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Showing 1 to 4 of 4 for “"ILTSE"”.

  1. Genetic, Genomic, and Breeding Approaches to Further Explore Kernel Composition Traits and Grain Yield in Maize

    … the Illinois long-term selection experiment (ILTSE) materials. Fewer QTL were detected in the IBM population than in populations derived from the ILTSE strains and only two QTL detected in the IBM population co-localized for both protein and starch. This differed from the findings from ILTSE

    uiuc Repository record for Genetic, Genomic, and Breeding Approaches to Further Explore Kernel Composition Traits and Grain Yield in Maize (opens in a new tab)

  2. Genome editing with CRISPR-Cas9 in the Illinois long term selection experiment

    … the Illinois Long Term Selection Experiment (ILTSE), a unique germplasm resource for studies of genome evolution and genetic variants that contribute to phenotypic traits. ILTSE genotypes, Illinois High Protein 1 and Illinois Low Protein 1, create highly regenerable embryogenic type I callus, …

    uiuc Repository record for Genome editing with CRISPR-Cas9 in the Illinois long term selection experiment (opens in a new tab)

  3. Phenotypic response to selection for protein in maize kernels

    … The Illinois Long-Term Selection Experiment (ILTSE) was remarkably successful in changing the protein concentration in the grain. The Illinois High Protein (IHP) population is the only original population still undergoing selection. IHP has now undergone 116 cycles of selection, and represents …

    uiuc Repository record for Phenotypic response to selection for protein in maize kernels (opens in a new tab)

  4. Discovery of novel regulators and genes in nitrogen utilization pathways in maize

    … the Illinois long term selection experiment (ILTSE) for seed nitrogen concentration. The developmental dynamics of nitrogen response were described for the reference genotype, B73, and were coordinated with physiological and environmental dynamics. Classes of genes that showed coordinated …

    uiuc Repository record for Discovery of novel regulators and genes in nitrogen utilization pathways in maize (opens in a new tab)