Haplotype-phased genome revealed the butylphthalide biosynthesis and hybrid origin of Ligusticum chuanxiong
Nie, B.; Chen, X.; Hou, Z.; Li, C.; Sun, W.; Ji, J.; Zang, L.; Yang, S.; Fan, P.; Zhang, W.; Li, H.; Tan, Y.; Li, W.; Wang, L.
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Butylphthalide, one type of phthalides, is one of the first-line drugs for ischemic stroke therapy, while no enzyme involved in its biosynthesis pathway has been reported. Here, we present the first haplotype-resolved genome of Ligusticum chuanxiong Hort., a long-cultivated and phthalide-rich medicinal plant in Apiaceae. Based on comprehensive candidate gene screening, four Fe (II)- and 2-oxoglutarate-dependent dioxygenases (2OGDs) and two CYPs were mined and further biochemically verified as phthalide C-4/C-5 desaturase (P4,5Ds) that converts senkyunolide A to l-n-butylphthalide (l-NBP) and ligustilide to butylidenephthalide. The substrate promiscuity and functional redundancy featured for P4,5Ds may contribute to the high phthalide diversity in L. chuanxiong. Notably, comparative genomic evidence supported L. chuanxiong as a diploid hybrid with L. sinense as a potential parent. The two haplotypes demonstrated exceptional structure variance and diverged around 3.42 million years ago (Ma). Our study is an icebreaker for the dissection of phthalide biosynthesis pathway and reveals the hybrid origin of L. chuanxiong. These findings will facilitate the future metabolic engineering for l-NBP production and breeding efforts for L. chuanxiong.
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