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Transcriptome Profiles of Alternaria oxytropis Provides Insights into Swainsonine Biosynthesis

机译:氧化链格孢菌的转录组谱提供了对Swainsonine生物合成的见解

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摘要

Swainsonine (SW) is a toxic alkaloid biosynthesized by the endophytic fungus Alternaria oxytropis in Oxytropis glabra. The biosynthetic pathway of SW is poorly understood. Saccharopine reductase/dehydrogenase of fungus plays an important role in this pathway. The gene knocked out mutant M1 in A. oxytropis was constructed in our previous work. In this study, the transcriptome of wild-strain OW7.8 and M1 was firstly sequenced to understand the biosynthetic pathway and molecular mechanism of SW in A. oxytropis. A total of 45,634 Unigenes were annotated. 5 genes were up-regulated and 11,213 genes were down-regulated. 41 Unigenes possibly related to the biosynthesis of SW were identified by data analyzing. The biosynthesis pathway of SW in the fungus was speculated, including two branches of P6C and P2C. Delta1-piperidine-2-carboxylate reductase, lysine 6-dehydrogenase, and saccharopine oxidase/L-pipecolate oxidase were involved in P6C. 1-piperidine-2-carboxylate/1-pyrroline-2- carboxylate reductase [NAD(P)H] and delta1-piperidine-2-carboxylate reductase were involved in P2C. Saccharopine reductase was involved in both. In addition, 1-indolizidineone was considered to be the direct precursor in the synthesis of SW, and the hydroxymethylglutaryl-CoA lyase catalyzed the synthesis of SW. Here we analyzed details of the metabolic pathway of A. oxytropis SW, which is of great significance for the follow-up research.
机译:Swainsonine(SW)是一种有毒生物碱,由内生真菌Oxytropis glabra中的内生真菌Alternaria oxytropis合成。 SW的生物合成途径了解甚少。真菌的糖精还原酶/脱氢酶在该途径中起重要作用。在我们以前的工作中,构建了在嗜氧性曲霉中敲除突变体M1的基因。本研究首先对野生菌株OW7.8和M1的转录组进行了测序,以了解嗜氧假单胞菌SW的生物合成途径和分子机制。总共注释了45,634个Unigene。上调了5个基因,下调了11,213个基因。通过数据分析鉴定了41种可能与SW的生物合成有关的单基因。推测了SW在真菌中的生物合成途径,包括P6C和P2C的两个分支。 P6C涉及Delta1-哌啶-2-羧酸还原酶,赖氨酸6-脱氢酶和糖碱氧化酶/ L-哌考特氧化酶。 P2C涉及1-哌啶-2-羧酸/ 1 /吡咯啉-2-羧酸还原酶[NAD(P)H]和δ1-哌啶-2-羧酸还原酶。糖精还原酶均参与其中。另外,1-吲哚并吡啶酮被认为是SW合成的直接前体,并且羟甲基戊二酰辅酶A裂解酶催化SW的合成。在这里,我们分析了嗜氧曲霉SW的代谢途径的细节,这对于后续研究具有重要意义。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Xin Li; Ping Lu;

  • 作者单位
  • 年(卷),期 -1(9),-1
  • 年度 -1
  • 页码 6021
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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