首页> 美国卫生研究院文献>International Journal of Molecular Sciences >A Genomic Perspective on the Potential of Wild-Type Rumen Bacterium Enterobacter sp. LU1 as an Industrial Platform for Bio-Based Succinate Production
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A Genomic Perspective on the Potential of Wild-Type Rumen Bacterium Enterobacter sp. LU1 as an Industrial Platform for Bio-Based Succinate Production

机译:野生型瘤胃细菌肠杆菌潜力的基因组观点。 Lu1作为生物琥珀酸生产的基于生物的工业平台

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摘要

sp. LU1, a wild-type bacterium originating from goat rumen, proved to be a potential succinic acid producer in previous studies. Here, the first complete genome of this strain was obtained and analyzed from a biotechnological perspective. A hybrid sequencing approach combining short (Illumina MiSeq) and long (ONT MinION) reads allowed us to obtain a single continuous chromosome 4,636,526 bp in size, with an average 55.6% GC content that lacked plasmids. A total of 4425 genes, including 4283 protein-coding genes, 25 ribosomal RNA (rRNA)-, 84 transfer RNA (tRNA)-, and 5 non-coding RNA (ncRNA)-encoding genes and 49 pseudogenes, were predicted. It has been shown that genes involved in transport and metabolism of carbohydrates and amino acids and the transcription process constitute the major group of genes, according to the Clusters of Orthologous Groups of proteins (COGs) database. The genetic ability of the LU1 strain to metabolize a wide range of industrially relevant carbon sources has been confirmed. The genome exploration indicated that sp. LU1 possesses all genes that encode the enzymes involved in the glycerol metabolism pathway. It has also been shown that succinate can be produced as an end product of fermentation via the reductive branch of the tricarboxylic acid cycle (TCA) and the glyoxylate pathway. The transport system involved in succinate excretion into the growth medium and the genes involved in the response to osmotic and oxidative stress have also been recognized. Furthermore, three intact prophage regions ~70.3 kb, ~20.9 kb, and ~49.8 kb in length, 45 genomic islands (GIs), and two clustered regularly interspaced short palindromic repeats (CRISPR) were recognized in the genome. Sequencing and genome analysis of sp. LU1 confirms many earlier results based on physiological experiments and provides insight into their genetic background. All of these findings illustrate that the LU1 strain has great potential to be an efficient platform for bio-based succinate production.
机译:sp。 Lu1是源自山羊瘤胃的野生型细菌,被证明是先前研究中的潜在琥珀酸生产商。这里,获得并从生物技术的角度分析该菌株的第一个完整基因组。结合短(Illumina Miseq)和长(ONT碎片)的杂交测序方法允许我们获得尺寸的单个连续染色体4,636,526bp,平均缺少质粒的55.6%GC含量。预计总共4425个基因,包括4283个蛋白质编码基因,25个核糖体RNA(rRNA) - ,84个转移RNA(TRNA) - 以及5个非编码RNA(NCRNA) - 致编码基因和49个假生素。已经表明,根据丙烯素(COGS)数据库的簇,涉及碳水化合物和氨基酸的运输和代谢的基因和转录过程构成主要基因组。已经证实了Lu1菌株来代谢到广泛的工业相关碳源的遗传能力。基因组探索表明SP。 Lu1具有编码参与甘油代谢途径的酶的所有基因。还表明,琥珀酸盐可以作为通过三羧酸周期(TCA)的还原分支和乙醛酸途径的结转分支作为发酵的最终产物。还认识到琥珀酸盐进入生长培养基中的传输系统以及参与渗透渗透压和氧化应激的响应的基因。此外,在基因组中,三种完整的前置〜70.3kb,〜20.9kb,〜49.8kb〜49.8 kb,和两个聚类的群体定期间隙的短语重复(crispr)。 SP的测序和基因分析。 Lu1基于生理实验证实了许多前面的结果,并在其遗传背景下提供了洞察力。所有这些研究结果表明,Lu1应变具有很大的潜力,可以成为基于生物的琥珀酸盐生产的有效平台。

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