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[[Quint Lab| <font face="trebuchet ms" style="color:#ffffff"> '''Home''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
{| cellspacing="2px" cellpadding="0" border="0" style="padding: 0px; width: 790px; color: #000000; background-color: #ffffff;"
[[Quint Lab:Contact | <font face="trebuchet ms" style="color:#ffffff"> '''Contact''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
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[[Quint Lab:Back Door | <font face="trebuchet ms" style="color:#ffffff"> '''Internal''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
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[[Quint Lab:Lab Members | <font face="trebuchet ms" style="color:#ffffff"> '''Lab Members''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
[[Quint Lab:Publications | <font face="trebuchet ms" style="color:#ffffff"> '''Publications''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
[[Quint Lab:Research | <font face="trebuchet ms" style="color:#ffffff"> '''Research''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
[[Quint Lab:Talks | <font face="trebuchet ms" style="color:#ffffff"> '''Talks''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
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'''howdy''',<br>
besides trying to figure out how to eat noodles without tomato sauce all over, our lab is primarily interested in plant hormone responses in the tiny weed arabidopsis thaliana. since several of these signaling cascades are regulated by the ubiquitin-proteasome system, we are also engaged in functional characterization of a number of f-box proteins. we apply mostly genetic approaches such as forward genetic screens, making use of natural variation within the global arabidopsis gene pool, and quantitative genetics (qtl mapping).<br>


[[Image:IMGP0777.jpg‎|750px]]
[[Image:Arabidopsis_smiley-compressed.jpg‎|400px|left]][[Image:Wordle_03-13.png‎|350px|right]] <br>




[[Category:Lab]]
 
 
 
 
 
 
the quint lab is part of the [http://www.ipb-halle.de/en/research/molecular-signal-processing/ department of molecular signal processing] at the [http://www.ipb-halle.de/en/ leibniz institute of plant biochemistry] in halle (saale), germany. 5 keywords to describe our major [http://openwetware.org/wiki/Quint_Lab:Research research interests]: <br>
- [http://en.wikipedia.org/wiki/Auxin auxin]<br>
- [http://en.wikipedia.org/wiki/Genetic_diversity natural variation]<br>
- [http://en.wikipedia.org/wiki/Evo-devo evo-devo]<br>
- [http://en.wikipedia.org/wiki/Genomics genomics]/[http://en.wikipedia.org/wiki/Transcriptomics transcriptomics]<br>
- [http://en.wikipedia.org/wiki/Quantitative_genetics quantitative genetics] 
 
 
'''selected publications''':
 
[[Image:logo_pone.png|100px|left]] Navarro-Quezada A, Schumann N, Quint M ('''2013''') Plant F-Box protein evolution is determined by lineage-specific timing of major gene family expansion waves. [http://dx.plos.org/10.1371/journal.pone.0068672 PloS ONE 8: e68672] ('''open access'''). <br>
 
 
[[Image:Logo_naturesmall.png|100px|left]] Quint M, Drost H-G, Gabel A, Ullrich KK, Boenn M, Grosse I ('''2012''') A transcriptomic hourglass in plant embryogenesis. [http://www.ncbi.nlm.nih.gov/pubmed/22951968 Nature 490:98-101]; [[Media:Nature_cover_10-04-2012.jpg|cover]]; [http://f1000.com/717957827?bd=1 Faculty of 1000 recommended]<br>
 
 
[[Image:Logo_trends.png|100px|left]] Delker C, Quint M ('''2011''') Expression level polymorphisms: heritable traits shaping natural variation. [http://www.ncbi.nlm.nih.gov/pubmed/21700486 Trends in Plant Science 9:481-488].<br>
 
 
[[Image:Logo_plantphys.png‎|100px|left]] Schumann N, Navarro-Quezada AR, Ullrich K, Kuhl C, Quint M ('''2011''') Molecular Evolution and Selection Patterns of Plant F-box Proteins with C-terminal Kelch Repeats. [http://www.ncbi.nlm.nih.gov/pubmed/21119043 Plant Physiology 155:835-850] ('''open access''').<br>
 
[[Image:Logo_plant_cell.png|100px|left]] Delker C, Pöschl Y, Raschke A, Ullrich K, Ettingshausen S, Hauptmann V, Grosse I, Quint M ('''2010''') Natural variation of transcriptional auxin response networks in ''Arabidopsis thaliana''. [http://www.ncbi.nlm.nih.gov/pubmed/20622145 Plant Cell 22:2184-2200] ('''open access''').<br>
 
 
[[Image:Logo_plantphys.png‎|100px|left]] Quint M, Barkawi LS, Fan K-T, Cohen JD, Gray WM ('''2009''') Arabidopsis IAR4 modulates auxin response by regulating auxin homeostasis. [http://www.ncbi.nlm.nih.gov/pubmed/19395411?ordinalpos=1&itool=Email.EmailReport.Pubmed_ReportSelector.Pubmed_RVDocSum Plant Physiology 150:748-758] ('''open access''').<br>
 
 
[[Image:Logo_pnas.jpg‎|100px|left]]  Zhang W, Ito H, Quint M, Huang H, Noël LD, Gray WM ('''2008''') Genetic analysis of CAND1-CUL1 interactions in Arabidopsis supports a role for CAND1-mediated cycling of the SCFTIR1 complex. [http://www.ncbi.nlm.nih.gov/pubmed/18550827?dopt=AbstractPlus Proc Natl Acad Sci U S A 105:8470-8475] ('''open access'''). <br>
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Revision as of 02:21, 31 October 2013

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the quint lab is part of the department of molecular signal processing at the leibniz institute of plant biochemistry in halle (saale), germany. 5 keywords to describe our major research interests:
- auxin
- natural variation
- evo-devo
- genomics/transcriptomics
- quantitative genetics


selected publications:

Navarro-Quezada A, Schumann N, Quint M (2013) Plant F-Box protein evolution is determined by lineage-specific timing of major gene family expansion waves. PloS ONE 8: e68672 (open access).


Quint M, Drost H-G, Gabel A, Ullrich KK, Boenn M, Grosse I (2012) A transcriptomic hourglass in plant embryogenesis. Nature 490:98-101; cover; Faculty of 1000 recommended


Delker C, Quint M (2011) Expression level polymorphisms: heritable traits shaping natural variation. Trends in Plant Science 9:481-488.


Schumann N, Navarro-Quezada AR, Ullrich K, Kuhl C, Quint M (2011) Molecular Evolution and Selection Patterns of Plant F-box Proteins with C-terminal Kelch Repeats. Plant Physiology 155:835-850 (open access).


Delker C, Pöschl Y, Raschke A, Ullrich K, Ettingshausen S, Hauptmann V, Grosse I, Quint M (2010) Natural variation of transcriptional auxin response networks in Arabidopsis thaliana. Plant Cell 22:2184-2200 (open access).


Quint M, Barkawi LS, Fan K-T, Cohen JD, Gray WM (2009) Arabidopsis IAR4 modulates auxin response by regulating auxin homeostasis. Plant Physiology 150:748-758 (open access).


Zhang W, Ito H, Quint M, Huang H, Noël LD, Gray WM (2008) Genetic analysis of CAND1-CUL1 interactions in Arabidopsis supports a role for CAND1-mediated cycling of the SCFTIR1 complex. Proc Natl Acad Sci U S A 105:8470-8475 (open access).


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