Fungal diversity in shade-coffee plantations in Soconusco, Mexico
- Author:
- Zarza E., López-Pastrana A., Damon A., Guillén-Navarro K. & García-Fajardo L.V.
- Year:
- 2022
- Journal:
- PeerJ
- Pages:
- 10: e13610 [23 p.]
- Url:
- http://doi.org/10.7717/peerj.13610
Background. As forested natural habitats disappear in the world, traditional, shade-
coffee plantations offer an opportunity to conserve biodiversity and ecosystem services.
Traditional coffee plantations maintain a diversity of tree species that provide shade
for coffee bushes and, at the same time, are important repositories for plants and
animals that inhabited the original cloud forest. However, there is still little information
about shade-coffee plantation’s fungal diversity despite their relevance for ecosystem
functioning as decomposers, symbionts and pathogens. Specifically, it is unknown
if and what mycorrhizae-forming fungi can be found on the branches and trunks
of coffee bushes and trees, which hold a diversity of epiphytes. Here, we evaluate
fungal communities on specific plant microsites on both coffee bushes and shade trees.
We investigate the ecological roles played by this diversity, with a special focus on
mycorrhizae-forming fungi that may enable the establishment and development of
epiphytic plants.
Methods. We collected 48 bark samples from coffee bushes and shade trees (coffee;
tree), from four plant microsites (upper and lower trunks, branches and twigs), in
two shade-coffee plantations in the Soconusco region in southern Mexico, at different
altitudes. We obtained ITS amplicon sequences that served to estimate alpha and beta
diversity, to assign taxonomy and to infer the potential ecological role played by the
detected taxa.
Results. The bark of shade trees and coffee bushes supported high fungal diversity (3,783
amplicon sequence variants). There were no strong associations between community
species richness and collection site, plant type or microsite. However, we detected
differences in beta diversity between collection sites. All trophic modes defined by
FUNGuild database were represented in both plant types. However, when looking into
guilds that involve mycorrhizae formation, the CLAM test suggests that coffee bushes
are more likely to host taxa that may function as mycorrhizae.
Discussion. We detected high fungal diversity in shade-coffee plantations in So-
conusco, Chiapas, possibly remnants of the original cloud forest ecosystem. Several
mycorrhiza forming fungi guilds occur on the bark of coffee bushes and shade trees
in this agroecosystem, with the potential of supporting epiphyte establishment and
development. Thus, traditional coffee cultivation could be part of an integrated strategy
for restoration and conservation of epiphytic populations. This is particularly relevant
for conservation of threatened species of Orchidaceae that are highly dependent on
mycorrhizae formation.
Subjects: Agricultural Science, Biodiversity, Conservation Biology, Ecology, Mycology
Keywords: ITS, Mycorrhiza, Cloud forest, Epiphytes, Chiapas, Coffea arabica.
- Id:
- 39490
- Submitter:
- zpalice
- Post_time:
- Saturday, 06 June 2026 11:46

