R. G. Miller
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Also affiliated: RiceTec (United States) (2008)
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Biography and Research Information
OverviewAI-generated summary
R. G. Miller's research focuses on improving wheat cultivation, particularly soft red winter wheat adapted to the southern United States. Their work investigates genetic factors influencing grain yield, adaptation, and tolerance to environmental stresses such as soil waterlogging. Publications detail the identification of quantitative trait loci (QTL) and major genes associated with these traits, aiming to enhance genomic selection for yield and spectral reflectance. This includes research on vernalization and photoperiod loci, as well as the effects of allelic variation at specific genes like Rht-B1 and Rht-D1. Additionally, Miller has contributed to rice germplasm development, registering lines with introgressed sheath blight resistance alleles. The researcher's work also encompasses the registration of new wheat germplasm lines adapted to specific regional conditions.
Metrics
- h-index: 7
- Publications: 10
- Citations: 274
Selected Publications
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‘AR11LE24’, a Soft Red Winter Wheat Adapted to the Mid‐South Region of the USA (2018)
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Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat (2017)
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Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat (2017)
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Performance of soft red winter wheat subjected to field soil waterlogging: Grain yield and yield components (2016)
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Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL (2014)
Collaboration Network
Top Collaborators
- Performance of soft red winter wheat subjected to field soil waterlogging: Grain yield and yield components
- Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
- ‘AR11LE24’, a Soft Red Winter Wheat Adapted to the Mid‐South Region of the USA
- Performance of soft red winter wheat subjected to field soil waterlogging: Grain yield and yield components
- Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
- Performance of soft red winter wheat subjected to field soil waterlogging: Grain yield and yield components
- Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
- Performance of soft red winter wheat subjected to field soil waterlogging: Grain yield and yield components
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
- Performance of soft red winter wheat subjected to field soil waterlogging: Grain yield and yield components
- Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- Performance of soft red winter wheat subjected to field soil waterlogging: Grain yield and yield components
- Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- ‘AR11LE24’, a Soft Red Winter Wheat Adapted to the Mid‐South Region of the USA
- Performance of soft red winter wheat subjected to field soil waterlogging: Grain yield and yield components
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
- Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- Association mapping reveals loci associated with multiple traits that affect grain yield and adaptation in soft winter wheat
- ‘AR11LE24’, a Soft Red Winter Wheat Adapted to the Mid‐South Region of the USA
- Diagnostic Markers for Vernalization and Photoperiod Loci Improve Genomic Selection for Grain Yield and Spectral Reflectance in Wheat
- ‘AR11LE24’, a Soft Red Winter Wheat Adapted to the Mid‐South Region of the USA
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
- Tolerance of wheat to vegetative stage soil waterlogging is conditioned by both constitutive and adaptive QTL
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