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Complete genome analysis of Gluconacetobacter xylinus CGMCC 2955 for elucidating bacterial cellulose biosynthesis and metabolic regulation

机译:用于阐明细菌纤维素生物合成和代谢调节的葡聚糖杆菌CGMCC 2955的完整基因组分析

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Complete genome sequence of Gluconacetobacter xylinus CGMCC 2955 for fine control of bacterial cellulose (BC) synthesis is presented here. The genome, at 3,563,314?bp, was found to contain 3,193 predicted genes without gaps. There are four BC synthase operons?(bcs), among which only bcsI is structurally complete, comprising bcsA, bcsB, bcsC, and bcsD. Genes encoding key enzymes in glycolytic, pentose phosphate, and BC biosynthetic pathways and in the tricarboxylic acid cycle were identified. G. xylinus CGMCC 2955 has a complete glycolytic pathway because sequence data analysis revealed that this strain possesses a phosphofructokinase (pfk)-encoding gene, which is absent in most BC-producing strains. Furthermore, combined with our previous results, the data on metabolism of various carbon sources (monosaccharide, ethanol, and acetate) and their regulatory mechanism of action on BC production were explained. Regulation of BC synthase (Bcs) is another effective method for precise control of BC biosynthesis, and cyclic diguanylate (c-di-GMP) is the key activator of BcsA–BcsB subunit of Bcs. The quorum sensing (QS) system was found to positively regulate phosphodiesterase, which decomposed c-di-GMP. Thus, in this study, we demonstrated the presence of QS in G. xylinus CGMCC 2955 and proposed a possible regulatory mechanism of QS action on BC production.
机译:本文介绍了用于细菌纤维素(BC)合成的细菌纤维素(BC)合成的细菌纤维素(BC)合成的完整基因组序列CGMCC 2955。发现基因组,3,563,314磅BP含有3,193个预测基因,没有间隙。有四种BC合成酶操纵子?(BCS),其中BCSI仅在结构上完成,包括BCSA,BCSB,BCSC和BCSD。鉴定了编码糖酵解,戊糖磷酸盐和BC生物合成途径和三羧酸循环中键入键酶的基因。 G. Xylinus CGMCC 2955具有完整的糖酵解途径,因为序列数据分析表明该菌株具有磷酸多碱基酶(PFK)的型基因,其在大多数BC产生菌株中不存在。此外,还结合了我们之前的结果,解释了各种碳源(单糖,乙醇和醋酸盐)的代谢数据及其对BC产量的调节机制。 BC合酶(BCS)的调节是BC生物合成的精确控制的另一种有效方法,环状的Diguantylate(C-DI-GMP)是BCS的BCSA-BCSB亚基的关键活化剂。发现仲裁感测(QS)系统用于正调节磷酸二酯酶,其分解C-DI-GMP。因此,在本研究中,我们证明了G. Xylinus CGMCC 2955中的QS的存在,并提出了对BC生产的QS作用的可能调节机制。

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