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Expanding the scope of plant genome engineering with Cas12a orthologs and highly multiplexable editing systems
by
Que, Qiudeng
, Tang, Xu
, Yang, Han
, Mount, Stephen M.
, Cheng, Yanhao
, Le, Ysa
, Malzahn, Aimee A.
, Zhou, Jianping
, Fang, Qing
, Liu, Shishi
, Zheng, Xuelian
, Ren, Qiurong
, Selengut, Jeremy D.
, Zhao, Yuxin
, Tian, Li
, Qi, Yiping
, McCoy, Bailey
, Yin, Desuo
, Franklin, Lidiya
, Zhang, Yingxiao
, Wang, Jiaheng
, Huang, Lan
, Pan, Changtian
, Yuan, Mingzhu
, Zhang, Yong
in
38
/ 38/88
/ 45
/ 45/41
/ 631/1647/1511
/ 631/337/4041/3196
/ 631/61/212
/ Agrobacterium tumefaciens
/ Alleles
/ Arabidopsis - genetics
/ Arabidopsis - metabolism
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Base Sequence
/ Clustered Regularly Interspaced Short Palindromic Repeats
/ Coverage
/ CRISPR
/ CRISPR-Associated Protein 9 - genetics
/ CRISPR-Associated Protein 9 - metabolism
/ CRISPR-Associated Proteins - genetics
/ CRISPR-Associated Proteins - metabolism
/ CRISPR-Cas Systems
/ Crops, Agricultural
/ Editing
/ Endodeoxyribonucleases - genetics
/ Endodeoxyribonucleases - metabolism
/ Engineering
/ Gene Editing - methods
/ Genetic Engineering - methods
/ Genome editing
/ Genome, Plant
/ Genomes
/ Humanities and Social Sciences
/ Humans
/ Isoenzymes - genetics
/ Isoenzymes - metabolism
/ Low temperature
/ multidisciplinary
/ Multiplexing
/ Oryza - genetics
/ Oryza - metabolism
/ Plants, Genetically Modified
/ Rice
/ RNA, Guide, CRISPR-Cas Systems - genetics
/ RNA, Guide, CRISPR-Cas Systems - metabolism
/ Science
/ Science (multidisciplinary)
/ Sequence Alignment
/ Temperature requirements
/ Temperature tolerance
/ Transcription
2021
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Expanding the scope of plant genome engineering with Cas12a orthologs and highly multiplexable editing systems
by
Que, Qiudeng
, Tang, Xu
, Yang, Han
, Mount, Stephen M.
, Cheng, Yanhao
, Le, Ysa
, Malzahn, Aimee A.
, Zhou, Jianping
, Fang, Qing
, Liu, Shishi
, Zheng, Xuelian
, Ren, Qiurong
, Selengut, Jeremy D.
, Zhao, Yuxin
, Tian, Li
, Qi, Yiping
, McCoy, Bailey
, Yin, Desuo
, Franklin, Lidiya
, Zhang, Yingxiao
, Wang, Jiaheng
, Huang, Lan
, Pan, Changtian
, Yuan, Mingzhu
, Zhang, Yong
in
38
/ 38/88
/ 45
/ 45/41
/ 631/1647/1511
/ 631/337/4041/3196
/ 631/61/212
/ Agrobacterium tumefaciens
/ Alleles
/ Arabidopsis - genetics
/ Arabidopsis - metabolism
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Base Sequence
/ Clustered Regularly Interspaced Short Palindromic Repeats
/ Coverage
/ CRISPR
/ CRISPR-Associated Protein 9 - genetics
/ CRISPR-Associated Protein 9 - metabolism
/ CRISPR-Associated Proteins - genetics
/ CRISPR-Associated Proteins - metabolism
/ CRISPR-Cas Systems
/ Crops, Agricultural
/ Editing
/ Endodeoxyribonucleases - genetics
/ Endodeoxyribonucleases - metabolism
/ Engineering
/ Gene Editing - methods
/ Genetic Engineering - methods
/ Genome editing
/ Genome, Plant
/ Genomes
/ Humanities and Social Sciences
/ Humans
/ Isoenzymes - genetics
/ Isoenzymes - metabolism
/ Low temperature
/ multidisciplinary
/ Multiplexing
/ Oryza - genetics
/ Oryza - metabolism
/ Plants, Genetically Modified
/ Rice
/ RNA, Guide, CRISPR-Cas Systems - genetics
/ RNA, Guide, CRISPR-Cas Systems - metabolism
/ Science
/ Science (multidisciplinary)
/ Sequence Alignment
/ Temperature requirements
/ Temperature tolerance
/ Transcription
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Expanding the scope of plant genome engineering with Cas12a orthologs and highly multiplexable editing systems
by
Que, Qiudeng
, Tang, Xu
, Yang, Han
, Mount, Stephen M.
