[口头报告]罂粟属多物种高质量基因组揭示BIA合成通路演化的奥秘

罂粟属多物种高质量基因组揭示BIA合成通路演化的奥秘
编号:80 访问权限:仅限参会人 更新:2022-07-01 11:14:10 浏览:560次 口头报告

报告开始:2022年07月23日 16:55 (Asia/Shanghai)

报告时间:15min

所在会议:[S3] 分会场3 » [S3-1] 系统生物学与分子进化

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摘要
   For millions of years, plants evolve plenty of structurally diverse secondary metabolites (SM) to support their sessile lifestyles through continuous biochemical pathway innovation. While new genes commonly drive the evolution of plant SM pathway, how a full biosynthetic pathway evolves remains poorly understood. The evolution of pathway involves recruiting new genes along the reaction cascade forwardly, backwardly, or in a patchwork manner. With three chromosome-scale Papaver genome assemblies, we here reveal whole genome duplications (WGDs) apparently accelerate chromosomal rearrangements with a nonrandom distribution towards SM optimization. A burst of structural variants involving fusions, translocations and duplications within 7.7 million years have assembled nine genes into the benzylisoquinoline alkaloids gene cluster, following a punctuated patchwork model. Biosynthetic gene copies and their total expression matter to morphinan production. Our results demonstrate how new genes have been recruited from a WGD-induced repertoire of unregulated enzymes with promiscuous reactivities to innovate efficient metabolic pathways with spatiotemporal constraint.
 
关键字
基因组;进化;罂粟属
报告人
杨晓飞
副教授 西安交通大学

杨晓飞,博士,现为西安交通大学计算机科学与技术学院副教授,博士生导师,计算机学会生物信息专委会委员。2019年陕西省优秀博士论文。博士毕业于西安电子科技大学计算机应用技术专业。2018年10月-2019年10月在美国杰克逊实验室作访问学者。主持国家自然科学基金面上项目,青年项目、国家科技重大专项(子课题负责人)等项目,共发表学术论文30余篇包括Science, Nature Communications, Molecular Biology and Evolution 等期刊.
 

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