Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences, Peking Union Medical College, Beijing 100193, China.
Genes (Basel). 2023 Mar 6;14(3):661. doi: 10.3390/genes14030661.
Rupr., a species of Rutaceae, is a nationally protected and valuable medicinal plant. It is generally considered to be dioecious. With the discovery of monoecious , the phenomenon that its sex development is regulated by epigenetics has been revealed, but the way epigenetics affects the sex differentiation of is still unclear. In this study, we investigated the effect of DNA methylation on the sexual development of . The young inflorescences of male plants were treated with the demethylation agent 5-azaC, and the induced female flowers were obtained. The induced female flowers' morphological functions and transcriptome levels were close to those of normally developed plants. Genes associated with the development of female flowers were studied by comparing the differences in transcriptome levels between the male and female flowers. Referring to sex-related genes reported in other plants, 188 candidate genes related to the development of female flowers were obtained, including sex-regulating genes, genes related to the formation and development of sexual organs, genes related to biochemical pathways, and hormone-related genes. , , , , , , , , , , , and were preliminarily considered the key genes for female flower development. This study has demonstrated that epigenetics was involved in the sex regulation of , with DNA methylation as one of its regulatory modes. Moreover, some candidate genes related to the sexual differentiation of were obtained with analysis. These results are of great significance for further exploring the mechanism of sex differentiation of and studying of sex differentiation of plants.
山黄皮,芸香科山黄皮属植物,为国家二级保护植物和药用经济植物。一般认为其为雌雄异株植物。随着雌雄同株现象的发现,其性别发育受表观遗传调控的现象被揭示,但表观遗传如何影响的性别分化尚不清楚。本研究探讨了 DNA 甲基化对性别发育的影响。用去甲基化剂 5-氮杂胞苷处理雄性植株的幼花序,获得诱导的雌性花。诱导的雌性花的形态功能和转录组水平接近正常发育的植株。通过比较雌雄花转录组水平的差异,研究与雌花发育相关的基因。参照其他植物中报道的性别相关基因,获得了 188 个与雌花发育相关的候选基因,包括性别调控基因、与性器官形成和发育相关的基因、与生化途径相关的基因和激素相关基因。、、、、、、、、、、、和初步认为是雌花发育的关键基因。本研究表明,表观遗传参与了的性别调控,DNA 甲基化为其调控模式之一。此外,通过分析还获得了一些与性别分化相关的候选基因。这些结果对进一步探讨性别分化的机制和植物性别分化的研究具有重要意义。