ascomycota)则分别降低了10.91%、16.56%和3.80%。(2)群落多样性方面,种植模式与施氮水平对细菌Chao1和Shannon指数具有显著的交互效应。在各施氮水平下,第二季连续间作(SI)较第一季对应模式(FI)均提升了土壤细菌和真菌的Chao1指数,且细菌Chao1指数在SI模式的N2水平下达到最高值。Beta多样性分析表明,SI和SO模式在细菌群落结构上具有较高的相似性,表现出燕麦在间作体系下对细菌群落中的主导调控作用;LEfSe差异物种分析进一步证实,SI模式对真菌群落的特征显性类群富集效应最为显著。(3)环境因子驱动方面,Spearman相关性分析表明,假裸囊菌属(Pseudogymnoascus)与TN和NO3--N呈显著正相关,腐质霉属(Humicola)和枝孢属(Cladosporium)与NO3--N呈显著负相关。以上菌属可作为指示土壤氮素循环的微生态标志物。综上,一年两季连续间作模式结合150 kg·hm-2施氮量,在优化土壤微生物群落结构、提升群落多样性以及促进养分协同转化方面表现出显著优势。研究结果可为大兴安岭南麓高寒牧区粮饲结构调整、饲草高效生产及黑土资源可持续利用提供坚实的理论依据与技术支撑。


关键词: 饲用燕麦, 饲用油菜, 土壤, 微生物多样性, 群落结构

Abstract: To clarify the ecological consequence of efficient forage cropping patterns on soils in the black soil region of the southern foothills of the Greater Khingan Mountains, we used forage oat and forage rape as experimental materials, with a split-plot design being adopted. In the first season, the oat-rape intercropping pattern (FI) was uniformly applied. In the main plots, three double cropping patterns were deployed in the second season: oat monoculture (SO), rape monoculture (SR), and oat-rape intercropping (SI). In the subplots, four nitrogen application levels were set: 0 (N0), 75 (N1), 150 (N2), and 225 (N3) kg·hm-2. Based on ITS rDNA and 16S rRNA gene sequencing, we investigated the effects of different intercropping and double cropping patterns and nitrogen application levels on soil nutrient contents and microbial community. The results showed that: (1) In terms of community composition, under the N2 treatment, continuous intercropping in the second season (SI) significantly changed the relative abundance of key phyla compared with that in the first season (FI). Specifically, the relative abundances of Gemmatimonadota and Mortierellomycota increased by 9.65% and 10.27%, respectively, while those of Actinobacteriota, Proteobacteria, and Ascomycota decreased by 10.91%, 16.56%, and 3.80%, respectively. (2) In terms of community diversity, cropping pattern and nitrogen application level had a significant interactive effect on the bacterial Chao1 and Shannon indices. Under each nitrogen application level, continuous intercropping in the second season (SI) increased the Chao1 indices of both soil bacteria and fungi compared with that in the first season (FI). The bacterial Chao1 index reached its highest value under the N2 level of the SI pattern. SI and SO patterns had high similarity in bacterial community structure, indicating the dominant regulatory role of oat on soil bacterial community under the intercropping system. LEfSe analysis of differential species further confirmed that the SI pattern had the most significant enrichment effect on characteristic dominant taxa of soil fungal community. (3) Spearman correlation analysis showed that Pseudogymnoascus was significantly positively correlated with soil TN and NO3--N, while Humicola and Cladosporium were significantly negatively correlated with soil NO3--N. These genera can serve as microbial indicators for soil nitrogen cycling. In summary, the continuous intercropping pattern of two seasons per year combined with a nitrogen application level of 150 kg·hm-2 exhibits significant advantages in optimizing soil microbial community structure, enhancing community diversity, and promoting synergistic nutrient transformation. Our findings provide a solid theoretical basis and technical support for the adjustment of grain-forage structure, efficient forage production, and sustainable utilization of black soil resources in the high-latitude cold pastoral area of the southern foothills of the Greater Khingan Mountains.


Key words: forage oat, forage rape, soil, microbial diversity, community structure