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April 15, 2026Annals of Microbiology0 citationsOpen Access

Long-term farming systems shape soil fungal diversity and community structure in Kenyan tropical agroecosystems

SMSusan W. MuriukiJMJulius MugweruAKAnne Kelly Kambura

Key Points

  • This research aims to evaluate the impact of various farming systems on soil fungal diversity and community structure in Kenyan tropical agroecosystems.
  • Conducted assessment after over 15 years in the Farming Systems Comparison in the Tropics trial.
  • Evaluated four farming systems: conventional high input, conventional low input, organic high input, and organic low input.
  • Collected soil samples across key crop growth stages and analyzed fungal communities using ITS-based Illumina MiSeq sequencing.
  • Applied statistical analyses for alpha and beta diversity, ordination, and differential abundance.
  • Investigated associations between fungal composition and soil chemical properties at two distinct sites.
  • Fungal community composition significantly varied by farming system, input intensity, crop growth stage, season, and site.
  • Organic systems showed higher abundances of beneficial fungal taxa such as Mortierella and Beauveria compared to conventional systems.
  • Alpha diversity differences were modest and site-dependent, while clearer patterns were noted in community composition.
  • Associations with soil chemical variables like ammonium-N and phosphorus were identified, particularly at the semi-arid site.
  • Crop growth stage and seasonal shifts impacted the relative abundance of various fungal taxa.

Abstract

Soil fungi play important roles in organic matter decomposition, nutrient cycling, and plant-soil interactions. However, their responses to contrasting farming systems, input intensity, crop phenology, and climatic variability in tropical agroecosystems remain insufficiently documented particularly in Sub-Saharan Africa where long-term datasets are scarce. This study assessed soil fungal diversity and community composition after more than 15 years of continuous management in the Farming Systems Comparison in the Tropics (SysCom) trial at two Kenyan sites representing contrasting agroecological conditions: a humid highland site (Chuka) and semi-arid site (Thika). Four farming systems were evaluated: conventional high input (Conv-High), conventional low input (Conv-Low), organic high input (Org-High), and organic low input (Org-Low). Soil samples were collected across key crop growth stages in cereal- and potato-based rotations. Fungal communities were characterized using ITS-based Illumina MiSeq sequencing and analyzed using DADA2 and phyloseq. Prior to diversity analyses, sequence data were rarefied to an equal sequencing depth to account for uneven sequencing effort (17,500 reads per sample for Chuka and 32,300 reads per sample for Thika). Alpha and beta diversity, ordination, and exploratory differential abundance analyses were conducted in relation to soil chemical properties and site conditions. Fungal community composition varied across farming systems, input intensity, crop growth stages, seasons, and sites. Differences in alpha diversity were generally modest and context-dependent across sites and seasons, whereas clearer patterns were observed in community composition. Organic systems were frequently associated with higher relative abundances of taxa such as Mortierella, Purpureocillium, Beauveria, Serendipita, and Flammulina, while conventional systems were more often associated with taxa including Fusidium, Cladosporium, Alternaria, and Wallemia. Associations between fungal community composition and soil chemical variables particularly ammonium-N, available phosphorus, and pH were detected at the semi-arid Thika site but not at the humid Chuka site, highlighting strong site-specific responses. Crop growth stage and season were also associated with shifts in the relative abundance of fungal taxa, as indicated by exploratory differential abundance analyses. This long-term study shows that soil fungal community composition in Kenyan tropical agroecosystems varies with management intensity, crop development, and site conditions. The findings underscore the importance of long-term, context-aware research for understanding how diversified nutrient management and cropping practices are associated with soil fungal community patterns in tropical farming systems.

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Cite This Study

Muriuki et al. (2026) studied this question.

synapsesocial.com/papers/69df2ae6e4eeef8a2a6afe2fhttps://doi.org/10.1186/s13213-026-01852-y
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