Floral bilateral symmetry: one axis, many details

Summary Symmetry is a major component of floral diversity. Most flowers are radially or bilaterally symmetric, with bilateral symmetry (monosymmetry) having evolved repeatedly from radial ancestors. Since the identification of the dorsal identity gene CYCLOIDEA ( CYC ) in snapdragon, floral monosymmetry has become a classic example of convergent evolution through repeated recruitment of the same developmental program: across nearly all taxa examined, monosymmetry is associated with asymmetric expression of CYC along the dorsal‐ventral axis. Despite extensive comparative evidence, the mechanisms by which CYC contributes to the development and diversification of floral symmetry remain fragmentary. Here, I examine three key questions concerning CYC function and regulation, summarize current mechanistic insights, and highlight directions for future research.

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Publication Details

Journal
New Phytologist
Published
2026-10-07
DOI
https://doi.org/10.1111/nph.71636
Primary Topic
Plant Molecular Biology Research
Type
article
Field-Weighted Citation Impact
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article

Floral bilateral symmetry: one axis, many details

Ya Min
New Phytologist
Plant Molecular Biology Research
article

Floral bilateral symmetry: one axis, many details

Ya Min
article en

Abstract

Summary Symmetry is a major component of floral diversity. Most flowers are radially or bilaterally symmetric, with bilateral symmetry (monosymmetry) having evolved repeatedly from radial ancestors. Since the identification of the dorsal identity gene CYCLOIDEA ( CYC ) in snapdragon, floral monosymmetry has become a classic example of convergent evolution through repeated recruitment of the same developmental program: across nearly all taxa examined, monosymmetry is associated with asymmetric expression of CYC along the dorsal‐ventral axis. Despite extensive comparative evidence, the mechanisms by which CYC contributes to the development and diversification of floral symmetry remain fragmentary. Here, I examine three key questions concerning CYC function and regulation, summarize current mechanistic insights, and highlight directions for future research.

New Phytologist
University of Illinois Urbana-Champaign (US)
Openalex Percentile: Top 14%
Plant Molecular Biology Research
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