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April 12, 2026Journal of the Saudi Society of Agricultural Sciences0 citationsOpen Access

High variability in spore infectivity and factors influencing native arbuscular mycorrhizal fungi diversity in Côte d’Ivoire cacao rhizospheres

KDKouadio meliton DjezouSLSabine-Karen LammogliaPJPatrick Jagoret

Key Points

  • The study aims to evaluate the diversity and abundance of arbuscular mycorrhizal fungi in cacao rhizospheres and how they relate to soil and climatic factors.
  • Collected soil samples from 66 cocoa plots in Côte d’Ivoire
  • Extracted and identified AMF spores based on morphometric criteria
  • Performed trap cultures to assess the capacity of native AMF strains
  • Analyzed soil samples for chemical properties
  • Dominance of Glomeraceae and Acaulosporaceae families in AMF communities
  • Highest spore abundance observed at Ble (103 ± 47 spores/100 g soil)
  • Agnibilekrou and Biankouma showed the highest sporulation capacity
  • Soubré strains demonstrated the strongest infective capacity
  • Soil chemistry explained 18.49% of AMF community variance, with significant drivers including Mn, Zn, Cr, and precipitation.

Abstract

Abstract Arbuscular mycorrhizal fungi (AMF) play a central role in enhancing nutrient uptake by plants, increasing resilience to biotic and abiotic stresses, and supporting proper functioning of tropical agroecosystems, such as cacao plantations. However, little is known about diversity and capacity of native strains in rhizospheres, as well as soil factors shaping AMF communities. This study aimed to assess (i) AMF diversity and abundance in cocoa rhizospheres and the relationship with soil chemical properties and climatic variables at seven distinct areas in Côte d’Ivoire, i.e., Adzope, Agnibilekrou, Azaguie, Biankouma, Ble, Bonon and Soubre; (ii) in-situ capacity of strains from these rhizospheres. Soil samples were collected in 66 cocoa plots and AMF spores were extracted and identified based on morphometric criteria. Part of soils was used for trap cultures, while another part was used for determination of chemical properties. Our findings indicate that fungal communities associated with cacao are dominated by families Glomeraceae and Acaulosporaceae. Before establishment of trap cultures, cacao rhizospheres showed highest spore abundance at Ble (103 ± 47 spores/100 g soil) and lowest abundance at Biankouma (47.3 ± 21.6 spores/100 g soil). AMF strains from Agnibilekrou and Biankouma soils showed highest quantitative sporulation capacity, whereas strains from Soubré soils exhibited strongest infective capacity. 18.49% of variance in AMF community is explained by soil chemical variables, whereas 5.32% is explained by climatic variables, with Mn, Zn, Cr, and precipitation as main drivers. This study highlighted that a clear understanding of AMF communities in cocoa rhizospheres is essential to facilitate the design of efficient soil and plant conservation strategies, thus ensuring the sustainability and long-term productivity of cocoa agroecosystems in Côte d’Ivoire.

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Cite This Study

Djezou et al. (2026) studied this question.

synapsesocial.com/papers/69db38534fe01fead37c689fhttps://doi.org/10.1007/s44447-026-00155-7
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