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CRISPR‐Cas9‐mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype

Phosphatidylethanolamine‐binding protein (PEBP) genes regulate flowering and architecture in many plant species. Here, we study kiwifruit (Actinidia chinensis, Ac) PEBP genes with homology to BROTHER OF FT AND TFL1 (BFT). CRISPR‐Cas9 was used to target AcBFT genes in wild‐type and fast‐flowering kiw...

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Autores principales: Herath, Dinum, Voogd, Charlotte, Mayo‐Smith, Matthew, Yang, Bo, Allan, Andrew C., Putterill, Joanna, Varkonyi‐Gasic, Erika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9616528/
https://www.ncbi.nlm.nih.gov/pubmed/35796629
http://dx.doi.org/10.1111/pbi.13888
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author Herath, Dinum
Voogd, Charlotte
Mayo‐Smith, Matthew
Yang, Bo
Allan, Andrew C.
Putterill, Joanna
Varkonyi‐Gasic, Erika
author_facet Herath, Dinum
Voogd, Charlotte
Mayo‐Smith, Matthew
Yang, Bo
Allan, Andrew C.
Putterill, Joanna
Varkonyi‐Gasic, Erika
author_sort Herath, Dinum
collection PubMed
description Phosphatidylethanolamine‐binding protein (PEBP) genes regulate flowering and architecture in many plant species. Here, we study kiwifruit (Actinidia chinensis, Ac) PEBP genes with homology to BROTHER OF FT AND TFL1 (BFT). CRISPR‐Cas9 was used to target AcBFT genes in wild‐type and fast‐flowering kiwifruit backgrounds. The editing construct was designed to preferentially target AcBFT2, whose expression is elevated in dormant buds. Acbft lines displayed an evergrowing phenotype and increased branching, while control plants established winter dormancy. The evergrowing phenotype, encompassing delayed budset and advanced budbreak after defoliation, was identified in multiple independent lines with edits in both alleles of AcBFT2. RNA‐seq analyses conducted using buds from gene‐edited and control lines indicated that Acbft evergrowing plants had a transcriptome similar to that of actively growing wild‐type plants, rather than dormant controls. Mutations in both alleles of AcBFT2 did not promote flowering in wild‐type or affect flowering time, morphology and fertility in fast‐flowering transgenic kiwifruit. In summary, editing of AcBFT2 has the potential to reduce plant dormancy with no adverse effect on flowering, giving rise to cultivars better suited for a changing climate.
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spelling pubmed-96165282022-10-31 CRISPR‐Cas9‐mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype Herath, Dinum Voogd, Charlotte Mayo‐Smith, Matthew Yang, Bo Allan, Andrew C. Putterill, Joanna Varkonyi‐Gasic, Erika Plant Biotechnol J Research Articles Phosphatidylethanolamine‐binding protein (PEBP) genes regulate flowering and architecture in many plant species. Here, we study kiwifruit (Actinidia chinensis, Ac) PEBP genes with homology to BROTHER OF FT AND TFL1 (BFT). CRISPR‐Cas9 was used to target AcBFT genes in wild‐type and fast‐flowering kiwifruit backgrounds. The editing construct was designed to preferentially target AcBFT2, whose expression is elevated in dormant buds. Acbft lines displayed an evergrowing phenotype and increased branching, while control plants established winter dormancy. The evergrowing phenotype, encompassing delayed budset and advanced budbreak after defoliation, was identified in multiple independent lines with edits in both alleles of AcBFT2. RNA‐seq analyses conducted using buds from gene‐edited and control lines indicated that Acbft evergrowing plants had a transcriptome similar to that of actively growing wild‐type plants, rather than dormant controls. Mutations in both alleles of AcBFT2 did not promote flowering in wild‐type or affect flowering time, morphology and fertility in fast‐flowering transgenic kiwifruit. In summary, editing of AcBFT2 has the potential to reduce plant dormancy with no adverse effect on flowering, giving rise to cultivars better suited for a changing climate. John Wiley and Sons Inc. 2022-07-26 2022-11 /pmc/articles/PMC9616528/ /pubmed/35796629 http://dx.doi.org/10.1111/pbi.13888 Text en © 2022 The New Zealand Institute for Plant and Food Research Ltd and The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Herath, Dinum
Voogd, Charlotte
Mayo‐Smith, Matthew
Yang, Bo
Allan, Andrew C.
Putterill, Joanna
Varkonyi‐Gasic, Erika
CRISPR‐Cas9‐mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype
title CRISPR‐Cas9‐mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype
title_full CRISPR‐Cas9‐mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype
title_fullStr CRISPR‐Cas9‐mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype
title_full_unstemmed CRISPR‐Cas9‐mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype
title_short CRISPR‐Cas9‐mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype
title_sort crispr‐cas9‐mediated mutagenesis of kiwifruit bft genes results in an evergrowing but not early flowering phenotype
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9616528/
https://www.ncbi.nlm.nih.gov/pubmed/35796629
http://dx.doi.org/10.1111/pbi.13888
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