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April 20, 2026Applied Soil Ecology0 citationsOpen Access

Towards a global core mycobiome of banana (Musa spp.)

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ACAnna-Belle C. ClarkeCAChristine Rose AnsaleLBLoren Banayag

Key Points

  • The aim is to identify core fungal taxa in banana mycobiomes across different countries to enhance sustainable production.
  • Used ITS2 metabarcoding to analyze fungal communities in bulk soil and ectorhizosphere.
  • Sampled a single banana cultivar from 24 sites across six countries.
  • Established prevalence-abundance criteria to identify core taxa.
  • Identified 59 core fungal taxa representing <1% of detected OTUs.
  • Core taxa accounted for up to 83% of total community relative abundance.
  • Showed concordance with the previously established core in Australia, indicating stability.

Abstract

Bananas ( Musa spp.) are a staple for more than 400 million people and a major global commodity, yet production remains highly vulnerable to disease. Although healthy plants host diverse fungal communities, high diversity and strong site-to-site compositional turnover hinder efforts to understand and manage these mycobiomes. Identifying taxa that consistently persist across environments may therefore help prioritise targets for further investigation. We used ITS2 metabarcoding of bulk soil and the ectorhizosphere from a single banana cultivar grown in distinct plantation soils across six countries spanning Africa, Asia, and Australia. Across 24 sites, we identified 59 core fungal taxa that met prevalence–abundance criteria across multiple sites and compartments. Despite representing <1% of detected OTUs, these taxa accounted for up to 83% of total community relative abundance and showed strong concordance with our previously reported national core in Australia, indicating spatial and temporal stability. This curated multi-country core assemblage provides a tractable set of taxa for isolation and functional characterisation and establishes a shared reference for sequence-based tracking across studies, supporting future investigation of microbiome-informed approaches for sustainable banana production. • A core banana mycobiome was identified across 24 farms in multiple countries. • Core members persist across continents, soils, and plant compartments. • Core members dominate banana-associated microbial communities. • The core mycobiome is a key resource for targeted microbiome management. • Findings are relevant to farmers worldwide, including resource-limited regions.

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Cite This Study

Clarke et al. (2026) studied this question.

synapsesocial.com/papers/69e5c2d003c2939914028da8https://doi.org/10.1016/j.apsoil.2026.107040
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