Agronomy · 2020 · 95 citations · 117 references
Abiotic StressesGeneticsMolecular GeneticsGenomicsCrop ImprovementGene PyramidingSustainable Crop ImprovementApplied GeneticsSustainable Agricultural ProductionCrop EnhancementSustainable AgriculturePublic HealthQuantitative GeneticsAgricultural GeneticsMolecular BreedingGenetic VariationAgricultural BiotechnologyBiologyCrop ToleranceCrop ProtectionGenetic EngineeringSeed StorageMedicineGenome Editing
Sustainable agricultural production is endangered by several ecological factors, such as drought, extreme temperatures, excessive salts, parasitic ailments, and insect pest infestation. These challenging environmental factors may have adverse effects on future agriculture production in many countries. In modern agriculture, conventional crop-breeding techniques alone are inadequate for achieving the increasing population’s food demand on a sustainable basis. The advancement of molecular genetics and related technologies are promising tools for the selection of new crop species. Gene pyramiding through marker-assisted selection (MAS) and other techniques have accelerated the development of durable resistant/tolerant lines with high accuracy in the shortest period of time for agricultural sustainability. Gene stacking has not been fully utilized for biotic stress resistance development and quality improvement in most of the major cultivated crops. This review emphasizes on gene pyramiding techniques that are being successfully deployed in modern agriculture for improving crop tolerance to biotic and abiotic stresses for sustainable crop improvement.
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A rice quantitative trait locus for salt tolerance encodes a sodium transporter
Zhonghai Ren, Jiping Gao, Legong Li et al. · Nature Genetics · 2005 · 1.5K citations
Christopher B. Barrett · Science · 2010 · 1.2K citations
Speed breeding is a powerful tool to accelerate crop research and breeding
Amy Watson, Sreya Ghosh, Matthew Williams et al. · Nature Plants · 2017 · 1.1K citations · Full text