<p>Method: Neighbor-Joining, phylogeny test: Bootstrap (1 000 reps), substitution model: amino acid with Jones-Taylor-Thornton (JTT) model. Bootstrap values over 50% are indicated on the top of each node. The orders of insect species are indicated. <i>Spodoptera</i> Su(var) 3-9 is highlighted with prism. Abbreviations: Sf, <i>Spodoptera</i><i>frugiperda</i>; Sl<i>, </i><i>Scoliopteryx</i><i>libatrix</i>; Bm, <i>Bombyx mori</i>; Tc, <i>Tribolium</i><i>castaneum</i>; Am, <i>Apis mellifera</i>; Dm, <i>Drosophila melanogaster</i>; Hs, <i>Homo sapiens</i>.</p
<p>Neighbor-Joining method was used. Shown here is the optimal tree with the sum of branch length = ...
Methods for construction of phylogenetic trees see S1 Fig legend. ML model tested as LG+G+I (Equilib...
<p>The tree on the left summarizes the results of ML analyses while the tree on the right summarizes...
<p>The phylogenetic tree was constructed based on a JTT matrix with 1000 bootstrap replicates by MEG...
<p>A three-letter code has been included to indicate the order name of the corresponding insects and...
<p>The phylogenetic tree was generated via Maximum Likelihood method based on the poisson correction...
<p>The bootstrap neighbor-joining tree was generated using MEGA from ClustalW alignments. Branch num...
<p>The tree was constructed by the neighbor-joining method. Numbers shown are bootstrap values expre...
<p>BD, <i>Bactrocera dorsalis</i>. CC, <i>Ceratitis capitata</i>. DM, <i>Drosophila melanogaster</i>...
<p>Sequences are labeled with the species Latin names plus GenBank accession numbers. Bootstrap valu...
<p>The bootstrap neighbor-joining tree was generated using MEGA from ClustalW alignments. Branch num...
<p>The percentage of percentage of bootstrap confidence values is shown at the nodes. </p
<p>The phylogenetic tree was produced by neighbor-joining plot software using GST sequences obtained...
<p>The tree was made by the neighbor-joining method with multiple alignments of amino acid sequences...
<p>A rooted phylogenetic tree constructed by the maximum-likelihood method (the best-fitting model, ...
<p>Neighbor-Joining method was used. Shown here is the optimal tree with the sum of branch length = ...
Methods for construction of phylogenetic trees see S1 Fig legend. ML model tested as LG+G+I (Equilib...
<p>The tree on the left summarizes the results of ML analyses while the tree on the right summarizes...
<p>The phylogenetic tree was constructed based on a JTT matrix with 1000 bootstrap replicates by MEG...
<p>A three-letter code has been included to indicate the order name of the corresponding insects and...
<p>The phylogenetic tree was generated via Maximum Likelihood method based on the poisson correction...
<p>The bootstrap neighbor-joining tree was generated using MEGA from ClustalW alignments. Branch num...
<p>The tree was constructed by the neighbor-joining method. Numbers shown are bootstrap values expre...
<p>BD, <i>Bactrocera dorsalis</i>. CC, <i>Ceratitis capitata</i>. DM, <i>Drosophila melanogaster</i>...
<p>Sequences are labeled with the species Latin names plus GenBank accession numbers. Bootstrap valu...
<p>The bootstrap neighbor-joining tree was generated using MEGA from ClustalW alignments. Branch num...
<p>The percentage of percentage of bootstrap confidence values is shown at the nodes. </p
<p>The phylogenetic tree was produced by neighbor-joining plot software using GST sequences obtained...
<p>The tree was made by the neighbor-joining method with multiple alignments of amino acid sequences...
<p>A rooted phylogenetic tree constructed by the maximum-likelihood method (the best-fitting model, ...
<p>Neighbor-Joining method was used. Shown here is the optimal tree with the sum of branch length = ...
Methods for construction of phylogenetic trees see S1 Fig legend. ML model tested as LG+G+I (Equilib...
<p>The tree on the left summarizes the results of ML analyses while the tree on the right summarizes...