Preprints.org · 2021 · 18 citations · 179 references
EngineeringGeneticsAgricultural EconomicsMolecular BiologyGenomicsRapid Population GrowthGenetically Modified CropsCrispr/cas9 SystemCrop ImprovementCrop EnhancementSustainable AgricultureOff-target EffectCell ModificationAgricultural BiotechnologyGenome EditingGene ExpressionFunctional GenomicsCrispr/cas Gene EditingRna InterferenceCrop ProtectionGenetic EngineeringSynthetic Plant BiologyGene EditingSystems BiologyMedicineCrispr
With the rapid population growth, there is an urgent need for innovative crop improvement approaches to meet the increasing demand for food. Classical crop improvement approaches involve, however, a backbreaking process that cannot equipoise with increasing crop demand. RNA based approaches i.e. RNAi-mediated gene regulation and site-specific nuclease based CRISPR/Cas9 system for gene editing has made advances in the efficient targeted modification in many crops for the higher yield and resistance to diseases and different stresses. In functional genomics, RNA interference (RNAi) is a propitious gene regulatory approach that plays a significant role in crop improvement by permitting down-regulation of gene expression by small molecules of interfering RNA without affecting the expression of other genes. Gene editing technologies viz. clustered regularly interspaced short palindromic repeat (CRISPR)/CRISPR-associated protein (CRISPR/Cas) have appeared prominently as a powerful tool for precise targeted modification of nearly all crops genome sequence to generate variation and accelerate breeding efforts. In this regard, the review highlights the diverse roles and applications of RNAi and CRISPR/Cas9 system as powerful technologies to improve agronomically important plants to enhance crop yields and increase tolerance to environmental stress (biotic or abiotic). Ultimately, these technologies can prove to be important in view of global food security and sustainable agriculture.
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Multiplex Genome Engineering Using CRISPR/Cas Systems
Le Cong, F. Ann Ran, David Cox et al. · Science · 2013 · 15.4K citations
Duplexes of 21-nucleotide RNAs mediate RNA interference in cultured mammalian cells
Sayda M. Elbashir, Jens Harborth, Winfried Lendeckel et al. · Nature · 2001 · 9.3K citations
RNA-Guided Human Genome Engineering via Cas9
Prashant Mali, Luhan Yang, Kevin M. Esvelt et al. · Science · 2013 · 9.2K citations · Full text