Genome editing of potato using CRISPR technologies: current development and future prospective

被引:0
作者
Sarbesh Das Dangol
Abdellah Barakate
Jennifer Stephens
Mehmet Emin Çalıskan
Allah Bakhsh
机构
[1] Niğde Őmer Halisdemir University,Department of Agricultural Genetic Engineering, Faculty of Agricultural Sciences and Technologies
[2] The James Hutton Institute,Cell and Molecular Sciences
来源
Plant Cell, Tissue and Organ Culture (PCTOC) | 2019年 / 139卷
关键词
CRISPR; Gene editing; Potato; NHEJ;
D O I
暂无
中图分类号
学科分类号
摘要
Potato (Solanum tuberosum L.) has tremendous significance due to its nutritional quality. The mounting pressure of increasing population further reinforces its importance as potato is believed to be a vital crop to meet food needs for population growth. Although conventional approaches of breeding, irradiation/mutagens and introgression of quality and yield related traits have improved potato yield, biotic and abiotic stresses continue to impose crop damages. Modern tools such as CRISPR/Cas have assisted plant scientists in accelerating breeding processes by providing new, simple, versatile and robust technologies. These tools make it possible to eliminate traits that are involved in negative regulation of quality and yield parameters. Besides that, genes of interest can also be introduced in close proximity to specific loci that may remain linked throughout the generations. This review focuses on the endeavors, applications and prospects of CRISPR/Cas-based approaches in potato with the potential to increase sustainable crop productivity.
引用
收藏
页码:403 / 416
页数:13
相关论文
共 304 条
  • [41] Belhaj K(2017)Establishment of a modified CRISPR/Cas9 system with increased mutagenesis frequency using the translational enhancer dMac3 and multiple guide RNAs in potato Mol Plant 9 961-undefined
  • [42] Chaparro-Garcia A(2016)Increased efficiency of targeted mutagenesis by CRISPR/Cas9 in plants using heat stress Mol Plant 57 1058-undefined
  • [43] Kamoun S(2016)The CCTL (Cpf1-assisted utting and Taq DNA ligase-assisted Ligation) method for efficient editing of large DNA constructs in vitro Plant Cell Physiol 131 70-undefined
  • [44] Nekrasov V(2018)Expanded base editing in rice and wheat using a Cas9-adenosine deaminase fusion Plant Physiol Biochem 6 250-undefined
  • [45] Bortesi L(2015)The molecular architecture for RNA-Guided RNA cleavage by Cas13a Front Immunol 36 1-undefined
  • [46] Fischer R(2017)Enhanced Cas12a editing in mammalian cells and zebrafish Curr Opin Plant Biol 1 169-undefined
  • [47] Butler NM(2017)Precise editing of a target base in the rice genome using a modified CRISPR/Cas9 System Emerg Top Life Sci 32 347-undefined
  • [48] Atkins PA(2014)CRISPR/Cas9 platforms for genome editing in plants: developments and applications Nat Biotechnol 8 1469-undefined
  • [49] Voytas DF(2017)Precision targeted mutagenesis via Cas9 paired nickases in rice Front Plant Sci 4 163-undefined
  • [50] Douches DS(2012)Generation of α-solanine-free hairy roots of potato by CRISPR/Cas9 mediated genome editing of the St16DOX gene Food Secur 86 8-undefined