数字农科院2.0

Targeted genome editing in polyploids: lessons from Brassica

文献类型: 外文期刊

作者: Ahmad, Niaz;Fatima, Samia;Mehmood, Muhammad Aamer;Zaman, Qamar U.;Atif, Rana Muhammad;Zhou, Weijun;Rahman, Mehboob-ur;Gill, Rafaqat Ali

作者机构:

关键词: genome editing;CRISPR;Brassica;polyploid crops;crop improvement

期刊名称: FRONTIERS IN PLANT SCIENCE

ISSN: 1664-462X

年卷期: 2023 年 14 卷

页码:

收录情况: SCIE(2023版)

摘要: CRISPR-mediated genome editing has emerged as a powerful tool for creating targeted mutations in the genome for various applications, including studying gene functions, engineering resilience against biotic and abiotic stresses, and increasing yield and quality. However, its utilization is limited to model crops for which well-annotated genome sequences are available. Many crops of dietary and economic importance, such as wheat, cotton, rapeseed-mustard, and potato, are polyploids with complex genomes. Therefore, progress in these crops has been hampered due to genome complexity. Excellent work has been conducted on some species of Brassica for its improvement through genome editing. Although excellent work has been conducted on some species of Brassica for genome improvement through editing, work on polyploid crops, including U's triangle species, holds numerous implications for improving other polyploid crops. In this review, we summarize key examples from genome editing work done on Brassica and discuss important considerations for deploying CRISPR-mediated genome editing more efficiently in other polyploid crops for improvement.

分类号:

  • 相关文献

[1]Putting CRISPR-Cas system in action: a golden window for efficient and precise genome editing for crop improvement. Tariq, Arooj,Mushtaq, Muntazir,Yaqoob, Huwaida,Bhat, Basharat Ahmad,Zargar, Sajad Majeed,Raza, Ali,Ali, Sajad,Charagh, Sidra,Mubarik, Muhammad Salman,Zaman, Qamar U.,Prasad, P. V. Vara,Mir, Rakeeb Ahmad. 2023

[2]Smart reprograming of plants against salinity stress using modern biotechnological tools. Raza, Ali,Tabassum, Javaria,Fakhar, Ali Zeeshan,Sharif, Rahat,Chen, Hua,Zhang, Chong,Ju, Luo,Fotopoulos, Vasileios,Siddique, Kadambot H. M.,Singh, Rakesh K.,Zhuang, Weijian,Varshney, Rajeev K.. 2022

[3]CRISPR-Based Crop Improvements: A Way Forward to Achieve Zero Hunger. Shakeel Ahmad,Liqun Tang,Rahil Shahzad,Amos Musyoki Mawia,Gundra Sivakrishna Rao,Shakra Jamil,Chen Wei,Zhonghua Sheng,Gaoneng Shao,Xiangjin Wei,Peisong Hu,Magdy M. Mahfouz,Shikai Hu,Shaoqing Tang. 2021

[4]Computational Tools and Resources for CRISPR/Cas Genome Editing. Li, Chao,Chu, Wen,Gill, Rafaqat Ali,Sang, Shifei,Shi, Yuqin,Hu, Xuezhi,Yang, Yuting,Zaman, Qamar U.,Zhang, Baohong. 2023

[5]RNA-Guided AsCas12a-and SpCas9-Catalyzed Knockout and Homology Directed Repair of the Omega-1 Locus of the Human Blood Fluke, Schistosoma mansoni. Wannaporn Ittiprasert,Chawalit Chatupheeraphat,Victoria H. Mann,Wenhui Li,André Miller,Taiwo Ogunbayo,Kenny Tran,Yousef N. Alrefaei,Margaret Mentink-Kane,Paul J. Brindley. 2022

[6]First Report on CRISPR/Cas9-Based Genome Editing in the Destructive Invasive Pest Tuta Absoluta (Meyrick) (Lepidoptera: Gelechiidae). Ji, Shun-Xia,Bi, Si-Yan,Wang, Xiao-Di,Wu, Qiang,Tang, Yan-Hong,Zhang, Gui-Fen,Wan, Fang-Hao,Lue, Zhi-Chuang,Liu, Wan-Xue. 2022

[7]Advantage of Nanotechnology-Based Genome Editing System and Its Application in Crop Improvement. Sunny Ahmar,Tahir Mahmood,Sajid Fiaz,Freddy Mora-Poblete,Muhammad Sohaib Shafique,Muhammad Sohaib Chattha,Ki-Hung Jung. 2021

[8]Developing herbicide-resistant crops through genome editing technologies: A review. Yongjie Kuang,Haiyan Yu,Feiyue Qi,Xueping Zhou,Xiangju Li,Huanbin Zhou. 2024

[9]Establishment of an Agrobacterium-mediated genetic transformation and CRISPR/Cas9-mediated targeted mutagenesis in Hemp (Cannabis Sativa L.). Xiaoyu Zhang,Gencheng Xu,Chaohua Cheng,Lei Lei,Jian Sun,Ying Xu,Canhui Deng,Zhigang Dai,Zemao Yang,Xiaojun Chen,Chan Liu,Qing Tang,Jianguang Su. 2021

[10]Developing a multi-modular assembled prime editing (mPE) system improved precise multi-base insertion efficiency in dicots. Pengjun Lu,Erwei Zuo,Jianbin Yan. 2025

[11]运用CRISPR/Cas系统对植物基因组进行定点编辑. 宋时奎,王影,于洋,耿立召,张春翔,李相敢,韩天富. 2014

[12]基因编辑技术及其在作物育种中的应用与安全管理. ,,龙艳,,裴新梧. 2018

[13]CRISPR技术在病毒学研究中的应用. 高帅,李芳,李赞,王涛,赵东明,步志高. 2020

[14]基于专利文献的全球CRISPR技术研发进展分析与展望. 王友华1 邹婉侬1 张熠2 樊君丽3 孙国庆1. 2018

[15]利用CRISPR技术鉴定拟南芥miR171a的功能. 黄格格,张静文,张天豹,柯智,翟楠鑫,龙艳,袁潜华,裴新梧. 2019

[16]基于CRISPR的快速灵敏便捷分子检测. 孙雯君,黄行许,王鑫杰. 2023

[17]基于CRISPR系统的基因编辑技术的研究进展. 郑基坛(综述),闫娜娜,左二伟(审校). 2021

[18]水稻CRISPR/Cas12a系统的优化及其介导的腺嘌呤碱基编辑器的建立. 王敬文,严芳,柳浪,周雪平,王道文,周焕斌. 2021

[19]CRISPR相关技术在肉牛领域的研究进展. 吴天弋,党靖宇,王添祯,张路培,高雪,李俊雅,徐凌洋. 2023

[20]基于CRISPR/CasX介导的水稻基因编辑技术的建立. 李雪琪,张素杰,于曼,黄金光,周焕斌. 2023

作者其他论文 更多>>