BLADE-ON-PETIOLE interacts with CYCLOIDEA to fine-tune CYCLOIDEA-mediated flower symmetry in monkeyflowers (Mimulus)

BLADE-ON-PETIOLE 与 CYCLOIDEA 相互作用,以微调 CYCLOIDEA 介导的猴面花(Mimulus)花朵对称性

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作者:Yuan Gao, Jingjian Li, Jiayue He, Yaqi Yu, Zexin Qian, Zhiqiang Geng, Liuhui Yang, Yumin Zhang, Yujie Ke, Qiaoshan Lin, Jing Wang, Sumei Chen, Fadi Chen, Yao-Wu Yuan, Baoqing Ding

Abstract

Morphological novelties, or key innovations, are instrumental to the diversification of the organisms. In plants, one such innovation is the evolution of zygomorphic flowers, which is thought to promote outcrossing and increase flower morphological diversity. We isolated three allelic mutants from two Mimulus species displaying altered floral symmetry and identified the causal gene as the ortholog of Arabidopsis BLADE-ON-PETIOLE. We found that MlBOP and MlCYC2A physically interact and this BOP-CYC interaction module is highly conserved across the angiosperms. Furthermore, MlBOP self-ubiquitinates and suppresses MlCYC2A self-activation. MlCYC2A, in turn, impedes MlBOP ubiquitination. Thus, this molecular tug-of-war between MlBOP and MlCYC2A fine-tunes the expression of MlCYC2A, contributing to the formation of bilateral symmetry in flowers, a key trait in angiosperm evolution.

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