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Genetic mapping reveals new loci and alleles for flowering time and plant height using the HvDRR population of barley

ORCID
0000-0002-4822-7971
Zugehörigkeit
Heinrich Heine University, Institute for Quantitative Genetics and Genomics of Plants, Germany
Cosenza, Francesco;
ORCID
0000-0003-4878-6965
Zugehörigkeit
Heinrich Heine University, Institute for Quantitative Genetics and Genomics of Plants, Germany
Shrestha, Asis;
ORCID
0000-0002-2819-843X
Zugehörigkeit
Heinrich Heine University, Institute for Quantitative Genetics and Genomics of Plants, Germany
Van Inghelandt, Delphine;
Zugehörigkeit
Heinrich Heine University, Institute for Quantitative Genetics and Genomics of Plants, Germany
Casale, Federico A;
ORCID
0000-0002-7342-2867
Zugehörigkeit
Heinrich Heine University, Institute for Quantitative Genetics and Genomics of Plants, Germany
Wu, Po-Ya;
ORCID
0000-0001-6000-065X
Zugehörigkeit
Heinrich Heine University, Institute for Quantitative Genetics and Genomics of Plants, Germany
Weisweiler, Marius;
Zugehörigkeit
Max Planck Institute for Plant Breeding Research, Germany
Li, Jinquan;
Zugehörigkeit
Saatzucht Josef Breun GmbH Co. KG, Germany
Wespel, Franziska;
GND
133077462
ORCID
0000-0001-6791-8068
Zugehörigkeit
Current address: Julius Kühn-Institut (JKI), Institut für Züchtungsforschung an Landwirtschaftlichen Kulturen, Deutschland
Stich, Benjamin

Flowering time and plant height are two critical determinants of yield potential in barley (Hordeum vulgare). Despite their role in the plant physiological regulation, a complete overview of the genetic complexity of flowering time and plant height regulation in barley is still lacking. Through a double round-robin population originated from the crossings of 23 diverse parental inbred lines, we aimed to determine the variance components in the regulation of flowering time and plant height in barley as well as identify new genetic variants by single and multi-population QTL analyses and allele mining. Despite similar genotypic variance, we observed higher environmental variance components for plant height than flowering time. Furthermore, we detected new QTL for flowering time and plant height. Finally, we identified a new functional allelic variant of the main regulatory gene Ppd-H1. Our results show that the genetic architecture of flowering time and plant height might be more complex than reported earlier and that a number of undetected, small effect, or low-frequency, genetic variants underlie the control of these two traits.

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