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Ann 2012 "Biological Databases, Data Mining Tools & Approaches to the Analysis of Chromosome Structures" Proceedings of the International Conference on Statistical Data Mining for Bioinformatics Health, Agriculture and Environment, 21-24 December 2012, Rajshahi University, Bangladesh.īlakey, C. International Conference Proceedings Articles (Peer-Reviewed)īlakey, C. Tripsacum genetics: from observations along a river to molecular genomics.
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In Ball State University Mathematics Exchange, Spring 2008, 5(1): 10 pages.īlakey, C., Costich, D., Sokolov, V., Islam-Faridi, M. Wide Hybridization as a source of increasing cereal plant biodiversity.
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Graphical Modeling for High Dimensional Data. Network motif identification and structure detection with graphical models. In "Epigenetic Gene Expression and Regulation. Litt (2016) Histone Modifications - Models and Mechanisms. Elsevier/ Academic Press, New York.īlakey, C. Litt (2016) Epigenetic gene expression - An Introduction. "Epigenetic Gene Expression and Regulation.” Elsevier/ Academic Press, New York. Develop database structures through collaborative research for population genetic analyses.Analyze data collections for patterns of inheritance in sub-population structures with limited heterozygosity.Develop biocomputational algorthims through collaborative research for genomic research.Develop genome analyses based on theoretical approaches to problems in genome structure and gene expression.
#Rick spencer bsu university of texas software
Characterize changes in sequences through the development and use of genetic algorithms and comparative genome analysis software tools.Perform genetics analyses on genomic and transcriptomic sequences of plant species to identify key genes associated with specific traits or functions.The focus of the first goal is primarily directed towards the analysis ofĪgronomically and horticulturally important crops of the Gramineae and Orchidaceae, respectively, but has applications in other species. The second goal provides a means of analysis of economically important genetic traits in otherwise relatively homogeneous populations of more common breeds of equine. Specific Goals: Exploring two distinctly different areas of research that includes both plant and mammalian genetics, 1) genome structure and functional relationships, in prokaryotic, mammalian, and plant systems, and 2) population structures and dynamics of critically endangered breeds of equine through pedigree database development, research, and analyses with applications to the genetic analyses of human genealogical databases. My general interests are in genome structure and function, including epigenetics and bioinformatics from the whole organism level to the molecular level. Untied States Department of Agriculture – ARS (1993)