裸子植物
基因组
生物
基因
生物合成
遗传学
DNA甲基化
后转座子
植物
基因表达
转座因子
作者
Heqiang Lou,Lili Song,Xiaolong Li,Hailing Zi,Weijie Chen,Yadi Gao,Shan Zheng,Zhangjun Fei,Xuepeng Sun,Jiasheng Wu
标识
DOI:10.1038/s41467-023-37038-2
摘要
Abstract Torreya plants produce dry fruits with assorted functions. Here, we report the 19-Gb chromosome-level genome assembly of T. grandis . The genome is shaped by ancient whole-genome duplications and recurrent LTR retrotransposon bursts. Comparative genomic analyses reveal key genes involved in reproductive organ development, cell wall biosynthesis and seed storage. Two genes encoding a C 18 Δ 9 -elongase and a C 20 Δ 5 -desaturase are identified to be responsible for sciadonic acid biosynthesis and both are present in diverse plant lineages except angiosperms. We demonstrate that the histidine-rich boxes of the Δ 5 -desaturase are crucial for its catalytic activity. Methylome analysis reveals that methylation valleys of the T. grandis seed genome harbor genes associated with important seed activities, including cell wall and lipid biosynthesis. Moreover, seed development is accompanied by DNA methylation changes that possibly fuel energy production. This study provides important genomic resources and elucidates the evolutionary mechanism of sciadonic acid biosynthesis in land plants.
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