Team:Missouri Miners/Team

From 2011.igem.org

(Difference between revisions)
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<h3 style="color: silver; font-weight: bold; font-size: large">Instructor:</h3>
<h3 style="color: silver; font-weight: bold; font-size: large">Instructor:</h3>
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<div style="margin-left: 10px;">
<h4 style="color: #42C555; font-weight: bold; font-size: large">Dr. David Westenberg</h4>
<h4 style="color: #42C555; font-weight: bold; font-size: large">Dr. David Westenberg</h4>
<p style="text-indent: 0px">Associate Professor of Biological Sciences</p>
<p style="text-indent: 0px">Associate Professor of Biological Sciences</p>
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<p style="text-indent: 0px; font-weight: bold ">Education:</p>
<p style="text-indent: 0px; font-weight: bold ">Education:</p>
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<p style="text-indent: 0px">University of CA - Los Angeles, Doctor of Philosophy, 1991</p>
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<p>University of CA - Los Angeles, Doctor of Philosophy, 1991</p>
<p style="text-indent: 0px; font-weight: bold ">Research Interests:</p>
<p style="text-indent: 0px; font-weight: bold ">Research Interests:</p>
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*Regulation of the bradyrhizobium japonicum sdh operon encoding succinate dehydrogenase <br />
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*Regulation of the bradyrhizobium japonicum sdh operon encoding succinate dehydrogenase
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*Evidence for AHL autoinducer production by the soybean symbiont bradyrhizobium japonicum <br />
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*Evidence for AHL autoinducer production by the soybean symbiont bradyrhizobium japonicum
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*High efficiency separation of microbial aggregates using capillary electrophoresis <br />
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*High efficiency separation of microbial aggregates using capillary electrophoresis
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*separating microbes in the manner of molecules. 1. Capillary electrokinetic approaches <br />
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*separating microbes in the manner of molecules. 1. Capillary electrokinetic approaches
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*Succinate dehydrogenase (Sdh) from Bradyrhizobium japonicum is closely related to mitochondrial Sdh <br />
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*Succinate dehydrogenase (Sdh) from Bradyrhizobium japonicum is closely related to mitochondrial Sdh
 +
</div>
<h3 style="color: silver; font-weight: bold; font-size: large">Advisor:</h3>
<h3 style="color: silver; font-weight: bold; font-size: large">Advisor:</h3>
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<div style="margin-left: 10px;">
<h4 style="color: #42C555; font-weight: bold; font-size: large">Dr. Katie Shannon</h4>
<h4 style="color: #42C555; font-weight: bold; font-size: large">Dr. Katie Shannon</h4>
<p style="text-indent: 0px">Associate Professor of Biological Sciences</p>
<p style="text-indent: 0px">Associate Professor of Biological Sciences</p>
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<p style="text-indent: 0px; font-weight: bold ">Education:</p>
<p style="text-indent: 0px; font-weight: bold ">Education:</p>
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<p style="text-indent: 0px">Harvard Medical School, Doctor of Philosophy, 2000</p>
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<p>Harvard Medical School, Doctor of Philosophy, 2000</p>
<p style="text-indent: 0px; font-weight: bold ">Research Interests:</p>
<p style="text-indent: 0px; font-weight: bold ">Research Interests:</p>
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*Cytoskeleton  
*Cytoskeleton  
*Nanoparticle uptake and transport
*Nanoparticle uptake and transport
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</div>
<h3 style="color: silver; font-weight: bold; font-size: large">Students:</h3>
<h3 style="color: silver; font-weight: bold; font-size: large">Students:</h3>

Revision as of 01:46, 29 September 2011

Missouri Miners Team


Instructor:

Dr. David Westenberg

Associate Professor of Biological Sciences


Djwesten.jpg

Education:

University of CA - Los Angeles, Doctor of Philosophy, 1991

Research Interests:

  • Regulation of the bradyrhizobium japonicum sdh operon encoding succinate dehydrogenase
  • Evidence for AHL autoinducer production by the soybean symbiont bradyrhizobium japonicum
  • High efficiency separation of microbial aggregates using capillary electrophoresis
  • separating microbes in the manner of molecules. 1. Capillary electrokinetic approaches
  • Succinate dehydrogenase (Sdh) from Bradyrhizobium japonicum is closely related to mitochondrial Sdh

Advisor:

Dr. Katie Shannon

Associate Professor of Biological Sciences


Shannonk.jpg

Education:

Harvard Medical School, Doctor of Philosophy, 2000

Research Interests:

  • Cytokinesis
  • Cell Cycle
  • Cytoskeleton
  • Nanoparticle uptake and transport

Students:

Erica Shannon Amanda Foster April Pummill
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President

Major: Biological Sciences

Vice-President

Major: Biology & BiochemE

Public Relations

Major: Biochemical Engineering

Blythe Ferrier Brice Curtin Lou Harmon
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Treasurer

Major: Chemical Engineering

Secretary

Major: Chemistry

Webmaster

Major: Computer Science

Alie Abele David Pohlman Erica McFarland
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Major: Lab Manager

Major: Biochemical Engineering

Major:
Hannah Frye Beth Wilkins Emily Puleo
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Major: Biochemistry Major: Biology & Chemistry Major: Biochemistry
Scott Hack Logan Sauerbrei Chester Gregg
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Major: Biology & EnvE Major: Biological Sciences Major: CompSci & Physics
Amber Kreps Christy Kwon Gavin Pringle
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Major: Biological Sciences Major: Major:
Greg Niles Tyler Robinson
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Major: Mechanical Engineering Major: