Interaction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes

The all-flesh type of tomato fruits is caused by mutation of the MBP3 gene, however, knocking down MBP3 in certain genotypes also affect plant and fruit development. Here, the authors show that a natural mutation of AGL11, a close homolog of MBP3, is responsible for the phenotypic divergence.

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Autores principales: Baowen Huang, Guojian Hu, Keke Wang, Pierre Frasse, Elie Maza, Anis Djari, Wei Deng, Julien Pirrello, Vincent Burlat, Clara Pons, Antonio Granell, Zhengguo Li, Benoît van der Rest, Mondher Bouzayen
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/8a136dda8dce4a1bac43421eb8b74e5f
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spelling oai:doaj.org-article:8a136dda8dce4a1bac43421eb8b74e5f2021-11-28T12:32:43ZInteraction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes10.1038/s41467-021-27117-72041-1723https://doaj.org/article/8a136dda8dce4a1bac43421eb8b74e5f2021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-27117-7https://doaj.org/toc/2041-1723The all-flesh type of tomato fruits is caused by mutation of the MBP3 gene, however, knocking down MBP3 in certain genotypes also affect plant and fruit development. Here, the authors show that a natural mutation of AGL11, a close homolog of MBP3, is responsible for the phenotypic divergence.Baowen HuangGuojian HuKeke WangPierre FrasseElie MazaAnis DjariWei DengJulien PirrelloVincent BurlatClara PonsAntonio GranellZhengguo LiBenoît van der RestMondher BouzayenNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Baowen Huang
Guojian Hu
Keke Wang
Pierre Frasse
Elie Maza
Anis Djari
Wei Deng
Julien Pirrello
Vincent Burlat
Clara Pons
Antonio Granell
Zhengguo Li
Benoît van der Rest
Mondher Bouzayen
Interaction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes
description The all-flesh type of tomato fruits is caused by mutation of the MBP3 gene, however, knocking down MBP3 in certain genotypes also affect plant and fruit development. Here, the authors show that a natural mutation of AGL11, a close homolog of MBP3, is responsible for the phenotypic divergence.
format article
author Baowen Huang
Guojian Hu
Keke Wang
Pierre Frasse
Elie Maza
Anis Djari
Wei Deng
Julien Pirrello
Vincent Burlat
Clara Pons
Antonio Granell
Zhengguo Li
Benoît van der Rest
Mondher Bouzayen
author_facet Baowen Huang
Guojian Hu
Keke Wang
Pierre Frasse
Elie Maza
Anis Djari
Wei Deng
Julien Pirrello
Vincent Burlat
Clara Pons
Antonio Granell
Zhengguo Li
Benoît van der Rest
Mondher Bouzayen
author_sort Baowen Huang
title Interaction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes
title_short Interaction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes
title_full Interaction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes
title_fullStr Interaction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes
title_full_unstemmed Interaction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes
title_sort interaction of two mads-box genes leads to growth phenotype divergence of all-flesh type of tomatoes
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/8a136dda8dce4a1bac43421eb8b74e5f
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