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Marker-assisted selection: an approach for precision plant breeding in the twenty-first century

B. C. Y. CollardD. J. Mackill

Abstract

DNA markers have enormous potential to improve the efficiency and precision of conventional plant breeding via marker-assisted selection (MAS). The large number of quantitative trait loci (QTLs) mapping studies for diverse crops species have provided an abundance of DNA marker-trait associations. In this review, we present an overview of the advantages of MAS and its most widely used applications in plant breeding, providing examples from cereal crops. We also consider reasons why MAS has had only a small impact on plant breeding so far and suggest ways in which the potential of MAS can be realized. Finally, we discuss reasons why the greater adoption of MAS in the future is inevitable, although the extent of its use will depend on available resources, especially for orphan crops, and may be delayed in less-developed countries. Achieving a substantial impact on crop improvement by MAS represents the great challenge for agricultural scientists in the next few decades.

Genetic Mapping and Diversity in Plants and AnimalsWheat and Barley Genetics and PathologyGenetics and Plant BreedingSelection (genetic algorithm)TraitQuantitative trait locusGenomic selectionBiotechnologyPlant breedingMarker-assisted selectionCropBiologyAgriculture

MeSH terms

AgricultureGenetic MarkersHumansSelection, GeneticGenetic VariationCrops, AgriculturalPlants, Genetically ModifiedQuantitative Trait Loci

Funding

  • Virginia Commonwealth University
Citations
2,179
FWCI
17.94
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155
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