Many organisms exhibit visually striking spotted or striped pigmentation patterns. Developmental models predict that such spatial patterns can form when a local autocatalytic feedback loop and a long-range inhibitory feedback loop interact. At its simplest, this self-organizing network only requires one self-activating activator that also activates a repressor, which inhibits the activator and diffuses to neighboring cells. However, the molecular activators and inhibitors fully fitting this versatile model remain elusive in pigmentation systems. Here, we characterize an R2R3-MYB activator and an R3-MYB repressor in monkeyflowers (Mimulus). Through experimental perturbation and mathematical modeling, we demonstrate that the properties of these two proteins correspond to an activator-inhibitor pair in a two-component, reaction-diffusion system, explaining the formation of dispersed anthocyanin spots in monkeyflower petals. Notably, disrupting this pattern impacts pollinator visitation. Thus, subtle changes in simple activator-inhibitor systems are likely essential contributors to the evolution of the remarkable diversity of pigmentation patterns in flowers.
Two MYB Proteins in a Self-Organizing Activator-Inhibitor System Produce Spotted Pigmentation Patterns.
两个 MYB 蛋白在自组织激活剂-抑制剂系统中产生斑点状色素沉着模式
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作者:Ding Baoqing, Patterson Erin L, Holalu Srinidhi V, Li Jingjian, Johnson Grace A, Stanley Lauren E, Greenlee Anna B, Peng Foen, Bradshaw H D Jr, Blinov Michael L, Blackman Benjamin K, Yuan Yao-Wu
| 期刊: | Current Biology | 影响因子: | 7.500 |
| 时间: | 2020 | 起止号: | 2020 Mar 9; 30(5):802-814 |
| doi: | 10.1016/j.cub.2019.12.067 | 研究方向: | 其它 |
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