Phytopathology · 2021 · 13 citations · 65 references
<i>Stenotrophomonas maltophilia</i> is ubiquitous in diverse environmental habitats. It merits significant concern because of its increasing incidence of nosocomial and community-acquired infection in immunocompromised patients and multiple drug resistance. It is rarely reported as a phytopathogen except in causing white stripe disease of rice in India and postharvest fruit rot of Lanzhou lily. For this study, <i>Dickeya zeae</i> and <i>S. maltophilia</i> strains were simultaneously isolated from soft rot leaves of <i>Clivia miniata</i> in Guangzhou, China, and were both demonstrated to be pathogenic to the host. Compared with the <i>D. zeae</i> strains, <i>S. maltophilia</i> strains propagated faster for greater growth in lysogeny broth medium and produced no cellulases or polygalacturonases, but did produce more proteases and fewer extracellular polysaccharides. Furthermore, <i>S. maltophilia</i> strains swam and swarmed dramatically less on semisolid media, but formed a great many more biofilms. Both <i>D. zeae</i> and <i>S. maltophilia</i> strains isolated from clivia caused rot symptoms on other monocot hosts, but not on dicots. Similar to previously reported <i>S. maltophilia</i> strains isolated from other sources, the strain JZL8 survived under many antibiotic stresses. The complete genome sequence of <i>S. maltophilia</i> strain JZL8 consists of a chromosome of 4,635,432 bp without a plasmid. Pan-genome analysis of JZL8 and 180 other <i>S. maltophilia</i> strains identified 50 genes that are unique to JZL8, seven of which implicate JZL8 as the potential pathogen contributor in plants. JZL8 also contains three copies of Type I Secretion System machinery; this is likely responsible for its greater production of proteases. Findings from this study extend our knowledge on the host range of <i>S. maltophilia</i> and provide insight into the phenotypic and genetic features underlying the plant pathogenicity of JZL8.
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NCBI prokaryotic genome annotation pipeline
Tatiana Tatusova, Michael DiCuccio, Azat Badretdin et al. · Nucleic Acids Research · 2016 · 6.6K citations · Full text