AI Article Synopsis

  • The study examined the diversity of Xylariaceae and Hypoxylaceae fungi involved in decomposing leaf litter from various tree species in different climates in Japan.
  • A total of 248 fungal isolates were classified into 43 operational taxonomic units (OTUs), with no overlap between fungi from subtropical and cool temperate trees.
  • Results indicated that subtropical regions had a higher average number of fungal OTUs but lower species richness compared to cool temperate regions, along with a consistent composition of fungal OTUs across tree species within the same climate.

Article Abstract

Little is known regarding the diversity patterns of Xylariaceae and Hypoxylaceae (Ascomycota) fungi taking part in the lignin decomposition of leaf litter from different tree species and under different climatic regions. The alpha and beta diversity of Xylariaceae and Hypoxylaceae fungi was investigated on bleached leaf litter from nine subtropical and cool temperate tree species in Japan. A total of 248 fungal isolates, obtained from 480 leaves from the nine tree species, were classified into 43 operational taxonomic units (OTUs) with a 97% similarity threshold and were assigned to nine genera of Xylariaceae and Hypoxylaceae. There was no overlap of fungal OTUs between subtropical and cool temperate trees. The mean number of fungal OTUs was generally higher in subtropical than cool temperate trees, whereas rarefaction curves depicting the numbers of OTU with respect to the number of leaves from which fungi were isolated were less steep in subtropical trees than in cool temperate trees, reflecting the dominance of major OTUs in the subtropical trees and indicating a higher species richness in cool temperate regions. Nonmetric multidimensional scaling showed general overlaps of fungal OTU compositions among tree species in the respective climatic regions, and one-way permutational multivariate analysis of variance indicated that the OTU composition was not significantly different between the tree species. These results suggest a wide host range and some geographic and climatic structures of distribution of these ligninolytic fungi.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11609430PMC
http://dx.doi.org/10.3934/microbiol.2024042DOI Listing

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