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Plants (Basel, Switzerland)|May 5, 2021
Detection of Reproducible Major Effect QTL for Petal Traits in Garden RosesDietmar Schulz, Marcus Linde, Thomas DebenerMolecular Breeding : New Strategies in Plant Improvement|December 11, 2023
Robust markers associated with floral traits in roses are suitable for marker-assisted selection across gene poolsDietmar Schulz, Marcus Linde, Thomas DebenerPlant Methods|January 6, 2026
Machine learning-based classification of roses using 18 SNP markers for optimized genebank managementLaurine Patzer, Marcus Linde, Thomas DebenerFrontiers in Plant Science|October 9, 2014
The type of ploidy of chrysanthemum is not black or white: a comparison of a molecular approach to published cytological methodsMaik Klie, Stephan Schie, Marcus Linde, et al.Molecular Genetics and Genomics : MGG|January 20, 2016
Strigolactone pathway genes and plant architecture: association analysis and QTL detection for horticultural traits in chrysanthemumMaik Klie, Ina Menz, Marcus Linde, et al.Molecular Plant Pathology|August 6, 2017
The TNL gene Rdr1 confers broad-spectrum resistance to Diplocarpon rosaeIna Menz, Jannis Straube, Marcus Linde, et al.Journal of Fungi (Basel, Switzerland)|June 23, 2022
P Starvation in Roses Leads to Strongly Genotype-Dependent Induction of P-Transporter Genes during Black Spot Leaf DiseaseHelena Sophia Domes, Enzo Neu, Marcus Linde, et al.BMC Genomics|August 22, 2012
Evolution of the Rdr1 TNL-cluster in roses and other Rosaceous speciesDiro Terefe-Ayana, Helgard Kaufmann, Marcus Linde, et al.Plant Cell Reports|June 26, 2017
Genetic dissection of adventitious shoot regeneration in roses by employing genome-wide association studiesThi Hong Nhung Nguyen, Dietmar Schulz, Traud Winkelmann, et al.Plos One|January 24, 2020
Analysis of the Rdr1 gene family in different Rosaceae genomes reveals an origin of an R-gene cluster after the split of Rubeae within the Rosoideae subfamilyIna Menz, Deepika Lakhwani, Jérémy Clotault, et al.Pageof 6