丝豆染色体水平基因组为左旋多巴的合成研究和开发提供了资源。

Shijie Hao, Qijin Ge, Yunchang Shao, Benqin Tang, Guangyi Fan, Canyu Qiu, Xue Wu, Liangwei Li, Xiaochuan Liu, Chengcheng Shi, Simon Ming-Yuen Lee
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引用次数: 1

摘要

绒毛豆,俗称丝绒豆,是左旋多巴(L-DOPA)的主要天然来源,左旋多巴作为一种精神活性药物在市场上销售,用于临床治疗帕金森病和多巴胺反应性肌张力障碍。虽然丝绒豆是一种非常重要的食品和制药植物物种,但缺乏关于该物种的遗传和基因组信息严重阻碍了其进一步的分子研究和生物技术发展。在这里,我们报道了第一个丝绒豆基因组,大小为500.49 Mb, 11条染色体编码28,010个蛋白质。豆科植物之间的基因组比较表明,丝绒豆起源于大豆进化支约29 Ma,没有特定的基因组重复。重要的是,我们在丝绒豆中发现了21个催化l-酪氨酸到L-DOPA的多酚氧化酶编码基因,两个亚家族在物种形成后在Chr3和Chr7上进行了连续扩增。有趣的是,抗病和抗病基因家族在丝绒豆中收缩,这可能与多酚氧化酶的扩增有关。本研究为具有重要经济价值的农业和药用植物丝绒豆提供了高质量的基因组参考,新报道的L-DOPA生物合成基因可为环境友好型L-DOPA生物合成加工方法的生物技术和可持续发展提供不可或缺的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chromosomal-level genome of velvet bean (Mucuna pruriens) provides resources for L-DOPA synthetic research and development.

Chromosomal-level genome of velvet bean (Mucuna pruriens) provides resources for L-DOPA synthetic research and development.

Chromosomal-level genome of velvet bean (Mucuna pruriens) provides resources for L-DOPA synthetic research and development.

Chromosomal-level genome of velvet bean (Mucuna pruriens) provides resources for L-DOPA synthetic research and development.

Mucuna pruriens, commonly called velvet bean, is the main natural source of levodopa (L-DOPA), which has been marketed as a psychoactive drug for the clinical management of Parkinson's disease and dopamine-responsive dystonia. Although velvet bean is a very important plant species for food and pharmaceutical manufacturing, the lack of genetic and genomic information about this species severely hinders further molecular research thereon and biotechnological development. Here, we reported the first velvet bean genome, with a size of 500.49 Mb and 11 chromosomes encoding 28,010 proteins. Genomic comparison among legume species indicated that velvet bean speciated ∼29 Ma from soybean clade, without specific genome duplication. Importantly, we identified 21 polyphenol oxidase coding genes that catalyse l-tyrosine to L-DOPA in velvet bean, and two subfamilies showing tandem expansion on Chr3 and Chr7 after speciation. Interestingly, disease-resistant and anti-pathogen gene families were found contracted in velvet bean, which might be related to the expansion of polyphenol oxidase. Our study generated a high-quality genomic reference for velvet bean, an economically important agricultural and medicinal plant, and the newly reported L-DOPA biosynthetic genes could provide indispensable information for the biotechnological and sustainable development of an environment-friendly L-DOPA biosynthesis processing method.

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