Genome-enabled discovery of anthraquinone biosynthesis in Senna tora

Author:

Kang Sang-HoORCID,Pandey Ramesh Prasad,Lee Chang-Muk,Sim Joon-Soo,Jeong Jin-Tae,Choi Beom-Soon,Jung Myunghee,Ginzburg DanielORCID,Zhao Kangmei,Won So Youn,Oh Tae-Jin,Yu Yeisoo,Kim Nam-Hoon,Lee Ok Ran,Lee Tae-Ho,Bashyal Puspalata,Kim Tae-SuORCID,Lee Woo-Haeng,Hawkins CharlesORCID,Kim Chang-KugORCID,Kim Jung SunORCID,Ahn Byoung Ohg,Rhee Seung YonORCID,Sohng Jae KyungORCID

Abstract

AbstractSenna tora is a widely used medicinal plant. Its health benefits have been attributed to the large quantity of anthraquinones, but how they are made in plants remains a mystery. To identify the genes responsible for plant anthraquinone biosynthesis, we reveal the genome sequence of S. tora at the chromosome level with 526 Mb (96%) assembled into 13 chromosomes. Comparison among related plant species shows that a chalcone synthase-like (CHS-L) gene family has lineage-specifically and rapidly expanded in S. tora. Combining genomics, transcriptomics, metabolomics, and biochemistry, we identify a CHS-L gene contributing to the biosynthesis of anthraquinones. The S. tora reference genome will accelerate the discovery of biologically active anthraquinone biosynthesis pathways in medicinal plants.

Funder

National Science Foundation

U.S. Department of Health & Human Services | National Institutes of Health

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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