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基因组测序揭示新型深海细菌WPAGA1复杂的多糖降解能力

Genome Sequencing Reveals the Complex Polysaccharide-Degrading Ability of Novel Deep-Sea Bacterium WPAGA1.

作者信息

Gao Boliang, Jin Min, Li Li, Qu Wu, Zeng Runying

机构信息

School of Life Sciences, Xiamen UniversityXiamen, China.

State Key Laboratory Breeding Base of Marine Genetic Resource, Third Institute of Oceanography, SOAXiamen, China.

出版信息

Front Microbiol. 2017 Apr 10;8:600. doi: 10.3389/fmicb.2017.00600. eCollection 2017.

Abstract

strain WPAGA1 is a Gram-negative, polysaccharide-degrading bacterium isolated from the marine sediment of the West Pacific Ocean. This strain is a cosmopolitan marine bacterium that uses complex polysaccharides as exclusive source of carbon and energy and plays a key role in the marine carbon cycle. Genome sequence analysis of strain WPAGA1 revealed that the assembled fine genome contains 6,610,326 bp with 32.89% G+C content, 5036 open reading frames (ORFs) and abundant genomic elements. Amongst these ORFs, 1022 genes encoding carbohydrate enzymes were found in the WPAGA1 genome. In addition, abundant putative enzymes involved in degrading polysaccharide were found. These enzymes include amylase, xylosidase, cellulase, alginate lyase, pectate lyase, rhamnogalacturonan lyase, chitinase, carrageenase, heparinase and fucosidase. To further investigate the use of these polysaccharides in strain WPAGA1, a schematic of various polysaccharide-degrading metabolic pathways were deduced from the genome sequence. This study showed that strain WPAGA1 may serve as a potential candidate for research of glycometabolism and have potential biotechnological and industrial applications and play key roles in the marine carbon cycle.

摘要

菌株WPAGA1是一种革兰氏阴性、可降解多糖的细菌,从西太平洋海洋沉积物中分离得到。该菌株是一种广泛分布的海洋细菌,以复杂多糖作为唯一的碳源和能源,在海洋碳循环中发挥关键作用。对菌株WPAGA1的基因组序列分析表明,组装后的精细基因组包含6,610,326 bp,G+C含量为32.89%,有5036个开放阅读框(ORF)以及丰富的基因组元件。在这些ORF中,WPAGA1基因组中发现了1022个编码碳水化合物酶的基因。此外,还发现了大量参与降解多糖的推定酶。这些酶包括淀粉酶、木糖苷酶、纤维素酶、海藻酸裂解酶、果胶酸裂解酶、鼠李糖半乳糖醛酸聚糖裂解酶、几丁质酶、卡拉胶酶、肝素酶和岩藻糖苷酶。为了进一步研究菌株WPAGA1中这些多糖的利用情况,从基因组序列推导出了各种多糖降解代谢途径的示意图。本研究表明,菌株WPAGA1可能作为糖代谢研究的潜在候选对象,具有潜在的生物技术和工业应用价值,并在海洋碳循环中发挥关键作用。

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