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Light-induced expression of a MYB gene regulates anthocyanin biosynthesis in red apples.

TLDR
It is concluded that MdMYB1 coordinately regulates genes in the anthocyanin pathway and the expression level of this regulator is the genetic basis for apple skin color.
Abstract
Anthocyanins are secondary metabolites found in higher plants that contribute to the colors of flowers and fruits. In apples (Malus domestica Borkh.), several steps of the anthocyanin pathway are coordinately regulated, suggesting control by common transcription factors. A gene encoding an R2R3 MYB transcription factor was isolated from apple (cv Cripps' Pink) and designated MdMYB1. Analysis of the deduced amino acid sequence suggests that this gene encodes an ortholog of anthocyanin regulators in other plants. The expression of MdMYB1 in both Arabidopsis (Arabidopsis thaliana) plants and cultured grape cells induced the ectopic synthesis of anthocyanin. In the grape (Vitis vinifera) cells MdMYB1 stimulated transcription from the promoters of two apple genes encoding anthocyanin biosynthetic enzymes. In ripening apple fruit the transcription of MdMYB1 was correlated with anthocyanin synthesis in red skin sectors of fruit. When dark-grown fruit were exposed to sunlight, MdMYB1 transcript levels increased over several days, correlating with anthocyanin synthesis in the skin. MdMYB1 gene transcripts were more abundant in red skin apple cultivars compared to non-red skin cultivars. Several polymorphisms were identified in the promoter of MdMYB1. A derived cleaved amplified polymorphic sequence marker designed to one of these polymorphisms segregated with the inheritance of skin color in progeny from a cross of an unnamed red skin selection (a sibling of Cripps' Pink) and the non-red skin cultivar Golden Delicious. We conclude that MdMYB1 coordinately regulates genes in the anthocyanin pathway and the expression level of this regulator is the genetic basis for apple skin color.

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Journal ArticleDOI

Recent advances in the transcriptional regulation of the flavonoid biosynthetic pathway

TL;DR: A better knowledge of the regulatory mechanisms of the flavonoids pathway is likely to favour the development of new biotechnological tools for the generation of value-added plants with optimized flavonoid content.
Journal ArticleDOI

New insights into the regulation of anthocyanin biosynthesis in fruits

TL;DR: A simplified model for the different regulatory networks involved with anthocyanin production in fruit is proposed and shows clear links between the developmental regulatory network and the specific regulators of anthcyanin biosynthesis during fruit ripening.
Journal ArticleDOI

Recent advances on the regulation of anthocyanin synthesis in reproductive organs

TL;DR: Understanding of the regulation of anthocyanin synthesis in flowers and fruits is broadened, indicating that a regulatory system based on the cooperation of MYB, bHLH and WD40 proteins that control floral and fruit pigmentation is common to many dicot species.
Journal ArticleDOI

MYB transcription factors that colour our fruit

TL;DR: In apple, three recent papers describe the discovery of MYB genes activating skin, flesh and foliage anthocyanic colour as mentioned in this paper, which lead the way to new approaches in the breeding and biotechnological development of fruit with new colour patterns.
Journal ArticleDOI

MYB Transcription Factors as Regulators of Phenylpropanoid Metabolism in Plants

TL;DR: This review summarizes the current understanding of V-myb myeloblastosis viral oncogene homolog (MYB) proteins and their roles in the regulation of phenylpropanoid metabolism in plants.
References
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Journal ArticleDOI

Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana

TL;DR: The modified method should facilitate high-throughput transformation of Arabidopsis for efforts such as T-DNA gene tagging, positional cloning, or attempts at targeted gene replacement.
Journal ArticleDOI

Flavonoid Biosynthesis. A Colorful Model for Genetics, Biochemistry, Cell Biology, and Biotechnology

TL;DR: The role of flavonoids as the major red, blue, and purple pigments in plants has gained these secondary products a great deal of attention over the years.
Journal ArticleDOI

The r2r3-myb gene family in arabidopsis thaliana

TL;DR: Systematic screens for knockout mutations in MYB genes, followed by phenotypic analyses and the dissection of mutants with interesting phenotypes, have started to unravel the functions of the 125 R2R3-MYB genes in Arabidopsis thaliana.
Journal ArticleDOI

Flavonoids: a colorful model for the regulation and evolution of biochemical pathways

TL;DR: The analysis of pigmentation continues to provide insights into new areas, such as the channeling and intracellular transport of metabolites, regulation of gene expression and RNA interference.
Journal ArticleDOI

Activation Tagging Identifies a Conserved MYB Regulator of Phenylpropanoid Biosynthesis

TL;DR: A novel approach for enhancing the accumulation of natural products based on activation tagging by Agrobacterium-mediated transformation with a T-DNA that carries cauliflower mosaic virus 35S enhancer sequences at its right border is reported.
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