多元化(营销策略)
生态学
物种丰富度
土地利用
生态系统
生态系统服务
农林复合经营
有机农业
农业
土地覆盖
地理
生物多样性
土壤生物多样性
群落结构
土壤功能
土壤水分
土地管理
种植
覆盖作物
环境科学
农业多样化
生物
土壤生物学
农用地
土壤碳
土壤有机质
草原
景观生态学
物种多样性
土壤生态学
β多样性
农业生物多样性
精耕细作
农业生态系统
作者
Khondoker M.G. Dastogeer,Jennifer B. Thompson,Kenzo Esquivel,Hannah Waterhouse,Patrick Baur,Daniel S. Karp,Claire Kremen,Elissa M. Olimpi,Timothy M. Bowles
标识
DOI:10.1016/j.agee.2026.110556
摘要
Soils harbor a significant proportion of Earth’s biodiversity, especially microorganisms. Yet understanding the drivers of soil microbial diversity, community composition, and interactions remains far from complete, especially in agricultural landscapes where management at multiple scales could strongly influence soil microbiomes, and in turn, where humans depend on multiple soil-based ecosystem services supported by microbes. We studied how variation in local, field-scale diversification practices (i.e. crop diversity, cover cropping, organic amendments, and reduced tillage) and proportions of different land use / land cover classes in the surrounding landscape (i.e. landscape composition) affected soil bacterial and fungal communities across organically managed lettuce fields in an intensively-managed agricultural region. Across 28 organic farms, only crop diversity positively affected metrics of soil microbial diversity, including taxonomic diversity of bacteria and ecological functional diversity of fungi, while cover cropping reduced the diversity of fungal ecological functional diversity and the metabolic richness of bacteria. All diversification practices significantly influenced the community structure of both bacteria and fungi, collectively explaining 5.6 and 8.4% of community structure variation, respectively. Surrounding landscape composition explained 1.8-fold and 1.1-fold more variation in bacterial and fungal community structure as these field-scale diversification practices. Landscape composition also affected five fungal and one bacterial metrics of diversity and richness. Field-scale diversification practices, especially crop diversity, modulated bacterial and fungal network structure, in complex ways. Our results highlight the importance of both field management and surrounding landscapes in shaping multiple aspects of soil microbial communities. Similar to aboveground ecological communities in agricultural landscapes, scales beyond the local must be considered to steward the soil microbiome.
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