baker-lab stanford.edu

Baker Lab

Welcome to the Baker Lab! The Baker laboratory examines the genomics underlying the differentiation and evolution of fetal cell types. We use multiple model systems, including frog and mouse embryos, embryonic stem cells, trophoblast stem cells and human tissues, to ask how cell types in the fetus form, how these cell types are regenerated, how particular lineages evolved and how these processes might lead to human disease. Scroll down for highlights of some recent findings! The egg is the only cell that.

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EDEN Evo-Devo-Eco Network

To fund active interchange of tools and techniques among labs working on emerging model systems. To find out how to apply for a research exchange grant. To fund undergraduates in the field of Evo-Devo-Eco with an emphasis on emerging model systems. To find out how to apply for an undergraduate internship. EDEN GRANTS ARE NO LONGER AVAILABLE. Thanks to all of your for your support of EDEN over the years! .

XenMine Home

Search and retrieve integrated Xenopus tropicalis and Xenopus laevis data with XenMine. Search XenMine for the genomic location, spatio-temporal expression and publications for a gene. Examine biological enrichment of a list of genes. Eg rpl12, rpl13a, rpl14, rpl18, rpl24, rpl27a, rpl28, rpl29, rpl30, rpl32, rpl35, rpl35a, rpl37a, rpl38, rpl39, rpl9, rps11, rps12, rps13, rps16, rps17. Save or manipulate lists of genes for further analysis. Please visit XenMine browser JBrowse.

Edward Chuong Postdoctoral fellow at the University of Utah

I am currently a postdoctoral fellow in the labs of Dr. At the University of Utah in Salt Lake City. Vertebrate genomes are littered with remnants of ancient retroviruses. Our study, just published in Science. University of Utah Press release.

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Baker Lab

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Welcome to the Baker Lab! The Baker laboratory examines the genomics underlying the differentiation and evolution of fetal cell types. We use multiple model systems, including frog and mouse embryos, embryonic stem cells, trophoblast stem cells and human tissues, to ask how cell types in the fetus form, how these cell types are regenerated, how particular lineages evolved and how these processes might lead to human disease. Scroll down for highlights of some recent findings! The egg is the only cell that.

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This site baker-lab.stanford.edu states the following, "Welcome to the Baker Lab! The Baker laboratory examines the genomics underlying the differentiation and evolution of fetal cell types." We noticed that the website said " We use multiple model systems, including frog and mouse embryos, embryonic stem cells, trophoblast stem cells and human tissues, to ask how cell types in the fetus form, how these cell types are regenerated, how particular lineages evolved and how these processes might lead to human disease." It also stated " Scroll down for highlights of some recent findings! The egg is the only cell that."

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