The wild allotetraploid sesame genome provides novel insights into evolution and lignan biosynthesis

野生异源四倍体芝麻基因组为进化和木脂素生物合成提供了新见解

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作者:Xiao Wang, Sen Wang, Qiang Lin, Jianjun Lu, Shiyou Lv, Yanxin Zhang, Xuefang Wang, Wei Fan, Wanfei Liu, Liangxiao Zhang, Xiurong Zhang, Jun You, Peng Cui, Peiwu Li

Conclusion

This study provides high-quality wild allotetraploid sesame and cultivated sesame genomes, reveals evolutionary features of the allotetraploid genome and provides novel insights into lignan synthesis pathways. Meanwhile, the wild sesame genome will be an important resource to conduct comparative genomic and evolutionary studies and plant improvement programmes.

Methods

The long-read data from PacBio Sequel II platform and high-throughput chromosome conformation capture (Hi-C) data were used to construct high-quality sesame genome. Then dissecting the molecular mechanisms of sesame evolution and lignan biosynthesis through comparative genomics and transcriptomics.

Results

We found evidence of divergent evolution that involved differences in the number, sequence and expression level of homologous genes between the two sets of subgenomes from allotetraploids in S. schinzianum, all of which might be driven by subfunctionalization after polyploidization. Furthermore, it was found that a great number of genes involved in the stress response have undergone positive selection and resulted from gene family expansion in the wild sesame genome compared with the cultivated sesame genome, which, overall, is associated with adaptative evolution to the environment. We hypothesized that the sole functional member CYP92B14 (SscC22g35272) could be associated with high content of sesamolin in wild sesame seeds.

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