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Functional Divergence in the Genus Oenococcus as Predicted by Genome Sequencing of the Newly-Described Species, Oenococcus kitaharae

机译:新描述的物种北原球菌的基因组测序预测,该球菌属的功能差异。

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摘要

Oenococcus kitaharae is only the second member of the genus Oenococcus to be identified and is the closest relative of the industrially important wine bacterium Oenococcus oeni. To provide insight into this new species, the genome of the type strain of O. kitaharae, DSM 17330, was sequenced. Comparison of the sequenced genomes of both species show that the genome of O. kitaharae DSM 17330 contains many genes with predicted functions in cellular defence (bacteriocins, antimicrobials, restriction-modification systems and a CRISPR locus) which are lacking in O. oeni. The two genomes also appear to differentially encode several metabolic pathways associated with amino acid biosynthesis and carbohydrate utilization and which have direct phenotypic consequences. This would indicate that the two species have evolved different survival techniques to suit their particular environmental niches. O. oeni has adapted to survive in the harsh, but predictable, environment of wine that provides very few competitive species. However O. kitaharae appears to have adapted to a growth environment in which biological competition provides a significant selective pressure by accumulating biological defence molecules, such as bacteriocins and restriction-modification systems, throughout its genome.
机译:北原肠球菌只是被鉴定的第二种,是工业上重要的葡萄酒细菌oenococcus oeni的近亲。为了提供对这一新物种的了解,对北原田鼠类型株DSM 17330的基因组进行了测序。两种物种的测序基因组比较表明,O。kitaharae DSM 17330的基因组包含许多在O. oeni中缺乏的具有在细胞防御中具有预测功能的基因(细菌素,抗菌素,限制性修饰系统和CRISPR基因座)。这两个基因组还似乎差异编码了与氨基酸生物合成和碳水化合物利用相关的几种代谢途径,并具有直接的表型后果。这表明这两个物种已进化出不同的生存技术以适应其特定的环境生态位。 O. oeni已经适应了在几乎没有竞争性品种的恶劣但可预测的葡萄酒环境中生存的条件。然而,北原肠杆菌似乎已经适应了生长环境,在该环境中,生物竞争通过在整个基因组中积累生物防御分子(例如细菌素和限制性修饰系统)而提供了显着的选择性压力。

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