Gao Ruifang, Li Yueqing, Shan Xiaotong, Wang Yanan, Yang Siqi, Ma Saiyu, Xia Ziyi, Zheng Huibo, Wei Chao, Tong Linna, Qin Jianchun, Gao Xiang, Cronk Quentin
College of Plant Science, Jilin University, Changchun, 130062, China.
Key Laboratory of Molecular Epigenetics of MOE, Northeast Normal University, Changchun, 130024, China.
Plant J. 2025 Jan;121(1):e17188. doi: 10.1111/tpj.17188. Epub 2024 Dec 5.
Flower color change, a common phenomenon that is important in pollination ecology, has intrigued scientists for decades. While previous flower color studies have mainly focused on color diversity among different plant species, our focus is on unraveling the mechanism of post-anthesis color change (PACC) and the molecular basis for its presence and absence, respectively, in two closely related species of Lotus, Lotus filicaulis and Lotus japonicus MG20. Metabolomic analysis reveals anthocyanins as the key metabolites responsible for the observed PACC. Differential expression of anthocyanin biosynthetic and transport genes causes the variation in PACC between the two Lotus species. Crucially, the significant upregulation of a functionally characterized MYB regulator, LfPAP1, is linked to the accumulation of anthocyanins and visible color alterations in L. filicaulis flowers. Notably, we uncover a nucleotide polymorphism in the initiation codon of LjPAP1. Although this mutation does not affect transcription, we show that it has a major effect in attenuating protein translation, reducing its capacity to activate anthocyanin biosynthesis, and leading to a failure of PACC in L. japonicus MG20. Our study sheds light on mechanisms of PACC phenomenon and highlights the potential for mutations in initiation sequences to generate phenotypic differences between species in evolution.
花色变化是授粉生态学中的一种常见现象,几十年来一直吸引着科学家。虽然之前的花色研究主要集中在不同植物物种间的颜色多样性,但我们的重点是揭示花后颜色变化(PACC)的机制以及在两种近缘的百脉根属植物——丝状百脉根和日本百脉根MG20中,其出现和缺失的分子基础。代谢组学分析表明花青素是导致观察到的PACC的关键代谢产物。花青素生物合成和转运基因的差异表达导致了两种百脉根属植物之间PACC的差异。至关重要的是,一个功能特征明确的MYB调节因子LfPAP1的显著上调与丝状百脉根花朵中花青素的积累和可见的颜色变化有关。值得注意的是,我们在LjPAP1的起始密码子中发现了一个核苷酸多态性。虽然这个突变不影响转录,但我们表明它对减弱蛋白质翻译有重大影响,降低其激活花青素生物合成的能力,并导致日本百脉根MG20中PACC失败。我们的研究揭示了PACC现象的机制,并强调了起始序列中的突变在进化过程中产生物种间表型差异的潜力。