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Isolation and Complete Genome Sequence of Algibacter alginolytica sp. nov., a Novel Seaweed-Degrading Bacteroidetes Bacterium with Diverse Putative Polysaccharide Utilization Loci

机译:溶藻杆菌的分离和完整基因组序列nov。,具有多种推定的多糖利用位点的新型海藻降解拟杆菌属细菌

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The members of the phylum Bacteroidetes are recognized as some of the most important specialists for the degradation of polysaccharides. However, in contrast to research on Bacteroidetes in the human gut, research on polysaccharide degradation by marine Bacteroidetes is still rare. The genus Algibacter belongs to the Flavobacteriaceae family of the Bacteroidetes , and most species in this genus are isolated from or near the habitat of algae, indicating a preference for the complex polysaccharides of algae. In this work, a novel brown-seaweed-degrading strain designated HZ22 was isolated from the surface of a brown seaweed ( Laminaria japonica ). On the basis of its physiological, chemotaxonomic, and genotypic characteristics, it is proposed that strain HZ22 represents a novel species in the genus Algibacter with the proposed name Algibacter alginolytica sp. nov. The genome of strain HZ22, the type strain of this species, harbors 3,371 coding sequences (CDSs) and 255 carbohydrate-active enzymes (CAZymes), including 104 glycoside hydrolases (GHs) and 18 polysaccharide lyases (PLs); this appears to be the highest proportion of CAZymes (~7.5%) among the reported strains in the class Flavobacteria . Seventeen polysaccharide utilization loci (PUL) are predicted to be specific for marine polysaccharides, especially algal polysaccharides from red, green, and brown seaweeds. In particular, PUL N is predicted to be specific for alginate. Taking these findings together with the results of assays of crude alginate lyases, we prove that strain HZ22~(T) can completely degrade alginate. This work reveals that strain HZ22~(T) has good potential for the degradation of algal polysaccharides and that the structure and related mechanism of PUL in strain HZ22~(T) are worth further research.
机译:拟杆菌门的成员被认为是降解多糖最重要的专家。然而,与对人体肠道中的拟杆菌的研究相反,对海洋拟杆菌降解多糖的研究仍然很少。藻杆菌属属于拟杆菌科的黄杆菌科,该属中的大多数物种是从藻类栖息地或其附近分离的,表明对藻类的复杂多糖有偏爱。在这项工作中,从褐藻(Laminaria japonica)的表面分离出了一种新型的降解褐藻的菌株HZ22。基于其生理学,化学分类学和基因型特征,提出菌株HZ22代表拟杆菌Algibacter alginolytica sp的一种新的物种。十一月HZ22菌株是该种的类型菌株,其基因组包含3,371个编码序列(CDS)和255种碳水化合物活性酶(CAZymes),包括104种糖苷水解酶(GHs)和18种多糖裂解酶(PLs);在所报道的黄杆菌属菌株中,这似乎是CAZymes的最高比例(〜7.5%)。预计有十七个多糖利用位点(PUL)对海洋多糖具有特异性,尤其是来自红色,绿色和棕色海藻的藻类多糖。特别地,预测PUL N对藻酸盐特异。结合这些发现以及粗藻酸盐裂解酶的测定结果,我们证明了菌株HZ22〜(T)可以完全降解藻酸盐。这项工作表明,菌株HZ22〜(T)具有降解藻类多糖的良好潜力,并且菌株HZ22〜(T)中PUL的结构和相关机理值得进一步研究。

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