Dr.Keith Crandall
(he/him/his)
Professor of Biostatistics and Bioinformatics
Biostatistics & Bioinformatics
- Professor of Biostatistics and BioinformaticsBiostatistics & Bioinformatics
- 5715530107 (Work)
RESEARCH INTERESTS
My research program has three main aspects. The first and central component is work on the development and testing through computer simulation of methods for the analysis of DNA sequence data. We have developed methods for estimating gene genealogies, detecting recombination, detecting selection, characterizing microbiome components, and measuring diversity and demographic events in the history of a population. We develop software to implement many of these methods and then develop software to test our methods and many others by comparison through computer simulation. Through comparison and tests of robustness to assumption violations, we can gain great insights into why particular methods perform well or poorly and then are in a good position to redevelop improved methodology. In fact, we are currently embarking on the development of a comprehensive simulation software package that allows one, for the first time, to examine the impact of a host of population genetic phenomena at the same time (e.g., migration, mutation, recombination, selection, fluctuating population sizes, tracking geographic locations of alleles in a population, multiple locus populations, etc.). Through such studies, we gain a better understanding of the methodology we use to infer evolutionary and population demographic histories and associated parameter estimates when we apply them to empirical data. Furthermore, such studies provide valuable insights into the development of new and improved theory and methodology for inference from DNA sequence data.
The remaining two aspects of my research program deal with applications of the above methodologies in two fairly distinct arenas. The first is in molecular ecology, conservation biology, and systematics research. We have applied the methods developed and tested in our lab (and many others) to examine the populations genetics, historical demography, and molecular ecology of various species of freshwater crayfish. We have also examined the molecular systematics of a variety of organisms, from the origin of dogs to the origin of freshwater crayfishes. You will see from my CV that the systematic studies are typically collaborative studies. I firmly believe in collaboration, especially in systematic studies that require both organismal (including morphological and ecological) expertise and molecular (including phylogenetic analysis) expertise. We the freshwater crayfishes, we typically are the morphological and taxonomic experts as well. However, with all the other organismal groups, we develop (often international) teams of expertise to tackle outstanding questions in systematic biology. We then apply our results to a diversity of biogeographic and conservation biology questions. These typically lead naturally into broader issues relating to conservation biology such as diagnosing species and the relative importance of different sources of information regarding conservation priorities and conservation status such as ecological data versus genetic data.
The second focus of my empirical research is in the area of the evolution of infectious diseases. Here we focus on microbiome diversity (functional and taxonomic) and how that relates to organismal health. We also develop methods and implement such approaches to track population dynamics of infectious diseases such as HIV, HCV, etc. We are involved in all phases of this work from the molecular approaches to the statistical models to the computational implementation.
The research outlined in these three main areas in my lab has enjoyed a diversity of funding from the National Institutes of Health, the National Science Foundation, and private agencies such as the Alfred P. Sloan Foundation and the Pharmaceutical Manufacturers of America. My research program is moving evermore into the genomics and bioinformatics arena and applying these insights into conservation management, human health, and biomedical applications.
GRANTS
- GRANTEffects of a non-nutritive sweetener reduction intervention in pregnancy and lactation on maternal and infant outcomes (the SWEETPEA trial)National Institutes of Health1 Mar 2024 - 1 Mar 2029
- GRANTPlatforma web para priorizção de variantes gengenéticas de doenças cardiovasculares, baseada em meta-aprendizado em população brasileira, integrando vias metabólicas e perfil clínicoCNPq – Brazil1 Jan 2024 - 31 Dec 2026
- GRANTSurveillance of aphid-borne viruses through non-quarantine interceptionsU.S. Department of Agriculture1 May 2023 - 30 Apr 2024