The tetraploid Camellia oleifera genome provides insights into evolution, agronomic traits, and genetic architecture of oil Camellia plants

油茶 生物 山茶花 遗传建筑学 基因组 生物技术 植物 遗传学 基因 数量性状位点
作者
Lin Zhang,Shi Yan,Wenfang Gong,Guang Zhao,Shixin Xiao,Hai Lin,Yanmin Li,Zhenyang Liao,Shengcheng Zhang,Guanxing Hu,Ziqi Ye,Haifeng Wang,Zhiqiang Xia,Yekun Yang,Heping Cao,Shiqi Zhong,Xingtan Zhang,Deyi Yuan
出处
期刊:Cell Reports [Cell Press]
卷期号:43 (11): 114902-114902 被引量:3
标识
DOI:10.1016/j.celrep.2024.114902
摘要

Camellia oleifera is an economically important woody oil plant. Complex ploidy and lack of genomic information have seriously hindered the molecular breeding of C. oleifera. Here, we present an 11.43-Gb haplotype-resolved, chromosome-level genome assembly of tetraploid C. oleifera (COL-tetra). Methods employed in this study support the conclusion that COL-tetra is an autotetraploid and probably originates from genome doubling of the diploid C. brevistyla. In addition, DNA methylation plays a significant role in imbalanced allelic expression and seed development. Genetic divergence analyses reveal significant differentiation signals for flowering time between spring-flowering and autumn-flowering oil Camellia species, which probably account for reproductive isolation between species with distinct flowering times. Strong introgression signals are detected between COL-tetra and C. sasanqua and between C. vietnamensis and COL-hexa, which might affect the development of agronomic traits and environmental adaptability. This study provides valuable insights into the evolution, agronomic trait development, and genetic architecture of oil Camellia plants.
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