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Removal of a 10-kb Gret1 transposon from VvMybA1 of Vitis vinifera cv. Chardonnay

Many white grape cultivars have a nonfunctional VvMybA1 gene due to the presence of a 10-kb Gret1 transposon in its promoter. In this study, we successfully demonstrated removal of the 10-kb Gret1 transposon and functional restoration of a VvMybA1 allele in Vitis vinifera cv. Chardonnay through tran...

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Autores principales: Yang, Yingzhen, Ke, John, Han, Xiaoyan, Wuddineh, Wegi A, Song, Guo-qing, Zhong, Gan-Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9669667/
https://www.ncbi.nlm.nih.gov/pubmed/36406285
http://dx.doi.org/10.1093/hr/uhac201
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author Yang, Yingzhen
Ke, John
Han, Xiaoyan
Wuddineh, Wegi A
Song, Guo-qing
Zhong, Gan-Yuan
author_facet Yang, Yingzhen
Ke, John
Han, Xiaoyan
Wuddineh, Wegi A
Song, Guo-qing
Zhong, Gan-Yuan
author_sort Yang, Yingzhen
collection PubMed
description Many white grape cultivars have a nonfunctional VvMybA1 gene due to the presence of a 10-kb Gret1 transposon in its promoter. In this study, we successfully demonstrated removal of the 10-kb Gret1 transposon and functional restoration of a VvMybA1 allele in Vitis vinifera cv. Chardonnay through transgenic expression of Cas9 and two gRNAs simultaneously targeting two junction sequences between Gret1 LTRs and VvMybA1. We generated 67 and 24 Cas9-positive vines via Agrobacterium-mediated and biolistic bombardment transformation, respectively. While the editing efficiencies were as high as 17% for the 5′ target site and 65% for the 3′ target site, simultaneous editing of both 5′ and 3′ target sites resulting in the removal of Gret1 transposon from the VvMybA1 promoter was 0.5% or less in most transgenic calli, suggesting that these calli had very limited numbers of cells with the Gret1 removed. Nevertheless, two bombardment-transformed vines, which shared the same unique editing features and were likely derived from a singly edited event, were found to have the Gret1 successfully edited out from one of their two VvMybA1 alleles. The edited allele was functionally restored based on the detection of its expression and a positive coloring assay result in leaves. Precise removal of more than a 10-kb DNA fragment from a gene locus in grape broadens the possibilities of using gene editing technologies to modify various trait genes in grapes and other plants.
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spelling pubmed-96696672022-11-17 Removal of a 10-kb Gret1 transposon from VvMybA1 of Vitis vinifera cv. Chardonnay Yang, Yingzhen Ke, John Han, Xiaoyan Wuddineh, Wegi A Song, Guo-qing Zhong, Gan-Yuan Hortic Res Article Many white grape cultivars have a nonfunctional VvMybA1 gene due to the presence of a 10-kb Gret1 transposon in its promoter. In this study, we successfully demonstrated removal of the 10-kb Gret1 transposon and functional restoration of a VvMybA1 allele in Vitis vinifera cv. Chardonnay through transgenic expression of Cas9 and two gRNAs simultaneously targeting two junction sequences between Gret1 LTRs and VvMybA1. We generated 67 and 24 Cas9-positive vines via Agrobacterium-mediated and biolistic bombardment transformation, respectively. While the editing efficiencies were as high as 17% for the 5′ target site and 65% for the 3′ target site, simultaneous editing of both 5′ and 3′ target sites resulting in the removal of Gret1 transposon from the VvMybA1 promoter was 0.5% or less in most transgenic calli, suggesting that these calli had very limited numbers of cells with the Gret1 removed. Nevertheless, two bombardment-transformed vines, which shared the same unique editing features and were likely derived from a singly edited event, were found to have the Gret1 successfully edited out from one of their two VvMybA1 alleles. The edited allele was functionally restored based on the detection of its expression and a positive coloring assay result in leaves. Precise removal of more than a 10-kb DNA fragment from a gene locus in grape broadens the possibilities of using gene editing technologies to modify various trait genes in grapes and other plants. Oxford University Press 2022-09-06 /pmc/articles/PMC9669667/ /pubmed/36406285 http://dx.doi.org/10.1093/hr/uhac201 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nanjing Agricultural University. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (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 Article
Yang, Yingzhen
Ke, John
Han, Xiaoyan
Wuddineh, Wegi A
Song, Guo-qing
Zhong, Gan-Yuan
Removal of a 10-kb Gret1 transposon from VvMybA1 of Vitis vinifera cv. Chardonnay
title Removal of a 10-kb Gret1 transposon from VvMybA1 of Vitis vinifera cv. Chardonnay
title_full Removal of a 10-kb Gret1 transposon from VvMybA1 of Vitis vinifera cv. Chardonnay
title_fullStr Removal of a 10-kb Gret1 transposon from VvMybA1 of Vitis vinifera cv. Chardonnay
title_full_unstemmed Removal of a 10-kb Gret1 transposon from VvMybA1 of Vitis vinifera cv. Chardonnay
title_short Removal of a 10-kb Gret1 transposon from VvMybA1 of Vitis vinifera cv. Chardonnay
title_sort removal of a 10-kb gret1 transposon from vvmyba1 of vitis vinifera cv. chardonnay
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9669667/
https://www.ncbi.nlm.nih.gov/pubmed/36406285
http://dx.doi.org/10.1093/hr/uhac201
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