Arthur Korte
Arthur Korte
group leader
Tel: +49- 931 - 31 80361
eMail: arthur.korte@uni-wuerzburg.de
twitter: arthurkorte
github: arthurkorte
Research
Research Text here.
Curriculum Vitae
2015 | - | now | Junior-Professor of Evolutionary Genomics | Faculty of Biology, University of Würzburg, Würzburg, Germany |
2010 | - | 2015 | Postdoc | Gregor-Mendel Institute of Molecular Plant Biology, Vienna, Austria |
2009 | - | 2010 | Postdoc | Institute of Botany, TU Munich, Germany |
2005 | - | 2009 | PhD candidate | Institute of Botany, TU Munich, Germany |
2001 | - | 2004 | Diploma student | University of Freiburg, Freiburg, Germany |
1997 | - | 2001 | Undergraduate student | University of Freiburg, Freiburg, Germany |
Publications
- [ 2022 ]
- [ 2020 ]
- [ 2018 ]
- [ 2017 ]
- [ 2016 ]
- [ 2013 ]
- [ 2012 ]
- [ 2011 ]
- [ 2010 ]
- [ 2009 ]
- [ 2008 ]
- [ 2007 ]
- [ 2003 ]
2022[ to top ]
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Efficient permutation-based genome-wide association studies for normal and skewed phenotypic distributions in Bioinformatics (2022). 38(Supplement\_2) ii5-ii12.
2020[ to top ]
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A systematic comparison of chloroplast genome assembly tools in Genome Biology (2020). 21(1) 254.
2018[ to top ]
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Natural allelic variation of the AZI1 gene controls root growth under zinc-limiting condition in PLOS Genetics (2018). 14(4) 1–23.
2017[ to top ]
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The AraGWAS Catalog: a curated and standardized Arabidopsis thaliana GWAS catalog in Nucleic Acids Research (2017). gkx954.
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Genetic Components of Root Architecture Remodeling in Response to Salt Stress in The Plant Cell (2017).
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AraPheno: a public database for Arabidopsis thaliana phenotypes in Nucleic acids research (2017). 45(D1) D1054-D1059.
2016[ to top ]
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Multiple alleles at a single locus control seed dormancy in Swedish Arabidopsis in Elife (2016). 5 e22502.
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Leaf growth response to mild drought: natural variation in Arabidopsis sheds light on trait architecture in The Plant Cell (2016). 28(10) 2417–2434.
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1,135 Genomes Reveal the Global Pattern of Polymorphism in Arabidopsis thaliana in Cell (2016). 166(2) 481–491.
2013[ to top ]
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The advantages and limitations of trait analysis with GWAS: a review in Plant Methods (2013). 9 29–29.
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Massive genomic variation and strong selection in Arabidopsis thaliana lines from Sweden in Nature genetics (2013). 45(8) 884–890.
2012[ to top ]
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Arabidopsis thaliana AUCSIA-1 regulates auxin biology and physically interacts with a kinesin-related protein in PloS one (2012). 7(7) e41327.
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An efficient multi-locus mixed-model approach for genome-wide association studies in structured populations in Nature genetics (2012). 44(7) 825–830.
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A mixed-model approach for genome-wide association studies of correlated traits in structured populations in Nature genetics (2012). 44(9) 1066–1071.
2011[ to top ]
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A map of local adaptation in Arabidopsis thaliana in Science (2011). 334(6052) 86–89.
2010[ to top ]
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Closely related receptor complexes differ in their ABA selectivity and sensitivity in The Plant Journal (2010). 61(1) 25–35.
2009[ to top ]
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Regulators of PP2C phosphatase activity function as abscisic acid sensors in Science (2009). 324(5930) 1064–1068.
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Identifizierung und Charakterisierung des Abscisinsäure-Responsregulators GCA2 in Arabidopsis thaliana PhD thesis, M{\"u}nchen, Techn. Univ., Diss., 2009. (2009).
2008[ to top ]
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Nuclear localization of the mutant protein phosphatase abi1 is required for insensitivity towards ABA responses in Arabidopsis in The Plant Journal (2008). 54(5) 806–819.
2007[ to top ]
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GER1, a GDSL motif-encoding gene from rice is a novel early light-and jasmonate-induced gene in Plant Biology (2007). 9(01) 32–40.
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Function of phytochelatin synthase in catabolism of glutathione-conjugates in The Plant Journal (2007). 49(4) 740–749.
2003[ to top ]
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Impaired induction of the jasmonate pathway in the rice mutant hebiba in Plant Physiology (2003). 133(4) 1820–1830.