有机农业显著改善了赣南脐橙果园的微生物群落结构、网络复杂性和功能多样性。
Organic farming significantly improves microbial community structure, network complexity, and functional diversity in the Gannan navel orange orchard.
作者信息
Liu Lianlian, Muneer Muhammad Atif, Zhong Yanting, He Boyi, Li Xuexian
机构信息
State Key Laboratory of Nutrient Use and Management, College of Resources and Environmental Sciences, China Agricultural University, Beijing, 100193, China.
College of Resources and Environment, International Magnesium Institute, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
出版信息
BMC Microbiol. 2025 Aug 29;25(1):561. doi: 10.1186/s12866-025-04271-2.
BACKGROUND
In recent years, improper agricultural management practices have led to the loss of biodiversity and poor fruit quality in orchards. Converting conventional farming to organic farming is an environmentally responsible approach to improving sustainable fruit production. However, questions remain regarding how the microbial community responds to different farming practices in citrus trees. Specifically, this study aims to investigate how organic and conventional farming affect the microbial community structure and functional diversity in the Gannan navel orange orchard using 16S rRNA gene sequencing and Biolog Eco-Plate analysis.
RESULTS
The results showed that the soil bacterial diversity (α-diversity index) under organic farming was higher than that under conventional farming. Actinobacteria, Bacteroidetes, and Firmicutes were more abundant in root and fruit compartments under organic farming, indicating that organic farming promotes the enrichment of copiotrophic bacteria (r-strategists). Furthermore, organic farming resulted in a considerable increase in the relative abundance of Burkholderia and Streptomyces in root tissues. Interestingly, organic farming exhibited a more complex bacterial network. Biolog analysis further revealed higher functional diversity of the soil microbial community under organic farming when compared with that under conventional farming.
CONCLUSIONS
These findings provide evidence that organic farming improves the bacterial community structure and promotes microbial functional diversity in the citrus orchards, contributing to the overall health and production of the citrus crop. Synthetic microbial communities of the organic citrus orchards hold great promise for more efficient environment-friendly orchard management towards sustainable agriculture.
背景
近年来,不当的农业管理做法导致果园生物多样性丧失和果实品质不佳。将传统农业转变为有机农业是一种对环境负责的改善水果可持续生产的方法。然而,关于柑橘树中微生物群落如何响应不同的种植方式仍存在疑问。具体而言,本研究旨在利用16S rRNA基因测序和Biolog生态板分析,研究有机种植和传统种植如何影响赣南脐橙果园的微生物群落结构和功能多样性。
结果
结果表明,有机种植下的土壤细菌多样性(α-多样性指数)高于传统种植。在有机种植下,放线菌、拟杆菌和厚壁菌在根和果实部位更为丰富,这表明有机种植促进了富营养细菌(r策略者)的富集。此外,有机种植导致根组织中伯克霍尔德菌和链霉菌的相对丰度显著增加。有趣的是,有机种植表现出更复杂的细菌网络。Biolog分析进一步表明,与传统种植相比,有机种植下土壤微生物群落的功能多样性更高。
结论
这些发现证明,有机种植改善了柑橘果园的细菌群落结构,促进了微生物功能多样性,有助于柑橘作物的整体健康和产量。有机柑橘果园的合成微生物群落有望实现更高效的环境友好型果园管理,以实现可持续农业。