# Genomic Analysis of the Endophytic Stenotrophomonas Strain 169 Reveals Features Related to Plant-Growth Promotion and Stress Tolerance

**Authors:** Kristina Ulrich, Michael Kube, Regina Becker, Volker Schneck, Andreas Ulrich

PMC · DOI: 10.3389/fmicb.2021.687463 · Frontiers in Microbiology · 2021-06-16

## TL;DR

This study analyzes the genome of a plant-friendly bacteria strain, revealing its ability to boost plant growth and tolerate stress.

## Contribution

The paper identifies novel genomic features in Stenotrophomonas strain 169 linked to plant growth promotion and stress tolerance.

## Key findings

- Strain 169 promotes plant growth, especially root development, and produces high levels of auxin.
- The genome contains genes for twitching motility, biofilm formation, and stress adaptation.
- Strain 169 is non-pathogenic and distinct from related species like S. maltophilia.

## Abstract

Plant-associated Stenotrophomonas isolates have great potential for plant growth promotion, especially under stress conditions, due to their ability to promote tolerance to abiotic stresses such as salinity or drought. The endophytic strain Stenotrophomonas sp. 169, isolated from a field-grown poplar, increased the growth of inoculated in vitro plants, with a particular effect on root development, and was able to stimulate the rooting of poplar cuttings in the greenhouse. The strain produced high amounts of the plant growth-stimulating hormone auxin under in vitro conditions. The comparison of the 16S rRNA gene sequences and the phylogenetic analysis of the core genomes showed a close relationship to Stenotrophomonas chelatiphaga and a clear separation from Stenotrophomonas maltophilia. Whole genome sequence analysis revealed functional genes potentially associated with attachment and plant colonization, growth promotion, and stress protection. In detail, an extensive set of genes for twitching motility, chemotaxis, flagella biosynthesis, and the ability to form biofilms, which are connected with host plant colonization, could be identified in the genome of strain 169. The production of indole-3-acetic acid and the presence of genes for auxin biosynthesis pathways and the spermidine pathway could explain the ability to promote plant growth. Furthermore, the genome contained genes encoding for features related to the production of different osmoprotective molecules and enzymes mediating the regulation of stress tolerance and the ability of bacteria to quickly adapt to changing environments. Overall, the results of physiological tests and genome analysis demonstrated the capability of endophytic strain 169 to promote plant growth. In contrast to related species, strain 169 can be considered non-pathogenic and suitable for biotechnology applications.

## Linked entities

- **Genes:** 16S rRNA (16S ribosomal RNA) [NCBI Gene 2597965]
- **Chemicals:** indole-3-acetic acid (PubChem CID 802)
- **Species:** Stenotrophomonas sp. 169 (taxon 2770322), Stenotrophomonas chelatiphaga (taxon 517011), Stenotrophomonas maltophilia (taxon 40324)

## Full-text entities

- **Diseases:** hemolytic (MESH:D006461), bacteremia (MESH:D016470), NETs (MESH:C536657), infection (MESH:D007239)
- **Species:** P. alba [taxon 487147], Stenotrophomonas rhizophila (species) [taxon 216778], Fragaria x ananassa (strawberry, species) [taxon 3747], Xanthomonas campestris (species) [taxon 339], Phaseolus vulgaris (common bean, species) [taxon 3885], Homo sapiens (human, species) [taxon 9606], Rhizobium (genus) [taxon 379], Rhizobium etli (species) [taxon 29449], Stenotrophomonas maltophilia R551-3 (strain) [taxon 391008], Stenotrophomonas maltophilia RR-10 (strain) [taxon 1095923], Zea mays (maize, species) [taxon 4577], Stenotrophomonas sp. (species) [taxon 69392], Rhizobium sp. (species) [taxon 391], Oryza sativa (Asian cultivated rice, species) [taxon 4530], Musa acuminata (banana, species) [taxon 4641], Stenotrophomonas pavanii (species) [taxon 487698], Brassica napus (oilseed rape, species) [taxon 3708], Prunus maximowiczii (Korean cherry, species) [taxon 97306], P. nigra [taxon 75824], Microbacterium (genus) [taxon 33882], Bacteria Latreille et al. 1825 (Bacteria stick insect, genus) [taxon 629395], Solanum lycopersicum (tomato, species) [taxon 4081], Stenotrophomonas chelatiphaga (species) [taxon 517011], Populus simonii (species) [taxon 295327], Paenibacillus (genus) [taxon 44249], Xanthomonas gardneri [taxon 90270], Equisetum arvense (common horsetail, species) [taxon 3258], Stenotrophomonas maltophilia K279a (strain) [taxon 522373], Stenotrophomonas sp. AJK-9 (species) [taxon 650584], Stenotrophomonas maltophilia (species) [taxon 40324], Pseudomonas (RNA similarity group I, genus) [taxon 286]
- **Mutations:** arginine by arginine, proline starting from glutamate

## Full text

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## Figures

6 figures with captions in the complete paper: https://tomesphere.com/paper/PMC8245107/full.md

## References

132 references — full list in the complete paper: https://tomesphere.com/paper/PMC8245107/full.md

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Source: https://tomesphere.com/paper/PMC8245107