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- W2959650322 abstract "Genome engineering by site-specific nucleases enables reverse genetics and targeted editing of genomes in an efficacious manner. Contemporary revolutionized progress in targeted-genome engineering technologies based on CRISPR-related RNA-guided endonucleases facilitate coherent interrogation of crop genome function. Evolved as an innate component of adaptive immune response in bacterial and archaeal systems, CRISPR/Cas system is now identified as a versatile molecular tool that ensures specific and targeted genome modification in plants. Applications of this genome redaction tool-kit include somatic genome editing, rectification of genetic disorders or gene therapy, treatment of infectious diseases, generation of animal models and crop improvement. We review the utilization of these synthetic nucleases as precision targeted-genome editing platforms with the inherent potential to accentuate basic science “strengths and shortcomings” of gene function, complement plant breeding techniques for crop improvement, chartering a knowledge base for effective use of editing technology for the ever-increasing agricultural demands. Further, the emerging importance of Cpf1, Cas9 nickase, C2c2 as other innovative candidates that may prove more effective in driving novel applications in crops are also discussed. The mined data has been prepared as library and opened for public use at www.lipre.org." @default.
- W2959650322 created "2019-07-23" @default.
- W2959650322 creator A5002805918 @default.
- W2959650322 creator A5017733376 @default.
- W2959650322 creator A5030086776 @default.
- W2959650322 creator A5036759148 @default.
- W2959650322 creator A5044119996 @default.
- W2959650322 creator A5045534023 @default.
- W2959650322 creator A5050190052 @default.
- W2959650322 creator A5056511201 @default.
- W2959650322 creator A5059836790 @default.
- W2959650322 creator A5083983507 @default.
- W2959650322 date "2019-07-09" @default.
- W2959650322 modified "2023-10-16" @default.
- W2959650322 title "Data Mining by Pluralistic Approach on CRISPR Gene Editing in Plants" @default.
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