, Cheng, Yanhao
, Le, Ysa
, Malzahn, Aimee A.
, Zhou, Jianping
, Fang, Qing
, Liu, Shishi
, Zheng, Xuelian
, Ren, Qiurong
, Selengut, Jeremy D.
, Zhao, Yuxin
, Tian, Li
, Qi, Yiping
, McCoy, Bailey
, Yin, Desuo
, Franklin, Lidiya
, Zhang, Yingxiao
, Wang, Jiaheng
, Huang, Lan
, Pan, Changtian
, Yuan, Mingzhu
, Zhang, Yong
in
38
/ 38/88
/ 45
/ 45/41
/ 631/1647/1511
/ 631/337/4041/3196
/ 631/61/212
/ Agrobacterium tumefaciens
/ Alleles
/ Arabidopsis - genetics
/ Arabidopsis - metabolism
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Base Sequence
/ Clustered Regularly Interspaced Short Palindromic Repeats
/ Coverage
/ CRISPR
/ CRISPR-Associated Protein 9 - genetics
/ CRISPR-Associated Protein 9 - metabolism
/ CRISPR-Associated Proteins - genetics
/ CRISPR-Associated Proteins - metabolism
/ CRISPR-Cas Systems
/ Crops, Agricultural
/ Editing
/ Endodeoxyribonucleases - genetics
/ Endodeoxyribonucleases - metabolism
/ Engineering
/ Gene Editing - methods
/ Genetic Engineering - methods
/ Genome editing
/ Genome, Plant
/ Genomes
/ Humanities and Social Sciences
/ Humans
/ Isoenzymes - genetics
/ Isoenzymes - metabolism
/ Low temperature
/ multidisciplinary
/ Multiplexing
/ Oryza - genetics
/ Oryza - metabolism
/ Plants, Genetically Modified
/ Rice
/ RNA, Guide, CRISPR-Cas Systems - genetics
/ RNA, Guide, CRISPR-Cas Systems - metabolism
/ Science
/ Science (multidisciplinary)
/ Sequence Alignment
/ Temperature requirements
/ Temperature tolerance
/ Transcription
2021
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Expanding the scope of plant genome engineering with Cas12a orthologs and highly multiplexable editing systems
Journal Article
Expanding the scope of plant genome engineering with Cas12a orthologs and highly multiplexable editing systems
2021
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Overview
CRISPR-Cas12a is a promising genome editing system for targeting AT-rich genomic regions. Comprehensive genome engineering requires simultaneous targeting of multiple genes at defined locations. Here, to expand the targeting scope of Cas12a, we screen nine Cas12a orthologs that have not been demonstrated in plants, and identify six, ErCas12a, Lb5Cas12a, BsCas12a, Mb2Cas12a, TsCas12a and MbCas12a, that possess high editing activity in rice. Among them, Mb2Cas12a stands out with high editing efficiency and tolerance to low temperature. An engineered Mb2Cas12a-RVRR variant enables editing with more relaxed PAM requirements in rice, yielding two times higher genome coverage than the wild type SpCas9. To enable large-scale genome engineering, we compare 12 multiplexed Cas12a systems and identify a potent system that exhibits nearly 100% biallelic editing efficiency with the ability to target as many as 16 sites in rice. This is the highest level of multiplex edits in plants to date using Cas12a. Two compact single transcript unit CRISPR-Cas12a interference systems are also developed for multi-gene repression in rice and
Arabidopsis
. This study greatly expands the targeting scope of Cas12a for crop genome engineering.
CRISPR-Cas12a is a promising system for targeting AT-rich regions of the genome. Here the authors identify Cas12a orthologs with expanded targeting scope and develop a highly multiplexable editing system in rice.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 38/88
/ 45
/ 45/41
/ Alleles
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Clustered Regularly Interspaced Short Palindromic Repeats
/ Coverage
/ CRISPR
/ CRISPR-Associated Protein 9 - genetics
/ CRISPR-Associated Protein 9 - metabolism
/ CRISPR-Associated Proteins - genetics
/ CRISPR-Associated Proteins - metabolism
/ Editing
/ Endodeoxyribonucleases - genetics
/ Endodeoxyribonucleases - metabolism
/ Genetic Engineering - methods
/ Genomes
/ Humanities and Social Sciences
/ Humans
/ Plants, Genetically Modified
/ Rice
/ RNA, Guide, CRISPR-Cas Systems - genetics
/ RNA, Guide, CRISPR-Cas Systems - metabolism
/ Science
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