Revealing evolution of tropane alkaloid biosynthesis by analyzing two genomes in the Solanaceae family

莨菪碱 托烷 颠茄 生物 茄科 基因组 遗传学 基因 植物 神经科学
作者
Fangyuan Zhang,Fei Qiu,Junlan Zeng,Zhichao Xu,Yueli Tang,Tengfei Zhao,Yuqin Gou,Fei Su,Shiyi Wang,Xiuli Sun,Zheyong Xue,Weixing Wang,Chunxian Yang,Lingjiang Zeng,Xiaozhong Lan,Min Chen,Junhui Zhou,Zhihua Liao
出处
期刊:Nature Communications [Springer Nature]
卷期号:14 (1) 被引量:45
标识
DOI:10.1038/s41467-023-37133-4
摘要

Tropane alkaloids (TAs) are widely distributed in the Solanaceae, while some important medicinal tropane alkaloids (mTAs), such as hyoscyamine and scopolamine, are restricted to certain species/tribes in this family. Little is known about the genomic basis and evolution of TAs biosynthesis and specialization in the Solanaceae. Here, we present chromosome-level genomes of two representative mTAs-producing species: Atropa belladonna and Datura stramonium. Our results reveal that the two species employ a conserved biosynthetic pathway to produce mTAs despite being distantly related within the nightshade family. A conserved gene cluster combined with gene duplication underlies the wide distribution of TAs in this family. We also provide evidence that branching genes leading to mTAs likely have evolved in early ancestral Solanaceae species but have been lost in most of the lineages, with A. belladonna and D. stramonium being exceptions. Furthermore, we identify a cytochrome P450 that modifies hyoscyamine into norhyoscyamine. Our results provide a genomic basis for evolutionary insights into the biosynthesis of TAs in the Solanaceae and will be useful for biotechnological production of mTAs via synthetic biology approaches. Tropane alkaloids (TAs) are synthesized by some species in Solanaceae. Here, the authors assemble the genomes of two representative TAs producing species, show that gene loss shapes uneven distribution of TAs in Solanaceae, and identify a cytochrome P450 gene catalyzing N-demethylation of hyoscyamine to generate norhyoscyamine.
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