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Serratia liquefaciens FG3 isolated from a metallophyte plant sheds light on the evolution and mechanisms of adaptive traits in extreme environments

机译:从金属化物植物中分离出的Serratia Liquefaciens FG3揭示了极端环境中自适应性状的进化和机制

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Serratia liquefaciens strain FG3 (SlFG3), isolated from the flower of Stachytarpheta glabra in the Brazilian ferruginous fields, has distinctive genomic, adaptive, and biotechnological potential. Herein, using a combination of genomics and molecular approaches, we unlocked the evolution of the adaptive traits acquired by S1FG3, which exhibits the second largest chromosome containing the largest conjugative plasmids described for Serratia. Comparative analysis revealed the presence of 18 genomic islands and 311 unique protein families involved in distinct adaptive features. S1FG3 has a diversified repertoire of genes associated with Nonribosomal peptides (NRPs/PKS), a complete and functional cluster related to cellulose synthesis, and an extensive and functional repertoire of oxidative metabolism genes. In addition, S1FG3 possesses a complete pathway related to protocatecuate and chloroaromatic degradation, and a complete repertoire of genes related to DNA repair and protection that includes mechanisms related to UV light tolerance, redox process resistance, and a laterally acquired capacity to protect DNA using phosphorothioation. These findings summarize that SlFG3 is well-adapted to different biotic and abiotic stress situations imposed by extreme conditions associated with ferruginous fields, unlocking the impact of the lateral gene transfer to adjust the genome for extreme environments, and providing insight into the evolution of prokaryotes.
机译:Serratia Liquefaciens菌株FG3(SLFG3),从巴西铁艺场的Stachytarpheta Glabra花中分离,具有独特的基因组,适应性和生物技术潜力。在此,使用基因组学和分子方法的组合,我们解锁了S1FG3所获得的适应性性状的演变,其展示了含有用于沙拉差的最大缀合质粒的第二最大染色体。对比分析显示,存在18个基因组岛和311个独特的蛋白质家族,涉及不同的适应性特征。 S1FG3具有与非纤维素肽(NRPS / PKS)相关的多样化的基因,与纤维素合成有关的完整和功能簇,以及氧化代谢基因的广泛且功能性的曲目。此外,S1FG3具有与ProtoCateCate和氯芳族降解相关的完整途径,以及与DNA修复和保护有关的完整曲目,包括与UV光耐受,氧化还原工艺阻力和横向获取的保护DNA使用磷酸化的能力有关的机制。这些调查结果总结了SLFG3适应于与铁艺田地相关的极端条件施加的不同生物和非生物胁迫情况,解锁横向基因转移的影响调节极端环境的基因组,并提供对原核生物的演变的洞察力。

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