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Chromosome-Level Reference Genome Assembly Provides Insights Into C21 Steroid Saponins Biosynthesis in Cynanchum
Xiao-Yan Ye1,2, Yu-Wei Zhang1,2, Yu-Qing Feng1,2
1Engineering Research Center of Tropical and Subtropical Aquatic Ecological Engineering, Ministry of Education, Key Laboratory of Eutrophication and Red Tide Prevention of Guangdong Higher Education Institutes, Department of Ecology, Jinan University, Guangzhou, China.
Abstract:
Cynanchum atratum, a perennial medicinal plant belonging to the genus Cynanchum in the Apocynaceae family, is rich in C21 steroidal saponins. This study presented a chromosome-level genome assembly of C. atratum using PacBio long-read sequencing technology. The assembly resulted in a 361.85 Mb genome with a contig N50 of 5.13 Mb, of which 86.55% was scaffolded into 11 pseudochromosomes. Among the 18 871 predicted protein-coding genes, 98.3% have been functionally annotated. Comparative genomic analyses reveal the evolutionary dynamics of C. atratum and a notable contrast between contracted and expanded gene families. Transcriptome sequencing was performed using root, stem, and leaf samples collected in August from 1- and 2-year-old plants. LC-MS quantification across 4 months revealed that leaves were the main accumulation tissue of cynatratoside-C (CyC), and the highest content was detected in leaves of 2-year-old plants in October. cynatratoside-C correlation of metabolite content with gene expression patterns led to the identification of 11 CYP and 16 UGT genes potentially involved in the biosynthesis of CyC, and as well as a putative biosynthetic gene cluster on chromosome 3. Based on the genome and transcriptome, a putative biosynthetic pathway for CyC was further proposed.
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