生物
转座因子
表型
基因
遗传学
观赏植物
遗传分析
植物遗传学
内含子
植物
突变体
基因组
作者
Hanhui Wang,Yanan Lu,Tianxu Zhang,Zhi Liu,Li Cao,Qiaoying Chang,Yueying Liu,Xiaoxuan Lu,Yu Song,Huiyu Li,Jing Jiang,Gui‐Feng Liu,Heike Sederoff,Ronald R. Sederoff,Qingzhu Zhang,Zhimin Zheng
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2022-12-10
卷期号:191 (2): 1122-1137
被引量:2
标识
DOI:10.1093/plphys/kiac571
摘要
As essential organs of reproduction in angiosperms, flowers, and the genetic mechanisms of their development have been well characterized in many plant species but not in the woody tree yellowhorn (Xanthoceras sorbifolium). Here, we focused on the double flower phenotype in yellowhorn, which has high ornamental value. We found a candidate C-class gene, AGAMOUS1 (XsAG1), through bovine serum albumin sequencing and genetics analysis with a Long Interpersed Nuclear Elements 1 (LINE1) transposable element fragment (Xsag1-LINE1-1) inserted into its second intron that caused a loss-of-C-function and therefore the double flower phenotype. In situ hybridization of XsAG1 and analysis of the expression levels of other ABC genes were used to identify differences between single- and double-flower development processes. These findings enrich our understanding of double flower formation in yellowhorn and provide evidence that transposon insertions into genes can reshape plant traits in forest trees.
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