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Lost in Translation: Molecular Basis of Reduced Flower Coloration in a Self-pollinated Monkeyflower () Species

Overview
Journal Sci Adv
Specialties Biology
Science
Date 2022 Sep 14
PMID 36103532
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Abstract

Phenotypic evolution is usually attributed to changes in protein function or gene transcription. In principle, mutations that affect protein abundance through enhancing or attenuating protein translation also could be an important source for phenotypic evolution. However, these types of mutations remain largely unexplored in the studies of phenotypic variation in nature. Through fine-scale genetic mapping and functional interrogation, we identify a single nucleotide substitution in an anthocyanin-activating gene causing flower color variation between a pair of closely related monkeyflower () species, the hummingbird-pollinated , and self-pollinated . This causal mutation is located in the 5' untranslated region and generates an upstream ATG start codon, leading to attenuated protein translation and reduced flower coloration in the self-pollinated species. Together, our results provide empirical support for the role of mutations affecting protein translation, as opposed to protein function or transcript level, in natural phenotypic variation.

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