Unravelling the genomic and functional arsenal of Bacilli endophytes from plants with different lifestyles and their antimicrobial potential

Endophytic microbiomes of c rop w ild r elatives (CWRs) adapted to extreme environments, such as halophytes, are promising sources of plant-beneficial bacteria and secondary metabolites for sustainable food production. Here, we analysed 25 Bacilli isolates obtained from CWRs, halophytes and other plant species in Crete, Greece. Using a hybrid Illumina–PacBio sequencing approach, we generated high-quality genomes and performed comparative genomics, phylogenetic and pangenome analyses, complemented by in vitro assays. We identified 312 b iosynthetic g ene c lusters (BGCs), nearly 60% of which showed no similarity to known clusters, revealing extensive unexplored biosynthetic potential. These unique BGCs may constitute an adaptive feature enabling endophytic Bacilli to colonize and interact with host plants. The isolates spanned diverse genera ( Bacillus , Paenibacillus , Peribacillus , Neobacillus , Cytobacillus and Rossellomorea ), including three novel species. Phenotypic assays of our isolates demonstrated high salinity tolerance (up to 17.5% wt/v NaCl) and strong antagonism against major bacterial and fungal phytopathogens. Genome mining further revealed a broad array of putatively plant-beneficial traits related to growth promotion, stress adaptation, host interaction and inhibition of pathogens. Together, these findings show that Bacilli endophytes from wild and halophytic plants possess exceptional phylogenetic novelty, functional diversity and biosynthetic capacity, providing new genomic and ecological insights into Bacilli associated with plants inhabiting extreme environments.

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Publication Details

Journal
Microbial Genomics
Published
2026-09-24
DOI
https://doi.org/10.1099/mgen.0.001801
Primary Topic
Plant-Microbe Interactions and Immunity
Type
article
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article

Unravelling the genomic and functional arsenal of Bacilli endophytes from plants with different lifestyles and their antimicrobial potential

Savvas Paragkamian, Franziska Reden, Alexandros Stamatakis, Nikolaos Arapitsas et al.
Microbial Genomics
Plant-Microbe Interactions and Immunity
article

Unravelling the genomic and functional arsenal of Bacilli endophytes from plants with different lifestyles and their antimicrobial potential

Savvas Paragkamian, Franziska Reden, Alexandros Stamatakis, Nikolaos Arapitsas, Panagiotis F. Sarris, Stefanos K. Soultatos, Christos A. Christakis, Emmanouil A. Markakis, Chrysianna Psarologaki, Emmanouil Avramakis
article en

Abstract

Endophytic microbiomes of c rop w ild r elatives (CWRs) adapted to extreme environments, such as halophytes, are promising sources of plant-beneficial bacteria and secondary metabolites for sustainable food production. Here, we analysed 25 Bacilli isolates obtained from CWRs, halophytes and other plant species in Crete, Greece. Using a hybrid Illumina–PacBio sequencing approach, we generated high-quality genomes and performed comparative genomics, phylogenetic and pangenome analyses, complemented by in vitro assays. We identified 312 b iosynthetic g ene c lusters (BGCs), nearly 60% of which showed no similarity to known clusters, revealing extensive unexplored biosynthetic potential. These unique BGCs may constitute an adaptive feature enabling endophytic Bacilli to colonize and interact with host plants. The isolates spanned diverse genera ( Bacillus , Paenibacillus , Peribacillus , Neobacillus , Cytobacillus and Rossellomorea ), including three novel species. Phenotypic assays of our isolates demonstrated high salinity tolerance (up to 17.5% wt/v NaCl) and strong antagonism against major bacterial and fungal phytopathogens. Genome mining further revealed a broad array of putatively plant-beneficial traits related to growth promotion, stress adaptation, host interaction and inhibition of pathogens. Together, these findings show that Bacilli endophytes from wild and halophytic plants possess exceptional phylogenetic novelty, functional diversity and biosynthetic capacity, providing new genomic and ecological insights into Bacilli associated with plants inhabiting extreme environments.

Microbial GenomicsVol. 12(9)
Karlsruhe Institute of Technology (DE), University of Crete (GR), University of Exeter (GB), Mediterranean University (ME), Hellenic Mediterranean University (GR), Heidelberg Institute for Theoretical Studies (DE), Foundation for Research and Technology Hellas (GR)
Zero hunger
Openalex Percentile: Top 13%
Plant-Microbe Interactions and Immunity
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