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High quality draft genome sequence of Flavobacterium rivuli type strain WB 3.3-2 T (DSM 21788 T ), a valuable source of polysaccharide decomposing enzymes

机译:黄萎病杆菌型菌株WB 3.3-2 T(DSM 21788 T)的高质量基因组草图序列,多糖分解酶的重要来源

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Flavobacterium rivuli Ali et al. 2009 emend. Dong et al. 2013 is one of about 100 species in the genus Flavobacterium (family Flavobacteriacae, phylum Bacteroidetes) with a validly published name, and has been isolated from the spring of a hard water rivulet in Northern Germany. Including all type strains of the genus Myroides and Flavobacterium into the 16S rRNA gene sequence phylogeny revealed a clustering of members of the genus Myroides as a monophyletic group within the genus Flavobacterium. Furthermore, F. rivuli WB?3.3-2 supT/sup and its next relatives seem more closely related to the genus Myroides than to the type species of the genus Flavobacterium, F. aquatile. The 4,489,248?bp long genome with its 3,391 protein-coding and 65 RNA genes is part of the G enomic E ncyclopedia of B acteria and A rchaea project. The genome of F. rivuli has almost as many genes encoding carbohydrate active enzymes (151 CAZymes) as genes encoding peptidases (177). Peptidases comprised mostly metallo (M) and serine?(S) peptidases. Among CAZymes, 30 glycoside hydrolase families, 10?glycosyl transferase families, 7 carbohydrate binding module families and 7 carbohydrate esterase families were identified. Furthermore, we found four polysaccharide utilization loci (PUL) and one large CAZy rich gene cluster that might enable strain WB 3.3-2 supT/sup to decompose plant and algae derived polysaccharides. Based on these results we propose F. rivuli as an interesting candidate for further physiological studies and the role of Bacteroidetes in the decomposition of complex polymers in the environment.
机译:小叶黄杆菌Ali等。 2009年董等。 2013年是黄杆菌属(黄杆菌科,拟杆菌门)中大约100个物种之一,名称有效地公布,并且已经从德国北部的硬水小溪的春天中分离出来。将所有类型的Myroides和Flavobacterium菌株纳入16S rRNA基因序列,系统发育揭示了Mycroes属成员的集群是Flavobacterium属中的单系统群体。此外,小叶黄萎病菌WB?3.3-2 T 及其下一个亲戚似乎与类杆菌属的关系比与黄杆菌属(F. aquatile)属的类型物种更为紧密。该基因组长4,489,248?bp,具有3,391个蛋白质编码和65个RNA基因,是B acteria和A rchaea工程基因组百科全书的一部分。小叶蚕的基因组编码碳水化合物活性酶(151 CAZymes)的基因与编码肽酶的基因(177)几乎一样多。肽酶主要包括金属(M)和丝氨酸(S)肽酶。在CAZymes中,鉴定出30个糖苷水解酶家族,10′糖基转移酶家族,7个碳水化合物结合模块家族和7个碳水化合物酯酶家族。此外,我们发现了四个多糖利用位点(PUL)和一个大型的富含CAZy的基因簇,它们可能使WB 3.3-2 T 菌株能够分解植物和藻类衍生的多糖。根据这些结果,我们建议将小叶拟南芥作为有趣的候选物,用于进一步的生理学研究以及拟杆菌在环境中复杂聚合物分解中的作用。

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