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Cees M Karssen grad student 1982 University of Wageningen
Jaap van der Veen grad student 1977-1982 Wageningen University
 (The genetics of some planthormones and photoreceptors in Arabidopsis thaliana (L.) Heynh.)
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Jiao WB, Patel V, Klasen J, et al. (2020) The evolutionary dynamics of genetic incompatibilities introduced by duplicated genes in Arabidopsis thaliana. Molecular Biology and Evolution
El-Soda M, Neris Moreira C, Goredema-Matongera N, et al. (2019) QTL and candidate genes associated with leaf anion concentrations in response to phosphate supply in Arabidopsis thaliana. Bmc Plant Biology. 19: 410
Ariga H, Katori T, Tsuchimatsu T, et al. (2017) NLR locus-mediated trade-off between abiotic and biotic stress adaptation in Arabidopsis. Nature Plants. 3: 17072
Liller CB, Walla A, Boer MP, et al. (2016) Fine mapping of a major QTL for awn length in barley using a multiparent mapping population. Tag. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik
Fransz P, Linc G, Lee CR, et al. (2016) Molecular, genetic and evolutionary analysis of a paracentric inversion in Arabidopsis thaliana. The Plant Journal : For Cell and Molecular Biology
Zapata L, Ding J, Willing EM, et al. (2016) Chromosome-level assembly of Arabidopsis thaliana Ler reveals the extent of translocation and inversion polymorphisms. Proceedings of the National Academy of Sciences of the United States of America
He F, Arce A, Schmitz G, et al. (2016) The footprint of polygenic adaptation on stress-responsive cis-regulatory divergence in the Arabidopsis genus. Molecular Biology and Evolution
Bühler J, Rishmawi L, Pflugfelder D, et al. (2015) phenoVein - A tool for leaf vein segmentation and analysis. Plant Physiology
Liller CB, Neuhaus R, von Korff M, et al. (2015) Mutations in Barley Row Type Genes Have Pleiotropic Effects on Shoot Branching. Plos One. 10: e0140246
Barboza-Barquero L, Nagel KA, Jansen M, et al. (2015) Phenotype of Arabidopsis thaliana semi-dwarfs with deep roots and high growth rates under water-limiting conditions is independent of the GA5 loss-of-function alleles. Annals of Botany. 116: 321-31
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