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Genetic exchange. Science 2000, 288:1211-1215.21. Morrison HG, McArthu…

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Genetic exchange. Science 2000, 288:1211-1215.21. Morrison HG, McArthur AG, Gillin FD, Aley SB, Adam RD, Olsen GJ, Best AA, Cande WZ, Chen F, Cipriano MJ, et al.: Genomic minimalism in the early diverging intestinal parasite Giardia lamblia. Science 2007, 317:1921-1926. 22. Poxleitner MK, Carpenter ML, Mancuso JJ, Wang CJ, Dawson SC, Cande WZ: Evidence for karyogamy and exchange of genetic material in the binucleate intestinal parasite Giardia intestinalis. Science 2008, 319:1530-1533. 23. Adam RD: Biology of Giardia lamblia. Clin Microbiol Rev 2001, 14:447-475. 24. Biagini GA, Yarlett N, Ball GE, Billetz AC, Lindmark DG, Martinez MP, Lloyd D, Edwards MR: Bacterial-like energy metabolism in the amitochondriate protozoon Hexamita inflata. Mol Biochem Parasitol 2003, 128:11-19. 25. Andersson JO, Hirt RP, Foster PG, Roger AJ: Evolution of four gene families with patchy phylogenetic distribution: influx of genes into protist genomes. BMC Evol Biol 2006, 6:27. 26. Nash TE: Surface antigenic variation in Giardia lamblia. Mol Microbiol 2002, 45:585-590. 27. Weiland ME, McArthur AG, Morrison HG, Sogin ML, Sv d SG: Annexin-like alpha giardins: a new cytoskeletal gene family in Giardia lamblia. Int J Parasitol 2005, 35:617-626. 28. Field J, Rosenthal PubMed ID:https://www.ncbi.nlm.nih.gov/pubmed/25751659 B, Samuelson J: Early lateral transfer of genes encoding malic enzyme, acetyl-CoA synthetase and alcohol dehydrogenases from anaerobic prokaryotes to Entamoeba histolytica. Mol Microbiol 2000, 38:446-455. 29. Andersson JO, Sj ren , Davis LAM, Embley TM, Roger AJ: Phylogenetic analyses of diplomonad genes reveal frequent lateral gene transfers affecting eukaryotes. Curr Biol 2003, 13:94-104. 30. Andersson JO: Gene transfer and diversification of microbial eukaryotes. Annu Rev Microbiol 2009, 63:177-193. 31. Romero H, Zhang Y, Gladyshev VN, Salinas G: Evolution of selenium utilization traits. Genome Biol 2005, 6:R66. 32. Erpin project [http://tagc.univ-mrs.fr/erpin/] 33. Gautheret D, Lambert A: Direct RNA motif definition and identification from multiple sequence alignments using secondary structure profiles. J Mol Biol 2001, 313:1003-1011. 34. Zhang Y, Romero H, Salinas G, Gladyshev VN: Dynamic evolution of selenocysteine utilization in bacteria: a balance between selenoprotein loss and evolution of selenocysteine from redox active cysteine residues. Nelfinavir (Mesylate) Genome Biol 2006, 7:17. 35. Carlton JM, Hirt RP, Silva JC, Delcher AL, Schatz M, Zhao Q, Wortman JR, Bidwell SL, Alsmark UC, Besteiro S, et al.: Draft genome sequence of the sexually transmitted pathogen Trichomonas vaginalis. Science 2007, 315:207-212. 36. Que X, Sv d SG, Meng TC, Hetsko ML, Aley SB, Gillin FD: Developmentally regulated transcripts and evidence of differential mRNA processing in Giardia lamblia. Mol Biochem Parasitol 1996, 81:101-110. 37. Mazumder B, Seshadri V, Fox PL: Translational control by the 3'-UTR: the ends specify the means. Trends Biochem Sci 2003, 28:91-98. 38. Chen SL, Lee W, Hottes AK, Shapiro L, McAdams HH: Codon usage between genomes is constrained by genome-wide mutational processes. Proc Natl Acad Sci USA 2004, 101:3480-3485. 39. Knight RD, Freeland SJ, Landweber LF: A simple model based on mutation and selection explains trends in codon and amino-acid usage and GC composition within and across genomes. Genome Biol 2001, 2:0010. 40. Lafay B, Sharp PM: Synonymous codon usage variation among Giardia lamblia genes and isolates. Mol Biol Evol 1999, 16:1484-1495. 41. Novembre JA: Accounting for background nucleotide composi.

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