Research – Ratcliff Lab @ Georgia Tech
For a list of Prof. Ratcliff’s publications, check the “Publications” section, or his Google Scholar profile. The evolution of multicellular organisms from unicellular ancestors was critical to the evolution of large, complex organisms. While multicellularity has evolved more than 25 times independently during the last 3.5 billion years on Earth, the first steps in this transition remain poorly understood. In our lab, we use experiments and theory to understand: Our main model system is “snowflake yeast”, which we originally obtained from a unicellular genotype of Baker’s yeast (strain Y55) simply by selecting for rapid sedimentation through liquid media. Snowflake yeast have an emergent multicellular life cycle, in which daughter cells fail to separate from their mothers, resulting in the growth of branched groups. These groups grow, until strain resulting from cell division severs a cell-cell connection, resulting in the release of a propagule. It turns out that novel multicellular
For a list of Prof. Ratcliff’s publications, check the “Publications” section, or his Google Scholar profile . Evolution of multicellularity The evolution of multicellular organisms from unicellular ancestors was critical to the evolution of large, complex organisms. While multicellularity has evolved more than 25 times independently during the last 3.5 billion years on Earth, the first steps in this transition remain poorly understood. In our lab, we use experiments and theory to understand: Under what conditions does multicellularity evolve? How do dumb clumps of cells evol
related reading
- Evolutionary Game Theory: Theoretical Concepts and Applications to Microbial Communitiesepub.ub.uni-muenchen.de
- Condensed and Living Matter Seminar: “Multicellular is different: the biophysical basis of multicellular growth” (Peter Yunker) | Center for Soft and Living Matterweb.sas.upenn.edu
- Research – Yunker Labyunkerlab.gatech.edu
- A Symbiotic View of Life: We Have Never Been Individuals | The Quarterly Review of Biology: Vol 87, No 4journals.uchicago.edu
- Philosophy of Cell Biology (Stanford Encyclopedia of Philosophy)plato.stanford.edu
- A revolution in biologybitsofwonder.co
- s9909.pdfassets.press.princeton.edu
- Red Queen hypothesis - Wikipediaen.wikipedia.org
- A Call for Context (in Cell Culture) - New Sciencenewscience.substack.com
- Cell-cell interactions and the development of bacterial communities - Ned Wingreengrantome.com
- Proliferating active matter - PMCpmc.ncbi.nlm.nih.gov
- Complexity Explorables | Eigenartigcomplexity-explorables.org