首页> 外文期刊>Molecules >Riboflavin Accumulation and Molecular Characterization of cDNAs Encoding Bifunctional GTP Cyclohydrolase II/3,4-Dihydroxy-2-Butanone 4-Phosphate Synthase, Lumazine Synthase, and Riboflavin Synthase in Different Organs of Lycium chinense Plant
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Riboflavin Accumulation and Molecular Characterization of cDNAs Encoding Bifunctional GTP Cyclohydrolase II/3,4-Dihydroxy-2-Butanone 4-Phosphate Synthase, Lumazine Synthase, and Riboflavin Synthase in Different Organs of Lycium chinense Plant

机译:枸杞植物不同器官中双功能GTP环水解酶II / 3,4-二羟基-2-丁酮4-磷酸合酶,鲁马津合酶和核黄素合酶的核黄素积累和分子表征

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Riboflavin (vitamin B2) is the precursor of flavin mononucleotide and flavin adenine dinucleotide—essential cofactors for a wide variety of enzymes involving in numerous metabolic processes. In this study, a partial-length cDNA encoding bifunctional GTP cyclohydrolase II/3,4-dihydroxy-2-butanone-4-phosphate synthase (LcRIBA), 2 full-length cDNAs encoding lumazine synthase (LcLS1 and LcLS2), and a full-length cDNA encoding riboflavin synthase (LcRS) were isolated from Lycium chinense, an important traditional medicinal plant. Sequence analyses showed that these genes exhibited high identities with their orthologous genes as well as having the same common features related to plant riboflavin biosynthetic genes. LcRIBA, like other plant RIBAs, contained a DHBPS region in its N terminus and a GCHII region in its C-terminal part. LcLSs and LcRS carried an N-terminal extension found in plant riboflavin biosynthetic genes unlike the orthologous microbial genes. Quantitative real-time polymerase chain reaction analysis showed that 4 riboflavin biosynthetic genes were constitutively expressed in all organs examined of L. chinense plants with the highest expression levels found in the leaves or red fruits. LcRIBA, which catalyzes 2 initial reactions in riboflavin biosynthetic pathway, was the highest transcript in the leaves, and hence, the richest content of riboflavin was detected in this organ. Our study might provide the basis for investigating the contribution of riboflavin in diverse biological activities of L. chinense and may facilitate the metabolic engineering of vitamin B2 in crop plants.
机译:核黄素(维生素B2)是黄素单核苷酸和黄素腺嘌呤二核苷酸的前体,黄素单核苷酸和黄素腺嘌呤二核苷酸是参与许多代谢过程的多种酶的重要辅助因子。在这项研究中,部分长度的cDNA编码双功能GTP环水解酶II / 3,4-二羟基-2-丁酮-4-磷酸合酶(LcRIBA),2个全长的cDNA编码azine嗪合酶(LcLS1和LcLS2),以及一个完整的从重要的传统药用植物枸杞中分离出编码核黄素合酶(LcRS)的全长cDNA。序列分析表明,这些基因与其直系同源基因具有高度同一性,并且具有与植物核黄素生物合成基因相关的相同特征。与其他植物RIBA一样,LcRIBA在其N端包含一个DHBPS区,在其C端部分包含一个GCHII区。与直系同源微生物基因不同,LcLSs和LcRS带有植物核黄素生物合成基因中的N端延伸。实时定量聚合酶链反应分析表明,在所检查的L. chinense植物的所有器官中,组成型表达了4个核黄素生物合成基因,在叶片或红色果实中发现的表达水平最高。 LcRIBA催化核黄素生物合成途径中的2个初始反应,是叶片中最高的转录本,因此在该器官中检测到了最丰富的核黄素含量。我们的研究可能为研究核黄素在中华绒螯蟹的多种生物活性中的作用提供基础,并可能促进作物植物中维生素B2的代谢工程。

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