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Cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes

We investigated whether Cas9‐mediated mutagenesis of starch‐branching enzymes (SBEs) in tetraploid potatoes could generate tuber starches with a range of distinct properties. Constructs containing the Cas9 gene and sgRNAs targeting SBE1,SBE2 or both genes were introduced by Agrobacterium‐mediated tr...

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Autores principales: Tuncel, Aytug, Corbin, Kendall R., Ahn‐Jarvis, Jennifer, Harris, Suzanne, Hawkins, Erica, Smedley, Mark A., Harwood, Wendy, Warren, Frederick J., Patron, Nicola J., Smith, Alison M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835119/
https://www.ncbi.nlm.nih.gov/pubmed/31033104
http://dx.doi.org/10.1111/pbi.13137
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author Tuncel, Aytug
Corbin, Kendall R.
Ahn‐Jarvis, Jennifer
Harris, Suzanne
Hawkins, Erica
Smedley, Mark A.
Harwood, Wendy
Warren, Frederick J.
Patron, Nicola J.
Smith, Alison M.
author_facet Tuncel, Aytug
Corbin, Kendall R.
Ahn‐Jarvis, Jennifer
Harris, Suzanne
Hawkins, Erica
Smedley, Mark A.
Harwood, Wendy
Warren, Frederick J.
Patron, Nicola J.
Smith, Alison M.
author_sort Tuncel, Aytug
collection PubMed
description We investigated whether Cas9‐mediated mutagenesis of starch‐branching enzymes (SBEs) in tetraploid potatoes could generate tuber starches with a range of distinct properties. Constructs containing the Cas9 gene and sgRNAs targeting SBE1,SBE2 or both genes were introduced by Agrobacterium‐mediated transformation or by PEG‐mediated delivery into protoplasts. Outcomes included lines with mutations in all or only some of the homoeoalleles of SBE genes and lines in which homoeoalleles carried several different mutations. DNA delivery into protoplasts resulted in mutants with no detectable Cas9 gene, suggesting the absence of foreign DNA. Selected mutants with starch granule abnormalities had reductions in tuber SBE1 and/or SBE2 protein that were broadly in line with expectations from genotype analysis. Strong reduction in both SBE isoforms created an extreme starch phenotype, as reported previously for low‐SBE potato tubers. HPLC‐SEC and (1)H NMR revealed a decrease in short amylopectin chains, an increase in long chains and a large reduction in branching frequency relative to wild‐type starch. Mutants with strong reductions in SBE2 protein alone had near‐normal amylopectin chain‐length distributions and only small reductions in branching frequency. However, starch granule initiation was enormously increased: cells contained many granules of <4 μm and granules with multiple hila. Thus, large reductions in both SBEs reduce amylopectin branching during granule growth, whereas reduction in SBE2 alone primarily affects numbers of starch granule initiations. Our results demonstrate that Cas9‐mediated mutagenesis of SBE genes has the potential to generate new, potentially valuable starch properties without integration of foreign DNA into the genome.
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spelling pubmed-68351192019-11-12 Cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes Tuncel, Aytug Corbin, Kendall R. Ahn‐Jarvis, Jennifer Harris, Suzanne Hawkins, Erica Smedley, Mark A. Harwood, Wendy Warren, Frederick J. Patron, Nicola J. Smith, Alison M. Plant Biotechnol J Research Articles We investigated whether Cas9‐mediated mutagenesis of starch‐branching enzymes (SBEs) in tetraploid potatoes could generate tuber starches with a range of distinct properties. Constructs containing the Cas9 gene and sgRNAs targeting SBE1,SBE2 or both genes were introduced by Agrobacterium‐mediated transformation or by PEG‐mediated delivery into protoplasts. Outcomes included lines with mutations in all or only some of the homoeoalleles of SBE genes and lines in which homoeoalleles carried several different mutations. DNA delivery into protoplasts resulted in mutants with no detectable Cas9 gene, suggesting the absence of foreign DNA. Selected mutants with starch granule abnormalities had reductions in tuber SBE1 and/or SBE2 protein that were broadly in line with expectations from genotype analysis. Strong reduction in both SBE isoforms created an extreme starch phenotype, as reported previously for low‐SBE potato tubers. HPLC‐SEC and (1)H NMR revealed a decrease in short amylopectin chains, an increase in long chains and a large reduction in branching frequency relative to wild‐type starch. Mutants with strong reductions in SBE2 protein alone had near‐normal amylopectin chain‐length distributions and only small reductions in branching frequency. However, starch granule initiation was enormously increased: cells contained many granules of <4 μm and granules with multiple hila. Thus, large reductions in both SBEs reduce amylopectin branching during granule growth, whereas reduction in SBE2 alone primarily affects numbers of starch granule initiations. Our results demonstrate that Cas9‐mediated mutagenesis of SBE genes has the potential to generate new, potentially valuable starch properties without integration of foreign DNA into the genome. John Wiley and Sons Inc. 2019-05-14 2019-12 /pmc/articles/PMC6835119/ /pubmed/31033104 http://dx.doi.org/10.1111/pbi.13137 Text en © 2019 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the http://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
Tuncel, Aytug
Corbin, Kendall R.
Ahn‐Jarvis, Jennifer
Harris, Suzanne
Hawkins, Erica
Smedley, Mark A.
Harwood, Wendy
Warren, Frederick J.
Patron, Nicola J.
Smith, Alison M.
Cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes
title Cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes
title_full Cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes
title_fullStr Cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes
title_full_unstemmed Cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes
title_short Cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes
title_sort cas9‐mediated mutagenesis of potato starch‐branching enzymes generates a range of tuber starch phenotypes
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835119/
https://www.ncbi.nlm.nih.gov/pubmed/31033104
http://dx.doi.org/10.1111/pbi.13137
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