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The regulatory network for petal anthocyanin pigmentation is shaped by the MYB5a/NEGAN transcription factor in Mimulus

Much of the visual diversity of angiosperms is due to the frequent evolution of novel pigmentation patterns in flowers. The gene network responsible for anthocyanin pigmentation, in particular, has become a model for investigating how genetic changes give rise to phenotypic innovation. In the monkey...

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Autores principales: Zheng, Xingyu, Om, Kuenzang, Stanton, Kimmy A, Thomas, Daniel, Cheng, Philip A, Eggert, Allison, Simmons, Emily, Yuan, Yao-Wu, Conradi Smith, Gregory D, Puzey, Joshua R, Cooley, Arielle M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8045675/
https://www.ncbi.nlm.nih.gov/pubmed/33724417
http://dx.doi.org/10.1093/genetics/iyaa036
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author Zheng, Xingyu
Om, Kuenzang
Stanton, Kimmy A
Thomas, Daniel
Cheng, Philip A
Eggert, Allison
Simmons, Emily
Yuan, Yao-Wu
Conradi Smith, Gregory D
Puzey, Joshua R
Cooley, Arielle M
author_facet Zheng, Xingyu
Om, Kuenzang
Stanton, Kimmy A
Thomas, Daniel
Cheng, Philip A
Eggert, Allison
Simmons, Emily
Yuan, Yao-Wu
Conradi Smith, Gregory D
Puzey, Joshua R
Cooley, Arielle M
author_sort Zheng, Xingyu
collection PubMed
description Much of the visual diversity of angiosperms is due to the frequent evolution of novel pigmentation patterns in flowers. The gene network responsible for anthocyanin pigmentation, in particular, has become a model for investigating how genetic changes give rise to phenotypic innovation. In the monkeyflower genus Mimulus, an evolutionarily recent gain of petal lobe anthocyanin pigmentation in M. luteus var. variegatus was previously mapped to genomic region pla2. Here, we use sequence and expression analysis, followed by transgenic manipulation of gene expression, to identify MYB5a—orthologous to the NEGAN transcriptional activator from M. lewisii—as the gene responsible for the transition to anthocyanin-pigmented petals in M. l. variegatus. In other monkeyflower taxa, MYB5a/NEGAN is part of a reaction-diffusion network that produces semi-repeating spotting patterns, such as the array of spots in the nectar guides of both M. lewisii and M. guttatus. Its co-option for the evolution of an apparently non-patterned trait—the solid petal lobe pigmentation of M. l. variegatus—illustrates how reaction-diffusion can contribute to evolutionary novelty in non-obvious ways. Transcriptome sequencing of a MYB5a RNAi line of M. l. variegatus reveals that this genetically simple change, which we hypothesize to be a regulatory mutation in cis to MYB5a, has cascading effects on gene expression, not only on the enzyme-encoding genes traditionally thought of as the targets of MYB5a but also on all of its known partners in the anthocyanin regulatory network.
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spelling pubmed-80456752021-04-19 The regulatory network for petal anthocyanin pigmentation is shaped by the MYB5a/NEGAN transcription factor in Mimulus Zheng, Xingyu Om, Kuenzang Stanton, Kimmy A Thomas, Daniel Cheng, Philip A Eggert, Allison Simmons, Emily Yuan, Yao-Wu Conradi Smith, Gregory D Puzey, Joshua R Cooley, Arielle M Genetics Investigation Much of the visual diversity of angiosperms is due to the frequent evolution of novel pigmentation patterns in flowers. The gene network responsible for anthocyanin pigmentation, in particular, has become a model for investigating how genetic changes give rise to phenotypic innovation. In the monkeyflower genus Mimulus, an evolutionarily recent gain of petal lobe anthocyanin pigmentation in M. luteus var. variegatus was previously mapped to genomic region pla2. Here, we use sequence and expression analysis, followed by transgenic manipulation of gene expression, to identify MYB5a—orthologous to the NEGAN transcriptional activator from M. lewisii—as the gene responsible for the transition to anthocyanin-pigmented petals in M. l. variegatus. In other monkeyflower taxa, MYB5a/NEGAN is part of a reaction-diffusion network that produces semi-repeating spotting patterns, such as the array of spots in the nectar guides of both M. lewisii and M. guttatus. Its co-option for the evolution of an apparently non-patterned trait—the solid petal lobe pigmentation of M. l. variegatus—illustrates how reaction-diffusion can contribute to evolutionary novelty in non-obvious ways. Transcriptome sequencing of a MYB5a RNAi line of M. l. variegatus reveals that this genetically simple change, which we hypothesize to be a regulatory mutation in cis to MYB5a, has cascading effects on gene expression, not only on the enzyme-encoding genes traditionally thought of as the targets of MYB5a but also on all of its known partners in the anthocyanin regulatory network. Oxford University Press 2021-01-11 /pmc/articles/PMC8045675/ /pubmed/33724417 http://dx.doi.org/10.1093/genetics/iyaa036 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Genetics Society of America. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigation
Zheng, Xingyu
Om, Kuenzang
Stanton, Kimmy A
Thomas, Daniel
Cheng, Philip A
Eggert, Allison
Simmons, Emily
Yuan, Yao-Wu
Conradi Smith, Gregory D
Puzey, Joshua R
Cooley, Arielle M
The regulatory network for petal anthocyanin pigmentation is shaped by the MYB5a/NEGAN transcription factor in Mimulus
title The regulatory network for petal anthocyanin pigmentation is shaped by the MYB5a/NEGAN transcription factor in Mimulus
title_full The regulatory network for petal anthocyanin pigmentation is shaped by the MYB5a/NEGAN transcription factor in Mimulus
title_fullStr The regulatory network for petal anthocyanin pigmentation is shaped by the MYB5a/NEGAN transcription factor in Mimulus
title_full_unstemmed The regulatory network for petal anthocyanin pigmentation is shaped by the MYB5a/NEGAN transcription factor in Mimulus
title_short The regulatory network for petal anthocyanin pigmentation is shaped by the MYB5a/NEGAN transcription factor in Mimulus
title_sort regulatory network for petal anthocyanin pigmentation is shaped by the myb5a/negan transcription factor in mimulus
topic Investigation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8045675/
https://www.ncbi.nlm.nih.gov/pubmed/33724417
http://dx.doi.org/10.1093/genetics/iyaa036
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