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1079篇 您的检索式:期刊名="Molecular Biology Evolution"
    题名 作者 年代 出处 被引量
1Phylogenetic position of foraminifera inferred from LSU rRNA gene sequence显示文摘Pawlowski J Bolivar I Guiard-Maffia J 1994Molecular Biology and Evolution1994,11,6:1
2The neighbor - joining method: a new method for reconstructing phylogenetic trees显示文摘Saitou N Nei M 1987Molecular Biology and Evolution1987,4,:1
3Relative efficiencies of the maximum parsimony and disentance matrix methods in obtaining the correct phylogenetic tree显示文摘SORDIS J NEI M 1988Molecular Biology and evolution1988,5,:1
4Genome phylogenetic analysis based on extended gene contents 显示文摘GU Xun ZHANG Hong-mei 2004Molecular Biology and Evolution2004,21,7:1
5MEGA5: Molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods 显示文摘Koichiro T Daniel P Nicholas P 2011Molecular Biology and Evolution2011,28,:1
6Whole-genome duplications spurred the functional diversification of the globin gene superfamily in vertebrates 显示文摘Hoffmann F G Opazo J C Storz J F 2012Molecular Biology and Evolution2012,29,1:1
7MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods 显示文摘Tamura K Peterson D Peterson N Stecher G Nei M Kumar S 2011Molecular Biology and Evolution2011,28,10:1
8MEGA5: Molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods显示文摘Tamura K Peterson D Peterson N 2011Molecular Biology and Evolution2011,28,10:1
9MEGA5:molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods显示文摘Tamura K Peterson D Peterson N 2011Molecular Biology and Evolution2011,28,10:1
10The neighbor-joining method:A new method for reconstructing phylogenetic trees显示文摘SAITOU N NEI M 1987Molecular Biology and Evolution1987,4,:1
11MEGA 5: Molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods 显示文摘Tamura K Petemon D Petemon N 2011Molecular Biology and Evolution2011,28,:1
12MEGA5 : Molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods 显示文摘Tamura K Peterson D Peterson N Stecher G Nei M Kumar S 2011Molecular Biology and Evolution2011,28,:1
13Multilocus analysis of nucleotide variation and speciation in Oryza officinalis and its close relatives显示文摘Zhang LB Ge S 2007Molecular Biology and Evolution2007,24,3:1
14MEGA5 : Molecular evolutionary genetics analysis using maximum likelihood, evolu- tionary distance, and maximum parsimony methods 显示文摘Tamura K Peterson D Peterson N 2011Molecular Biology and Evolution2011,28,10:1
15Estimating synonymous and nonsynonymous substitution rates under realistic evolutionary models显示文摘YANG Z RASMUS N 2000Molecular Biology and Evolution2000,17,1:1
16Early origin of foraminifera suggested by SSU rRNA gene sequences显示文摘Pawlowski J Bolivar I Fahni J F 1996Molecular Biology and Evolution1996,13,3:1
17Slipped-strand mispairing: a major mechanism for DNA sequence evolution 显示文摘LEVINSON G GUTMAN G A 1987Molecular Biology and Evolution1987,4,3:1
18Dramatic mitochondrial gene rearrangements in the hermit crab Pagurus longicarpus (Crustacea,anomura)显示文摘Hickerson M J Cunningham C W 2000Molecular Biology and Evolution2000,17,4:1
19Selection of conserved blocks from multiple alignments for their use in phylogenetic analysis显示文摘Castresana J 2000Molecular Biology and Evolution2000,17,4:1
20Molecular phylogenetic evidence for a reversible morphogenetic switch controlling the gross morphology of two common genera of green seaweeds, Ulva and Enteromorpha 显示文摘TAN I H BLOMS3'FA J HANSEN G 1999Molecular Biology Evolution1999,16,8:1
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