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1.
Martens Whole-genome analysis reveals molecular innovations and evolutionary transitions in chromalveolate species // Proc. Nat. Acad. Sci. USA, 2008. Vol. 105, N 9.-С.3427-3432

2.
Wanda: A database of duplicated fish genes // Nucl. Acids Res., 2002. Vol. 30, N 1.-С.109-112

3.
Wanda: A database of duplicated fish genes // Nucl. Acids Res., 2002. Vol. 30, N 1.-С.109-112

4.
The nucleotide sequence of the small ribosomal subunit RNA on the yeast Candida albicans and the evolutionary position of the fungi among the eukaryotes // Syst. and Appl. Microbiol., 1989. Vol. 12, N 3.-С.223-229

5.
The hidden duplication past of Arabidopsis thaliana // Proc. Nat. Acad. Sci. USA, 2002. Vol. 99, N 21.-С.13627-13632

6.
Van The evolution of Stramenopiles and Alveolates as derived by "substitution rate calibration" of small ribosomal subunit RNA // J. Mol. Evol., 1996. Vol. 42, N 2.-С.201-210

7.
The determination and comparison of the 16S rRNA gene sequences of species of the genus Pseudomonas (sensu stricto) and estimation of the natural intrageneric relationships // Syst. and Appl. Microbiol., 1996. Vol. 19, N 4.-С.478-492

8.
The 18S rRNA from Odontophrynus americanus 2n and 4n (Amphibia, Anura) reveals unusual extra sequences in the variable region V2 // Genome, 2004. Vol. 47, N 3.-С.421-428

9.
The 18S ribosomal RNA sequence of the sea anemone Anemonia sulcata and its efolutionary position among other eukaryotes // FEBS Lett., 1990. Vol. 269, N 2.-С.445-449

10.
Fawcett Jeffrey A. Plants with double genomes might have had a better chance to survive the Cretaceous-Tertiary extinction event // Proc. Nat. Acad. Sci. USA, 2009. Vol. 106, N 14.-С.5737-5742

11.
Phylogenetic relationships among ascomycetes and ascomycete-like yeasts as deduced from small ribosomal subunit RNA sequences // Syst. and Appl. Microbiol., 1992. Vol. 15, N 1.-С.98-104

12.
Van Molecular evolution and the incorporation of site-to-site rate variation in distance tree construction methods // Belg. J. Zool., 1999. Vol. 129, N 1.-С.5-15

13.
Vandepoele Exploring the plant transcriptome through phylogenetic profiling // Plant Physiol., 2005. Vol. 137, N 1.-С.31-42

14.
Van Evolutionary relationships among the eukaryotic crown taxa taking into account site-to-site rate variation in 18S rRNA // J. Mol. Evol., 1997. Vol. 45, N 6.-С.619-630

15.
Evolutionary relationships among higher fungi inferred from small ribosomal subunit RNA sequence analysis // Syst. and Appl. Microbiol., 1993. Vol. 16, N 3.-С.436-444

16.
Evolution of basidiomycetous yeasts as deduced from small ribosomal subunit RNA sequences // Syst. and Appl. Microbiol, 1992. Vol. 15, N 2.-С.250-258

17.
Dealing with saturation at the amino acid level: A case study based on anciently duplicated zebrafish genes // Gene, 2002. Vol. 295, N 2.-С.205-211

18.
De Database on the structure of large ribosomal subunit RNA // Nucl. Acids Res., 1997. Vol. 25, N 1.-С.117-122

19.
Van Construction of evolutionary distance trees with TREECON for Windows: Accounting for variation in nucleotide substitution rate among sites // Comput. Appl. Biosci., 1997. Vol. 13, N 3.-С.227-230

20.
Van Construction of evolutionary distance trees with TREECON for Windows: Accounting for variation in nucleotide substitution rate among sites // Comput. Appl. Biosci., 1997. Vol. 13, N 3.-С.227-230

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