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      Interrelationships and diversification of Argynnis Fabricius and Speyeria Scudder butterflies : Argynnis and Speyeria diversification

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          BUTTERFLIES AND PLANTS: A STUDY IN COEVOLUTION

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            Evolution of Eastern Asian and Eastern North American Disjunct Distributions in Flowering Plants

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              Genomic outposts serve the phylogenomic pioneers: designing novel nuclear markers for genomic DNA extractions of lepidoptera.

              Increasing the number of characters used in phylogenetic studies is the next crucial step towards generating robust and stable phylogenetic hypotheses - i.e., strongly supported and consistent across reconstruction method. Here we describe a genomic approach to finding new protein-coding genes for systematics in nonmodel taxa, which can be PCR amplified from standard, slightly degraded genomic DNA extracts. We test this approach on Lepidoptera, searching the draft genomic sequence of the silk moth Bombyx mori, for exons > 500 bp in length, removing annotated gene families, and compared remaining exons with butterfly EST databases to identify conserved regions for primer design. These primers were tested on a set of 65 taxa primarily in the butterfly family Nymphalidae. We were able to identify and amplify six previously unused gene regions (Arginine Kinase, GAPDH, IDH, MDH, RpS2, and RpS5) and two rarely used gene regions (CAD and DDC) that when added to the three traditional gene regions (COI, EF-1alpha and wingless) gave a data set of 8114 bp. Phylogenetic robustness and stability increased with increasing numbers of genes. Smaller taxanomic subsets were also robust when using the full gene data set. The full 11-gene data set was robust and stable across reconstruction methods, recovering the major lineages and strongly supporting relationships within them. Our methods and insights should be applicable to taxonomic groups having a single genomic reference species and several EST databases from taxa that diverged less than 100 million years ago.
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                Author and article information

                Journal
                Systematic Entomology
                Syst Entomol
                Wiley
                03076970
                October 2017
                October 2017
                May 13 2017
                : 42
                : 4
                : 635-649
                Affiliations
                [1 ]Department of Biological Sciences; University of the Pacific; Stockton CA U.S.A.
                [2 ]Department of Biological Sciences; University of Massachusetts; Lowell MA U.S.A.
                [3 ]Pacific Grove CA U.S.A.
                [4 ]Department of Biology; Lund University; Lund Sweden
                Article
                10.1111/syen.12236
                9bd7133e-7bc3-4c23-baec-29b83c684f81
                © 2017

                http://doi.wiley.com/10.1002/tdm_license_1.1

                http://creativecommons.org/licenses/by/4.0/

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