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An R2R3 MYB transcription factor associated with regulation of the anthocyanin biosynthetic pathway in Rosaceae

TLDR
In this paper, the authors used gene specific primers to show that the three activators of apple anthocyanin (myb10/myb1/myBA) are likely alleles of each other.
Abstract
Background The control of plant anthocyanin accumulation is via transcriptional regulation of the genes encoding the biosynthetic enzymes. A key activator appears to be an R2R3 MYB transcription factor. In apple fruit, skin anthocyanin levels are controlled by a gene called MYBA or MYB1, while the gene determining fruit flesh and foliage anthocyanin has been termed MYB10. In order to further understand tissue-specific anthocyanin regulation we have isolated orthologous MYB genes from all the commercially important rosaceous species. Results We use gene specific primers to show that the three MYB activators of apple anthocyanin (MYB10/MYB1/MYBA) are likely alleles of each other. MYB transcription factors, with high sequence identity to the apple gene were isolated from across the rosaceous family (e.g. apples, pears, plums, cherries, peaches, raspberries, rose, strawberry). Key identifying amino acid residues were found in both the DNA-binding and C-terminal domains of these MYBs. The expression of these MYB10 genes correlates with fruit and flower anthocyanin levels. Their function was tested in tobacco and strawberry. In tobacco, these MYBs were shown to induce the anthocyanin pathway when co-expressed with bHLHs, while over-expression of strawberry and apple genes in the crop of origin elevates anthocyanins. Conclusions This family-wide study of rosaceous R2R3 MYBs provides insight into the evolution of this plant trait. It has implications for the development of new coloured fruit and flowers, as well as aiding the understanding of temporal-spatial colour change.

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Evolutionary and comparative analysis of MYB and bHLH plant transcription factors

TL;DR: This review compares the MYB and bHLH gene families from structural, evolutionary and functional perspectives and suggests that the next few years are likely to witness an increasing understanding of the extent to which conserved transcription factors participate at similar positions in gene regulatory networks across plant species.
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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.
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Plant phenolics: recent advances on their biosynthesis, genetics, and ecophysiology.

TL;DR: In the rhizosphere, increasing evidence suggests that root specific chemicals (exudates) might initiate and manipulate biological and physical interactions between roots and soil organisms, and one-way signals that relate the nature of chemical and physical soil properties to the roots.
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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.
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MYB transcription factor genes as regulators for plant responses: an overview

TL;DR: MYB TFs are reviewed with particular emphasis on their role in controlling different biological processes to provide valuable insights in understanding regulatory networks and associated functions to develop strategies for crop improvement.
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