Area of research
Genetics · Plant Science
Research interest
Research interests include Genetic Mapping and Diversity in Plants and Animals, Crop Yield and Soil Fertility, Genetics and Plant Breeding, and Plant Gene Expression Analysis.
High Density Phenotypic Map of Natural Variation for Intermediate Phenotypes Associated with Stalk Lodging Resistance in Maize
Genomic prediction of stalk lodging resistance and the associated intermediate phenotypes in maize using whole-genome resequence and multi-environmental data
Genomic prediction of stalk lodging resistance and the associated intermediate phenotypes in maize using whole‐genome resequence and multi‐environmental data
High-density Phenotype Data of Intermediate Phenotypes Associated with Stalk Lodging Resistance in Maize
The effect of structural bending properties versus material bending properties on maize stalk lodging
Biomechanical phenotyping pipeline for stalk lodging resistance in maize
Sorghum bicolor L. Stalk Stiffness Is Marginally Affected by Time of Day under Field Conditions
Moving toward short stature maize: The effect of plant height on maize stalk lodging resistance
Unveiling the phenotypic landscape of stalk lodging resistance in diverse maize hybrids
Biomechanical Phenotyping Pipeline for Stalk Lodging Resistance in Maize
Cross-sectional geometry predicts failure location in maize stalks
Additional file 1 of Cross-sectional geometry predicts failure location in maize stalks
The importance of dominance and genotype-by-environment interactions on grain yield variation in a large-scale public cooperative maize experiment
Genetic Architecture of Maize Rind Strength Revealed by the Analysis of Divergently Selected Populations
Cross-Sectional Geometry Predicts Failure Location in Maize Stalks
Stalk Bending Strength is Strongly Associated with Maize Stalk Lodging Incidence Across Multiple Environments
Maize genomes to fields (G2F): 2014–2017 field seasons: genotype, phenotype, climatic, soil, and inbred ear image datasets
Diverse maize hybrids are structurally inefficient at resisting wind induced bending forces that cause stalk lodging
Are Maize Stalks Efficiently Tapered to Withstand Wind Induced Bending Stresses?
Genetic Architecture of Maize Rind Strength Revealed by the Analysis of Divergently Selected Populations
Stalk Bending Strength is Strongly Associated with Maize Stalk Lodging Incidence Across Multiple Environments
An Expanded Maize Gene Expression Atlas based on RNA Sequencing and its Use to Explore Root Development
Insights into the Maize Pan-Genome and Pan-Transcriptome
Maize HapMap2 identifies extant variation from a genome in flux