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How to Compute with DNA.

, , , , and . FSTTCS, volume 1738 of Lecture Notes in Computer Science, page 269-282. Springer, (1999)

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The Evolution of DNA Computing: Nature's Solution to a Computational Problem, and . Genetic Programming 1998: Proceedings of the Third Annual Conference, page 700--708. University of Wisconsin, Madison, Wisconsin, USA, Morgan Kaufmann, (22-25 July 1998)Biocomputation in Ciliates., and . Cellular Computing, Oxford University Press, (2004)LUCApedia: a database for the study of ancient life., , , and . Nucleic Acids Res., 41 (Database-Issue): 1079-1082 (2013)Computer science and the evolution of genetic information., and . Comput. Sci. Eng., 1 (5): 12-15 (1999)Programmed Genome Processing in Ciliates., , , and . Discrete and Topological Models in Molecular Biology, Springer, (2014)DNA2DNA computations: A potential "killer app?"., , and . DNA Based Computers, volume 48 of DIMACS Series in Discrete Mathematics and Theoretical Computer Science, page 161-172. DIMACS/AMS, (1997)Strategies for RNA-Guided DNA Recombination., , , and . Algorithmic Bioprocesses, page 83-98. Springer, (2009)BLASTO: a tool for searching orthologous groups., and . Nucleic Acids Res., 35 (Web-Server-Issue): 678-682 (2007)RNA based computing: Some examples from RNA catalysis and RNA editing.. DNA Based Computers, volume 44 of DIMACS Series in Discrete Mathematics and Theoretical Computer Science, page 181-189. DIMACS/AMS, (1996)Computational power of gene rearrangement., and . DNA Based Computers, volume 54 of DIMACS Series in Discrete Mathematics and Theoretical Computer Science, page 207-216. DIMACS/AMS, (1999)