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Insight into MAS: A Molecular Tool for Development of Stress Resistant and Quality of Rice through Gene Stacking
by
Das, Gitishree
, Baek, Kwang-Hyun
, Patra, Jayanta Kumar
in
Abiotic stress
/ Agricultural production
/ Biomarkers
/ Control methods
/ Crop diseases
/ Crop production
/ Crop yield
/ Cultivars
/ Environmental impact
/ gene pyramiding
/ Genes
/ Genetic engineering
/ genome mapping
/ Genomes
/ Genotypes
/ Marker-assisted selection
/ molecular markers
/ Pathogens
/ phenotype traits
/ physiological traits
/ Plant Science
/ Polymorphism
/ Quantitative trait loci
/ Rice
2017
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Insight into MAS: A Molecular Tool for Development of Stress Resistant and Quality of Rice through Gene Stacking
by
Das, Gitishree
, Baek, Kwang-Hyun
, Patra, Jayanta Kumar
in
Abiotic stress
/ Agricultural production
/ Biomarkers
/ Control methods
/ Crop diseases
/ Crop production
/ Crop yield
/ Cultivars
/ Environmental impact
/ gene pyramiding
/ Genes
/ Genetic engineering
/ genome mapping
/ Genomes
/ Genotypes
/ Marker-assisted selection
/ molecular markers
/ Pathogens
/ phenotype traits
/ physiological traits
/ Plant Science
/ Polymorphism
/ Quantitative trait loci
/ Rice
2017
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Do you wish to request the book?
Insight into MAS: A Molecular Tool for Development of Stress Resistant and Quality of Rice through Gene Stacking
by
Das, Gitishree
, Baek, Kwang-Hyun
, Patra, Jayanta Kumar
in
Abiotic stress
/ Agricultural production
/ Biomarkers
/ Control methods
/ Crop diseases
/ Crop production
/ Crop yield
/ Cultivars
/ Environmental impact
/ gene pyramiding
/ Genes
/ Genetic engineering
/ genome mapping
/ Genomes
/ Genotypes
/ Marker-assisted selection
/ molecular markers
/ Pathogens
/ phenotype traits
/ physiological traits
/ Plant Science
/ Polymorphism
/ Quantitative trait loci
/ Rice
2017
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Insight into MAS: A Molecular Tool for Development of Stress Resistant and Quality of Rice through Gene Stacking
Journal Article
Insight into MAS: A Molecular Tool for Development of Stress Resistant and Quality of Rice through Gene Stacking
2017
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Overview
Rice yield is subjected to severe losses due to adverse effect of a number of stress factors. The most effective method of controlling reduced crop production is utilization of host resistance. Recent technological advances have led to the improvement of DNA based molecular markers closely linked to genes or QTLs in rice chromosome that bestow tolerance to various types of abiotic stresses and resistance to biotic stress factors. Transfer of several genes with potential characteristics into a single genotype is possible through the process of marker assisted selection (MAS), which can quicken the advancement of tolerant/resistant cultivars in the lowest number of generations with the utmost precision through the process of gene pyramiding. Overall, this review presented various types of molecular tools including MAS that can be reasonable and environmental friendly approach for the improvement of abiotic and biotic stress resistant rice with enhanced quality.
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