The Phyllosphere of Nigerian Medicinal Plants Euphorbia lateriflora and Ficus thonningii is inhabited by a specific Microbiota

Author:

Oaikhena Anderson O1,Coker Morenike E1,Cyril-Okoh Dorothy1,Berg Gabriele2,Okeke Iruka N1

Affiliation:

1. University of Ibadan

2. Graz University of Technology

Abstract

Abstract Background Medicinal plant microbiota is highly specific and can contribute to medicinal activity. However, the majority of plant species have not yet been studied. Here, we investigated the phyllosphere composition of two common Nigerian medicinal plants, Euphorbia lateriflora and Ficus thonningii, by a polyphasic approach combining analyses of metagenomic DNA and isolates. Results Microbial abundance estimated via qPCR using specific marker gene primers showed that all leaf samples were densely colonized with up to 108 per gram of leaf with higher bacterial and fungal abundance than Archaea. While no statistically significant differences between both plant species were found for abundance, amplicon sequencing of 16S rRNA and ITS genes revealed a distinct microbiota composition, and only seven of the 27 genera isolated were represented on both plants. We observed dominance of Sphingomonas spp. on both plants, and members of Xanthomonadaceae and Enterobacteriaceae were also found in high numbers. The most dominant fungal families on both plants were Cladosporiaceae, Mycosphaerellaceae and Trichosphaeriaceae. In addition, 225 plant-specific isolates were identified, with Pseudomonadota and Enterobacteriaceae being dominant. Interestingly, 29 isolates are likely species previously unknown, and 14 of these belong to Burkholderiales. However, a high proportion, 56% and 40% of the isolates from E. lateriflora and F. thonningii, respectively, were characterized as various Escherichia coli. The growth of most of the bacterial isolates was not influenced by extractable secondary metabolites of plants. Conclusions Our results suggest that a specific and diverse microbial community inhabits the leaves of both plants, including potentially new species and producers of antimicrobials.

Publisher

Research Square Platform LLC

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