Zhao Tong, Yu Qianxia, Lin Canjia, Liu Huanfang, Dong Limei, Feng Xinxin, Liao Jingping
Guangdong Eco-engineering Polytechnic, Guangzhou 510520, China.
Guangdong Provincial Key Laboratory of Crop Genetic Improvement, South China Peanut Sub-Center of National Center of Oilseed Crops Improvement, Crops Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China.
Plants (Basel). 2023 Nov 3;12(21):3766. doi: 10.3390/plants12213766.
plants are widely cherished for their vibrant and captivating flowers. The unique feature of this genus lies in their labellum, a specialized floral structure resulting from the fusion of two non-fertile staminodes. However, the intricate process of pigment formation, leading to distinct color patterns in the various labellum segments of , remains a subject of limited understanding. In this study, labellum tissues of two species, (yellow-orange flowers) and (white-purple flowers), were sampled and analyzed through morphological structure observation, metabolite analysis, and transcriptome analyses. We found that hemispherical/spherical epidermal cells and undulate cell population morphology usually display darker flower colors, while flat epidermal cells and cell populations usually exhibit lighter flower colors. Metabolomic analysis identified a high concentration of anthocyanins, particularly peonidin derivatives, in segments with orange and purple pigments. Additionally, segments with yellow pigments showed significant accumulations of flavones, flavanols, flavanones, and xanthophylls. Furthermore, our investigation into gene expression levels through qRT-PCR revealed notable differences in several genes that participated in anthocyanin and carotenoid biosynthesis among the four pigmented segments. Collectively, these findings offer a comprehensive understanding of pigmentation in flowers and serve as a valuable resource for guiding future breeding efforts aimed at developing varieties with novel flower colors.
植物因其鲜艳迷人的花朵而备受喜爱。该属植物的独特之处在于其唇瓣,这是一种由两个不育雄蕊融合而成的特殊花部结构。然而,导致该属植物不同唇瓣部分呈现出独特颜色模式的色素形成复杂过程,目前仍了解有限。在本研究中,对两种该属植物(黄色橙色花的种和白色紫色花的种)的唇瓣组织进行了采样,并通过形态结构观察、代谢物分析和转录组分析进行了研究。我们发现,半球形/球形表皮细胞和起伏的细胞群体形态通常显示出较深的花色,而扁平的表皮细胞和细胞群体通常呈现较浅的花色。代谢组学分析在橙色和紫色色素的部分中鉴定出高浓度的花青素,特别是芍药色素衍生物。此外,含有黄色色素的部分显示出黄酮、黄烷醇、黄烷酮和叶黄素的显著积累。此外,我们通过qRT-PCR对基因表达水平的研究揭示了参与四种色素部分花青素和类胡萝卜素生物合成的几个基因存在显著差异。总的来说,这些发现为该属植物花朵的色素沉着提供了全面的理解,并为指导未来旨在培育具有新颖花色的该属品种的育种工作提供了宝贵资源。