A Small Family ofMYB-Regulatory Genes Controls Floral Pigmentation Intensity and Patterning in the GenusAntirrhinum

Author:

Schwinn Kathy1,Venail Julien2,Shang Yongjin13,Mackay Steve2,Alm Vibeke2,Butelli Eugenio2,Oyama Ryan2,Bailey Paul2,Davies Kevin1,Martin Cathie2

Affiliation:

1. New Zealand Institute for Crop and Food Research Limited, Private Bag 11600, Palmerston North, New Zealand

2. Department of Cell and Developmental Biology, John Innes Centre, Norwich Research Park, Colney, Norwich NR4 7UH, United Kingdom

3. Institute of Molecular Biosciences, Massey University, Private Bag 11222, Palmerston North, New Zealand

Abstract

AbstractThe Rosea1, Rosea2, and Venosa genes encode MYB-related transcription factors active in the flowers of Antirrhinum majus. Analysis of mutant phenotypes shows that these genes control the intensity and pattern of magenta anthocyanin pigmentation in flowers. Despite the structural similarity of these regulatory proteins, they influence the expression of target genes encoding the enzymes of anthocyanin biosynthesis with different specificities. Consequently, they are not equivalent biochemically in their activities. Different species of the genus Antirrhinum, native to Spain and Portugal, show striking differences in their patterns and intensities of floral pigmentation. Differences in anthocyanin pigmentation between at least six species are attributable to variations in the activity of the Rosea and Venosa loci. Set in the context of our understanding of the regulation of anthocyanin production in other genera, the activity of MYB-related genes is probably a primary cause of natural variation in anthocyanin pigmentation in plants.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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