Bacterial Genomics and Evolution Laboratory, CSIR-Institute of Microbial Technology, Chandigarh, India.
The Academy of Scientific and Innovative Research, Ghaziabad, India.
Curr Microbiol. 2024 Oct 24;81(12):424. doi: 10.1007/s00284-024-03950-z.
To explore the rice seed microbiome, our objective was to isolate novel strains of Xanthomonas, a plant-associated bacterium with diverse lifestyles. Four isolates, anticipated to be Xanthomonas based on morphological features of yellow colonies, were obtained from healthy rice seeds. Phylo-taxono-genomic analysis revealed that these isolates formed monophyletic lineages belonging to a novel species within the genus Luteibacter. Pairwise ortho Average Nucleotide Identity and digital DNA-DNA hybridization confirmed their distinct species status. We propose Luteibacter sahnii sp. nov. as a novel species, with PPL193 = MTCC 13290 = ICMP 24807 = CFBP 9144 as the type strain and PPL201, PPL552, and PPL554 as other constituent members. The fatty acid profile of the type strain is dominated by branched fatty acids like Iso-C, consistent with other members of the genus. The novel species displays non-pathogenic attributes and exhibits plant probiotic properties, protecting rice plants from the leaf blight pathogen X. oryzae pv. oryzae. Production of Indole-3-Acetic Acid (IAA) and genomic regions encoding anti-microbial peptides emphasize its potential contributions to plant hosts. This study underscores the importance of employing a combination of phenotypic and genotypic methods in culturomics to enhance our understanding of rice seed microbiome diversity.
为了探索水稻种子微生物组,我们的目标是分离新型黄单胞菌菌株,黄单胞菌是一种具有多种生活方式的植物相关细菌。从健康的水稻种子中获得了四个预期为黄单胞菌的菌株,这些菌株的黄色菌落形态特征。系统发育分类基因组分析表明,这些分离株形成单系分支,属于 Luteibacter 属中的一个新种。两两 Ortho Average Nucleotide Identity 和数字 DNA-DNA 杂交确认了它们的独特种地位。我们提出 Luteibacter sahnii sp. nov. 作为一个新种,PPL193 = MTCC 13290 = ICMP 24807 = CFBP 9144 作为模式菌株,PPL201、PPL552 和 PPL554 作为其他组成成员。模式菌株的脂肪酸图谱以支链脂肪酸(如 Iso-C)为主,与属中的其他成员一致。新型物种表现出非致病性特征,并表现出植物益生菌特性,可保护水稻植物免受叶枯病病原菌 X. oryzae pv. oryzae 的侵害。吲哚-3-乙酸(IAA)的产生和编码抗微生物肽的基因组区域强调了其对植物宿主的潜在贡献。这项研究强调了在培养组学中结合表型和基因型方法的重要性,以增强我们对水稻种子微生物组多样性的理解。