Abstract Objectives Crop improvement relies on analysis of phenotypic, genotypic, and environmental data. Given large, well-integrated, multi-year datasets, diverse queries can be made: Which lines perform best in hot, dry environments? Which alleles of specific genes are required for optimal performance in each environment? Such datasets also can be leveraged to predict cultivar performance, even in uncharacterized environments. The maize Genomes to Fields (G2F) Initiative is a multi-institutional organization of scientists working to generate and analyze such datasets from existing, publicly available inbred lines and hybrids. G2F’s genotype by environment project has released 2014 and 2015 datasets to the public, with 2016 and 2017 colle...
International audienceCrop species rely on genetic and phenotypic diversity to adapt to various envi...
With climate changes, crops will be subjected to more frequent episodes of drought and high temperat...
University of Minnesota Ph.D. dissertation.March 2018. Major: Applied Plant Sciences. Advisor: Rex ...
Objectives: Crop improvement relies on analysis of phenotypic, genotypic, and environmental data. Gi...
Abstract Objectives This release note describes the Maize GxE project datasets within the Genomes to...
Objectives The Genomes to Fields (G2F) 2022 Maize Genotype by Environment (GxE) Prediction Competiti...
Improved G2F is a data repository consisting of OMICs (genetic and phenotypic) and environmental dat...
Objectives This report provides information about the public release of the 2018–2019 Maize G X E pr...
This dissertation aims to develop and implement a climate-analytics framework to improve maize yield...
The phenotypic data consisted of grain yield (ton/ha) records collected from two data sets of tropic...
CLIM4OMICS Analytics and Database is Improved database of G2F data repository that contains OMICs (g...
CLIM4OMICS Analytics and Database is Improved database of G2F data repository that contains OMICs (g...
The development of germplasm adapted to changing climate is required to ensure food security1,2. Gen...
Maize is one of major crop species over the world. With lots of genetic resources and genomic tools,...
International audienceCrop species rely on genetic and phenotypic diversity to adapt to various envi...
With climate changes, crops will be subjected to more frequent episodes of drought and high temperat...
University of Minnesota Ph.D. dissertation.March 2018. Major: Applied Plant Sciences. Advisor: Rex ...
Objectives: Crop improvement relies on analysis of phenotypic, genotypic, and environmental data. Gi...
Abstract Objectives This release note describes the Maize GxE project datasets within the Genomes to...
Objectives The Genomes to Fields (G2F) 2022 Maize Genotype by Environment (GxE) Prediction Competiti...
Improved G2F is a data repository consisting of OMICs (genetic and phenotypic) and environmental dat...
Objectives This report provides information about the public release of the 2018–2019 Maize G X E pr...
This dissertation aims to develop and implement a climate-analytics framework to improve maize yield...
The phenotypic data consisted of grain yield (ton/ha) records collected from two data sets of tropic...
CLIM4OMICS Analytics and Database is Improved database of G2F data repository that contains OMICs (g...
CLIM4OMICS Analytics and Database is Improved database of G2F data repository that contains OMICs (g...
The development of germplasm adapted to changing climate is required to ensure food security1,2. Gen...
Maize is one of major crop species over the world. With lots of genetic resources and genomic tools,...
International audienceCrop species rely on genetic and phenotypic diversity to adapt to various envi...
With climate changes, crops will be subjected to more frequent episodes of drought and high temperat...
University of Minnesota Ph.D. dissertation.March 2018. Major: Applied Plant Sciences. Advisor: Rex ...