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Identification of the Gene Responsible for Lignin-Derived Low-Molecular-Weight Compound Catabolism in

机译:鉴定负责木质素衍生的低分子量复合分解代谢的基因

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摘要

Pseudomonas sp. strain LLC-1 (NBRC 111237) is capable of degrading lignin-derived low-molecular-weight compounds (LLCs). The genes responsible for the catabolism of LLCs were characterized in this study using whole-genome sequencing. Despite the close phylogenetic relationship with Pseudomonas putida, strain LLC-1 lacked the genes usually found in the P. putida genome, which included fer, encoding an enzyme for ferulic acid catabolism, and vdh encoding an NAD+-dependent aldehyde dehydrogenase specific for its catabolic intermediate, vanillin. Cloning and expression of the 8.5 kb locus adjacent to the van operon involved in vanillic acid catabolism revealed the bzf gene cluster, which is involved in benzoylformic acid catabolism. One of the structural genes identified, bzfC, expresses the enzyme (BzfC) having the ability to transform vanillin and syringaldehyde to corresponding acids, indicating that BzfC is a multifunctional enzyme that initiates oxidization of LLCs in strain LLC-1. Benzoylformic acid is a catabolic intermediate of (R,S)-mandelic acid in P. putida. Strain LLC-1 did not possess the genes for mandelic acid racemization and oxidation, suggesting that the function of benzoylformic acid catabolic enzymes is different from that in P. putida. Genome-wide characterization identified the bzf gene responsible for benzoylformate and vanillin catabolism in strain LLC-1, exhibiting a unique mode of dissimilation for biomass-derived aromatic compounds by this strain.
机译:Pseudomonas sp。菌株LLC-1(NBRC 111237)能够降解木质素衍生的低分子量化合物(LLC)。在本研究中,使用全基因组测序表征了负责LLC分解代谢的基因。尽管与普赖达普利达玻利达具有紧密的系统发育关系,但菌株LLC-1缺乏通常在P.Putida基因组中发现的基因,其中包括FER,编码用于阿基酸分解代谢的酶,以及编码其分解代谢特异的NAD +依赖性醛脱氢酶的VDH中间体,香草蛋白。克隆和表达与Van操纵子相邻的8.5 kB轨迹,涉及过氧化酸分解代谢的Van操纵子揭示了BZF基因簇,其参与苯甲酰基酸分解代谢。鉴定的结构基因BZFC表达了能够将香草素和丁醛转化为相应酸的酶(BZFC),表明BZFC是在菌株LLC-1中引发LLC的氧化的多功能酶。苯甲酰化酸是P. Pivida中(R,S) - 曼德酸的分解中间体。菌株LLC-1没有用于伪生酸外消旋化和氧化的基因,表明苯甲酰基酸分解酵素酶的功能与P. Pivida的功能不同。基因组的表征鉴定了对菌株LLC-1中的苯甲酰胺酸胺和香草蛋白分解代谢的BZF基因,该菌株表现出用于生物质衍生的芳族化合物的独特散热模式。

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