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Optimized protoplast isolation and transfection with a breakpoint: accelerating Cas9/sgRNA cleavage efficiency validation in monocot and dicot.
Panda, Debasmita; Karmakar, Subhasis; Dash, Manaswini; Tripathy, Swagat Kumar; Das, Priya; Banerjee, Sagar; Qi, Yiping; Samantaray, Sanghamitra; Mohapatra, Pradipta Kumar; Baig, Mirza J; Molla, Kutubuddin A.
Afiliação
  • Panda D; ICAR National Rice Research Institute, Cuttack, Odisha 753006 India.
  • Karmakar S; Department of Botany, Ravenshaw University, Cuttack, Odisha 753003 India.
  • Dash M; ICAR National Rice Research Institute, Cuttack, Odisha 753006 India.
  • Tripathy SK; ICAR National Rice Research Institute, Cuttack, Odisha 753006 India.
  • Das P; ICAR National Rice Research Institute, Cuttack, Odisha 753006 India.
  • Banerjee S; ICAR National Rice Research Institute, Cuttack, Odisha 753006 India.
  • Qi Y; ICAR National Rice Research Institute, Cuttack, Odisha 753006 India.
  • Samantaray S; Department of Plant Science and Landscape Architecture, University of Maryland, College Park, MD 20742 USA.
  • Mohapatra PK; ICAR National Rice Research Institute, Cuttack, Odisha 753006 India.
  • Baig MJ; Department of Botany, Ravenshaw University, Cuttack, Odisha 753003 India.
  • Molla KA; ICAR National Rice Research Institute, Cuttack, Odisha 753006 India.
aBIOTECH ; 5(2): 151-168, 2024 Jun.
Article em En | MEDLINE | ID: mdl-38974867
ABSTRACT
The CRISPR-Cas genome editing tools are revolutionizing agriculture and basic biology with their simplicity and precision ability to modify target genomic loci. Software-predicted guide RNAs (gRNAs) often fail to induce efficient cleavage at target loci. Many target loci are inaccessible due to complex chromatin structure. Currently, there is no suitable tool available to predict the architecture of genomic target sites and their accessibility. Hence, significant time and resources are spent on performing editing experiments with inefficient guides. Although in vitro-cleavage assay could provide a rough assessment of gRNA efficiency, it largely excludes the interference of native genomic context. Transient in-vivo testing gives a proper assessment of the cleavage ability of editing reagents in a native genomic context. Here, we developed a modified protocol that offers highly efficient protoplast isolation from rice, Arabidopsis, and chickpea, using a sucrose gradient, transfection using PEG (polyethylene glycol), and validation of single guide RNAs (sgRNAs) cleavage efficiency of CRISPR-Cas9. We have optimized various parameters for PEG-mediated protoplast transfection and achieved high transfection efficiency using our protocol in both monocots and dicots. We introduced plasmid vectors containing Cas9 and sgRNAs targeting genes in rice, Arabidopsis, and chickpea protoplasts. Using dual sgRNAs, our CRISPR-deletion strategy offers straightforward detection of genome editing success by simple agarose gel electrophoresis. Sanger sequencing of PCR products confirmed the editing efficiency of specific sgRNAs. Notably, we demonstrated that isolated protoplasts can be stored for up to 24/48 h with little loss of viability, allowing a pause between isolation and transfection. This high-efficiency protocol for protoplast isolation and transfection enables rapid (less than 7 days) validation of sgRNA cleavage efficiency before proceeding with stable transformation. The isolation and transfection method can also be utilized for rapid validation of editing strategies, evaluating diverse editing reagents, regenerating plants from transfected protoplasts, gene expression studies, protein localization and functional analysis, and other applications. Supplementary Information The online version contains supplementary material available at 10.1007/s42994-024-00139-7.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: ABIOTECH Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: ABIOTECH Ano de publicação: 2024 Tipo de documento: Article