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2,620 results for “Molecular Phylogeny”
Fig. 1 in A preliminary molecular phylogeny of shield-bearer moths (Lepidoptera: Adeloidea: Heliozelidae) highlights rich undescribed diversity
Fig. 1. (a) Adult habitus of Antispila hydrangaeella, female (Photo: E.J. van Nieukerken); (b) Head close up of undescribed heliozelid species showing flattened scales (SEM: Q. Wang); (c) Fully grown Heliozela resplendella larva with shield, mine in Alnus incana (Photo: R. Bryner); (d) Characteristic heliozelid leaf mines, produced by Holocacista capensis (Photo: E.J. van Nieukerken).
Fig. 4 in A preliminary molecular phylogeny of shield-bearer moths (Lepidoptera: Adeloidea: Heliozelidae) highlights rich undescribed diversity
Fig. 4. ML cladogram inferred from four genes with biogeographical region of each Heliozelidae specimen indicated by the colour of rectangle at the branch tip. Clades recovered in highlight. Major host plant families are listed next to each clade.
Fig. 3 in A preliminary molecular phylogeny of shield-bearer moths (Lepidoptera: Adeloidea: Heliozelidae) highlights rich undescribed diversity
Fig. 3. ML tree (ln = −51259.825874) inferred from four genes. Branch lengths are proportional to ML estimated branch lengths. The numbers above the branches are MP bootstrap supports/Bayesian posterior probabilities calculated using gene-partitioned models. Only support values at or above 80% bootstrap and 0.8 posterior probabilities for the major clades are shown. Adult representatives of various Heliozelidae genera are shown next to corresponding group. Species names and photo credits: Antispila group I: A. treitschkiella, Switzerland (R. Bryner); Coptodisca group: C. splendoriferella, USA (C. Eiseman); Holocacista group: H. capensis, male, South Africa (E.J. van Nieukerken); Heliozela + Tyriozela group: Heliozela sp., Australia (D. Carman); Pseliastis group: Pseliastis sp., Australia (L. Milla); Hoplophanes group: Hoplophanes sp., Australia (D.A. Young).
Fig. 51 in Molecular phylogeny and classification of Lyropaeini (Coleoptera: Lycidae) with description of larvae and new species of Lyropaeus
Fig. 51. Geographical distribution of Lyropaeini.
Figure 2 in Molecular phylogeny found the distribution of Bungarus candidus in China (Squamata: Elapidae)
Figure 2. Sample localities of B. candidus and B. multicinctus in China.
Fig. 8 in On ''Molecular Phylogeny of Vespidae (Hymenoptera) and the Evolution of Sociality in Wasps''
Fig. 8. Screen display of first step in realignment. See text for explanation of gap insertion.
Fig. 9 in On ''Molecular Phylogeny of Vespidae (Hymenoptera) and the Evolution of Sociality in Wasps''
Fig. 9. Screen display of second step in realignment. See text for explanation of gap insertion.
Fig. 1. Cladogram for the 16S in On ''Molecular Phylogeny of Vespidae (Hymenoptera) and the Evolution of Sociality in Wasps''
Fig. 1. Cladogram for the 16S mtrDNA alignment of Schmitz and Moritz (1998). The length is
Fig. 3 in A Molecular Perspective on the Phylogeny of the Girdled Lizards (Cordylidae, Squamata)
Fig. 3. Strict consensus of trees shown in figures 1 and 2.
FIG. 1 in Morphological description and molecular phylogeny of two diatom clones from the genus Ulnaria (Kützing) Compère isolated from an ultraoligotrophic lake at the Pole of Cold in the Northern Hemisphere, Republic of Sakha (Yakutia), Russia
FIG. 1. — Study site (62°33'33"N; 143°36'27"E), Lake Labynkyr, Sakha Republic (Yakutia), Russia.
Taxonomy and molecular phylogeny of the sea anemone Macrodactyla (Haddon, 1898) (Cnidaria, Actiniaria), with a description of a new species from Singapore
<p>Supplementary materials (High resolution). Journal: <em>Zoological Studies</em>. Title: <em>Taxonomy and molecular phylogeny of the sea anemone Macrodactyla (Haddon, 1898) (Cnidaria, Actiniaria), with a description of a new species from Singapore</em>.</p> <p>ABSTRACT: Sea anemones (Cnidaria, Actiniaria) are a successful group of marine invertebrates found in a diverse range of environments globally. In spite of their ubiquity, identities for many sea anemones remain unverified, especially those from the Indo-West Pacific region. Here, we clarify the taxonomy of the poorly known <em>Macrodactyla aspera,</em> a shallow-water species first described from the Torres Straits in northern Australia. We re-describe <em>M. aspera</em> based on new morphological and molecular data gathered from the type specimen, other museum vouchers, and from fresh material collected from Singapore. We tested the monophyly of <em>Macrodactyla</em> using three mitochondrial (12S, 16S and cox3) and one nuclear (28S) marker based on three congeners, recovering this genus to be polyphyletic. As a consequence, we transferred <em>M. doreensis</em> to the genus <em>Heteractis</em>, and describe a new species, <em>Macrodactyla fautinae</em> sp. nov. While both<em> M. aspera </em>and <em>M. fautinae </em>sp. nov. share the same arrangement and number of complete mesenteries, a similar distribution of cnidae, and are not symbiotically associated with any other biota, <em>M. fautinae </em>sp. nov. has perforated, lobe-like verrucae on its column, and lacks nematocyst batteries on its tentacles, unlike <em>M. aspera</em>. These two species also occur in similar habitats in Singapore. Finally, because <em>M. aspera</em> strongly resembles Dofleinia armata, the latter species flagged as a danger to public health due to its ability to inflict painful stings, we tested the relationship between these species and found them not to be closely related. However, tentacles of <em>M. aspera</em>, like <em>D. armata</em>, are densely covered with nematocyst batteries and harbour large nematocysts; we infer that M. aspera may also be capable of delivering stings that endanger public health. This study builds upon a growing number of studies that aim to ascertain identities and systematics of sea anemones historically reported from the Indo-West Pacific. Our findings will facilitate accurate species identification, which is crucial for advancing research, formulating conservation measures, and protecting public health.</p>
Data for a preliminary molecular phylogeny of the family Hydroptilidae (Trichoptera): exploring the combination of targeted enrichment data and legacy Sanger sequence data
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Molecular phylogeny of Dermestidae (Coleoptera) reveals the polyphyletic nature of Trogoderma Latreille, and the taxonomic placement of the Khapra Beetle Trogoderma granarium Everts
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Data from: Morphotaxonomy and molecular phylogeny unveil one new species and two new records of Phlegmacium (Cortinariaceae) from India
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Molecular phylogeny reveals the past transoceanic voyages of drywood termites (Isoptera, Kalotermitidae)
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Data from: Targeted enrichment of large gene families for phylogenetic inference: phylogeny and molecular evolution of photosynthesis genes in the Portullugo clade (Caryophyllales)
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On the computational reproducibility of molecular phylogenies
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A comprehensive molecular phylogeny of the genus Sylvirana (Anura: Ranidae) highlights unrecognized diversity, revised classification and historical biogeography
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Molecular phylogeny and morphological perianth evolution in Corymbia (Myrtaceae), and the implications for generic delimitation: data and tree files
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Fossil calibrated molecular phylogenies of Southern cave weta
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