Genome assembly and resequencing shed light on evolution, population selection, and sex identification in .

Hortic Res

Key Laboratory of Cultivation and Protection for Non-Wood Forest Trees of the Ministry of Education and Key Laboratory of Non-Wood Forest Products of the Forestry Ministry, Central South University of Forestry and Technology, Shaoshan South Road, No.498, Tianxin District, Changsha, Hunan 410004, China.

Published: July 2024

AI Article Synopsis

  • The study focuses on a dioecious plant cultivated for tung oil and ornamental purposes, addressing the lack of genomic information that hinders breeding and sex identification.
  • Researchers present a chromosome-level reference genome for a male plant, revealing important insights into genome size expansion and chromosomal evolution within the Euphorbiaceae family.
  • They identify a specific genetic marker associated with sex determination and highlight potential genes linked to stress resistance and flavonoid synthesis, providing a basis for future genetic research and breeding improvements.

Article Abstract

is a dioecious plant widely cultivated for high-quality tung oil production and ornamental purposes in the Euphorbiaceae family. The lack of genomic information has severely hindered molecular breeding for genetic improvement and early sex identification in . Here, we present a chromosome-level reference genome of a male with a total size of 1.29 Gb and a contig N50 of 3.69 Mb. Genome analysis revealed that different repeat lineages drove the expansion of genome size. The model of chromosome evolution in the Euphorbiaceae family suggests that polyploidization-induced genomic structural variation reshaped the chromosome structure, giving rise to the diverse modern chromosomes. Based on whole-genome resequencing data and analyses of selective sweep and genetic diversity, several genes associated with stress resistance and flavonoid synthesis such as CYP450 genes and members of the LRR-RLK family, were identified and presumed to have been selected during the evolutionary process. Genome-wide association studies were conducted and a putative sex-linked insertion and deletion (InDel) (Chr 2: 102 799 917-102 799 933 bp) was identified and developed as a polymorphic molecular marker capable of effectively detecting the gender of . This InDel is located in the second intron of , suggesting a possible role of in sex determination in This study sheds light on the genome evolution and sex identification of , which will facilitate research on the development of agronomically important traits and genomics-assisted breeding.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11233859PMC
http://dx.doi.org/10.1093/hr/uhae141DOI Listing

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