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Base editing with high efficiency in allotetraploid oilseed rape by A3A‐PBE system

CRISPR/Cas‐base editing is an emerging technology that could convert a nucleotide to another type at the target site. In this study, A3A‐PBE system consisting of human A3A cytidine deaminase fused with a Cas9 nickase and uracil glycosylase inhibitor was established and developed in allotetraploid Br...

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Autores principales: Cheng, Hongtao, Hao, Mengyu, Ding, Bingli, Mei, Desheng, Wang, Wenxiang, Wang, Hui, Zhou, Rijin, Liu, Jia, Li, Chao, Hu, Qiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7769242/
https://www.ncbi.nlm.nih.gov/pubmed/32640102
http://dx.doi.org/10.1111/pbi.13444
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author Cheng, Hongtao
Hao, Mengyu
Ding, Bingli
Mei, Desheng
Wang, Wenxiang
Wang, Hui
Zhou, Rijin
Liu, Jia
Li, Chao
Hu, Qiong
author_facet Cheng, Hongtao
Hao, Mengyu
Ding, Bingli
Mei, Desheng
Wang, Wenxiang
Wang, Hui
Zhou, Rijin
Liu, Jia
Li, Chao
Hu, Qiong
author_sort Cheng, Hongtao
collection PubMed
description CRISPR/Cas‐base editing is an emerging technology that could convert a nucleotide to another type at the target site. In this study, A3A‐PBE system consisting of human A3A cytidine deaminase fused with a Cas9 nickase and uracil glycosylase inhibitor was established and developed in allotetraploid Brassica napus. We designed three sgRNAs to target ALS, RGA and IAA7 genes, respectively. Base‐editing efficiency was demonstrated to be more than 20% for all the three target genes. Target sequencing results revealed that the editing window ranged from C1 to C10 of the PAM sequence. Base‐edited plants of ALS conferred high herbicide resistance, while base‐edited plants of RGA or IAA7 exhibited decreased plant height. All the base editing could be genetically inherited from T(0) to T(1) generation. Several Indel mutations were confirmed at the target sites for all the three sgRNAs. Furthermore, though no C to T substitution was detected at the most potential off‐target sites, large‐scale SNP variations were determined through whole‐genome sequencing between some base‐edited and wild‐type plants. These results revealed that A3A‐PBE base‐editing system could effectively convert C to T substitution with high‐editing efficiency and broadened editing window in oilseed rape. Mutants for ALS, IAA7 and RGA genes could be potentially applied to confer herbicide resistance for weed control or with better plant architecture suitable for mechanic harvesting.
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spelling pubmed-77692422020-12-30 Base editing with high efficiency in allotetraploid oilseed rape by A3A‐PBE system Cheng, Hongtao Hao, Mengyu Ding, Bingli Mei, Desheng Wang, Wenxiang Wang, Hui Zhou, Rijin Liu, Jia Li, Chao Hu, Qiong Plant Biotechnol J Research Articles CRISPR/Cas‐base editing is an emerging technology that could convert a nucleotide to another type at the target site. In this study, A3A‐PBE system consisting of human A3A cytidine deaminase fused with a Cas9 nickase and uracil glycosylase inhibitor was established and developed in allotetraploid Brassica napus. We designed three sgRNAs to target ALS, RGA and IAA7 genes, respectively. Base‐editing efficiency was demonstrated to be more than 20% for all the three target genes. Target sequencing results revealed that the editing window ranged from C1 to C10 of the PAM sequence. Base‐edited plants of ALS conferred high herbicide resistance, while base‐edited plants of RGA or IAA7 exhibited decreased plant height. All the base editing could be genetically inherited from T(0) to T(1) generation. Several Indel mutations were confirmed at the target sites for all the three sgRNAs. Furthermore, though no C to T substitution was detected at the most potential off‐target sites, large‐scale SNP variations were determined through whole‐genome sequencing between some base‐edited and wild‐type plants. These results revealed that A3A‐PBE base‐editing system could effectively convert C to T substitution with high‐editing efficiency and broadened editing window in oilseed rape. Mutants for ALS, IAA7 and RGA genes could be potentially applied to confer herbicide resistance for weed control or with better plant architecture suitable for mechanic harvesting. John Wiley and Sons Inc. 2020-08-04 2021-01 /pmc/articles/PMC7769242/ /pubmed/32640102 http://dx.doi.org/10.1111/pbi.13444 Text en © 2020 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
Cheng, Hongtao
Hao, Mengyu
Ding, Bingli
Mei, Desheng
Wang, Wenxiang
Wang, Hui
Zhou, Rijin
Liu, Jia
Li, Chao
Hu, Qiong
Base editing with high efficiency in allotetraploid oilseed rape by A3A‐PBE system
title Base editing with high efficiency in allotetraploid oilseed rape by A3A‐PBE system
title_full Base editing with high efficiency in allotetraploid oilseed rape by A3A‐PBE system
title_fullStr Base editing with high efficiency in allotetraploid oilseed rape by A3A‐PBE system
title_full_unstemmed Base editing with high efficiency in allotetraploid oilseed rape by A3A‐PBE system
title_short Base editing with high efficiency in allotetraploid oilseed rape by A3A‐PBE system
title_sort base editing with high efficiency in allotetraploid oilseed rape by a3a‐pbe system
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7769242/
https://www.ncbi.nlm.nih.gov/pubmed/32640102
http://dx.doi.org/10.1111/pbi.13444
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