<--- Back to Details
First PageDocument Content
Biology / Genetics / Genetic engineering / Non-coding RNA / Enzymes / DNA / Cas9 / CRISPR / Protospacer adjacent motif / Zinc finger nuclease / Transcription activator-like effector nuclease / Genome editing
Biology
Genetics
Genetic engineering
Non-coding RNA
Enzymes
DNA
Cas9
CRISPR
Protospacer adjacent motif
Zinc finger nuclease
Transcription activator-like effector nuclease
Genome editing

Heritable and Precise Zebrafish Genome Editing Using a CRISPR-Cas System Woong Y. Hwang1,2., Yanfang Fu3,4., Deepak Reyon3,4, Morgan L. Maeder3, Prakriti Kaini1,2, Jeffry D. Sander3,4, J. Keith Joung3,4, Randall T. Peter

Add to Reading List

Source URL: www.ncbi.nlm.nih.gov

Download Document from Source Website

File Size: 2,14 MB

Share Document on Facebook

Similar Documents

The rapid progress of CRISPR for targeted crop modification 47th Tomato Breeders Roundtable, 2018 The Ohio State University, Wooster, Ohio  Andika Gunadi

The rapid progress of CRISPR for targeted crop modification 47th Tomato Breeders Roundtable, 2018 The Ohio State University, Wooster, Ohio Andika Gunadi

DocID: 1vgU6 - View Document

CDKL5 Program of Excellence Pilot Grant Program Application Title: Development of TALE and CRISPR/Cas9 as a putative therapy for treatment or correction of genetically linked CDKL5 Deficiency PI: Jan Nolta, PhD Instituti

CDKL5 Program of Excellence Pilot Grant Program Application Title: Development of TALE and CRISPR/Cas9 as a putative therapy for treatment or correction of genetically linked CDKL5 Deficiency PI: Jan Nolta, PhD Instituti

DocID: 1vfRI - View Document

Cell Systems  Cell Systems Call Principles of Systems Biology, No. 13 This month: CRISPR flexes its massively parallel muscles (see also this month’s editorial), two systems-level properties discovered in yeast, and a

Cell Systems Cell Systems Call Principles of Systems Biology, No. 13 This month: CRISPR flexes its massively parallel muscles (see also this month’s editorial), two systems-level properties discovered in yeast, and a

DocID: 1uTiG - View Document

Chromosomal deletions using CRISPR-Cas9 gene editing toolkit

Chromosomal deletions using CRISPR-Cas9 gene editing toolkit

DocID: 1uE9h - View Document

brief communications  © 2018 Nature America, Inc., part of Springer Nature. All rights reserved. On the design of CRISPR-based single-cell

brief communications © 2018 Nature America, Inc., part of Springer Nature. All rights reserved. On the design of CRISPR-based single-cell

DocID: 1uE7m - View Document