IGEM:Berkeley/2010: Difference between revisions
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| rowspan=2 | [[Image:berkeleyCampanile01.jpg|left|200px]]''' | | rowspan=2 | [[Image:berkeleyCampanile01.jpg|left|200px]]'''Choa Choa's Delivery Service''' | ||
The ability to manipulate the DNA of an organism is vital to many modern fields of biology. While we have perfected this in common research species such as E. coli, yeast and mouse cells, it is still impossible to transform many other species researchers study. Our project is an attempt to develop transgenics ) techniques for a family of single celled organisms called choanoflagellates. These species are interesting to researchers because they are the closest living relative to our microbial ancestor that became the first multicellular animal. Nicole King, here at UC Berkeley, and other researchers across the globe who study these little creatures are hindered by the inability to genetically manipulate them. | The ability to manipulate the DNA of an organism is vital to many modern fields of biology. While we have perfected this in common research species such as E. coli, yeast and mouse cells, it is still impossible to transform many other species researchers study. Our project is an attempt to develop transgenics ) techniques for a family of single celled organisms called choanoflagellates. These species are interesting to researchers because they are the closest living relative to our microbial ancestor that became the first multicellular animal. Nicole King, here at UC Berkeley, and other researchers across the globe who study these little creatures are hindered by the inability to genetically manipulate them. | ||
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[[Template:SBB-Protocols_ELISA | ELISA]]<br> | [[Template:SBB-Protocols_ELISA | ELISA]]<br> | ||
[[2ab Assembly]]<br> | [[2ab Assembly]]<br> | ||
[[Gibson Assembly]] | [[Gibson Assembly]]<br> | ||
[[Choano Food Preperation]] | |||
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'''Subgroup Strategies, Overview''' | '''Subgroup Strategies, Overview''' | ||
[http://2010.igem.org/Team:Berkeley '''iGEM Wiki for Berkeley'''] | |||
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