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2,620 results for “Molecular Phylogeny”

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Figure 1. Phylogenetic interrelationships among 54 in Molecular phylogeny supports invalidation of Didelphodiplostomum and Pharyngostomoides (Digenea: Diplostomidae) and reveals a Tylodelphys from mammals

Figure 1. Phylogenetic interrelationships among 54 diplostomoidean taxa based on BI analysis of partial 28S rDNA gene sequences including Didelphodiplostomum and Pharyngostomoides spp. BI posterior probability values lower than 80% are not shown. The new sequences generated in this study are indicated in bold. The scale bar indicates the number of substitutions per site.

opennotspecifiedAug 2022View details →
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Figure 4 in Molecular phylogeny supports invalidation of Didelphodiplostomum and Pharyngostomoides (Digenea: Diplostomidae) and reveals a Tylodelphys from mammals

Figure 4. Photographs of: A, Tylodelphys variabilis comb. nov. from Didelphis virginiana, Arkansas; B, Alaria arisaemoides from Canis latrans, Oregon; C, Alaria alata from Nyctereutes procyonoides, Ukraine; D, Alaria marcianae from Taxidea taxus, North Dakota; E, Alaria ovalis comb. nov. from Procyon lotor, Mississippi; F, Alaria procyonis comb. nov. from Procyon lotor, Minnesota; G, H, Alaria mustelae from Mephitis mephitis, North Dakota.

opennotspecifiedAug 2022View details →
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Fig. 1 in Molecular Phylogeny of the Notomicrine Water Beetles (Coleoptera: Noteridae) Reveals Signatures of Gondwanan Vicariance and Ecological Plasticity

Fig. 1. Phylogeny of Notomicrinae recovered by Maximum Likelihood analysis of 'Full' dataset in IQ-Tree2 with species groups indicated. Nodes with single black boxes indicate strong support in all analyses.Variable support across analyses is indicated by colored boxes as indicated by keys on left.Top key indicates respective analysis and dataset, Maximum Likelihood (ML) on left, Bayesian inference (BI) on right; 'Full' and 'Trimmed' indicate dataset; and lowest box indicates support recovered by divergence time estimate (DTE 'Trimmed') in BEAST2 with preferred prior models. Lower key indicates support by color for UltraFastBoot support (ML) and Posterior probability (PP) values. Inset depicts 'traili' branch expanded to show structure.

opennotspecifiedNov 2020View details →
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Fig. 1 in Molecular Phylogeny of the Ant-Decapitating Flies, Genus Apocephalus Coquillett (Diptera: Phoridae)

Fig. 1. Maximum clade credibility tree inferred in the Bayesian analysis. Symbols denoting posterior probabilities are shown above branches. Roman numerals indicate major species groups. Host names, when known, indicated in bold font.

opennotspecifiedJul 2018View details →
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Fig. 2 in Molecular Phylogeny of the Notomicrine Water Beetles (Coleoptera: Noteridae) Reveals Signatures of Gondwanan Vicariance and Ecological Plasticity

Fig. 2. Divergence time estimate and ancestral range reconstruction of Notomicrinae. Ancestral ranges recovered by DIVALIKE analysis in BioGeoBears with preferred divergence time estimate recovered by BEAST 2. Boxes on nodes indicate most probable ancestral area states with color correlating to left key; circles indicate differing result recovered from DEC analysis. Numbers on nodes correlate toTable 3. Maps indicate continental landmasses at respective ages, reproduced from Cao et al. (2017) with G-Plates (Müller et al. 2018).

opennotspecifiedNov 2020View details →
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Figure 6 in Multiple origins of moss-inhabiting flea beetles (Coleoptera: Chrysomelidae): molecular phylogeny, overview of genera and a new genus from Africa

Figure 6. Moss-inhabiting flea beetle genera distributed in Europe. A, Minota obesa; B, Mniophila muscorum; C, Mniophilosoma laeve.

opennotspecifiedFeb 2022View details →
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Figure 3 in Multiple origins of moss-inhabiting flea beetles (Coleoptera: Chrysomelidae): molecular phylogeny, overview of genera and a new genus from Africa

Figure 3. Moss-inhabiting flea beetle genera distributed in America. A, Distigmoptera borealis; B, Erinaceialtica janestanleyae; C, Andersonaltica neiba; D, Ulrica eltoro; E, Menudos maricao; F, Kiskeya baorucae; G, Monotalla guadeloupensis; H, Nicaltica selvanegra; I, Stevenaltica normi; J, Borinken elyunque.

opennotspecifiedFeb 2022View details →
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Figure 2 in Multiple origins of moss-inhabiting flea beetles (Coleoptera: Chrysomelidae): molecular phylogeny, overview of genera and a new genus from Africa

Figure 2. Majority-rule consensus phylogenetic tree of flea beetles (Alticini) inferred from the Bayesian analysis. Node labels represent Bayesian posterior probabilities and bootstrap values inferred from the ML analysis. Monophyletic generic groups and major clades are marked. Branch colours show different life-strategies mapped on the tree using ancestral character state mapping under the Mk model.

opennotspecifiedFeb 2022View details →
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Figure 5. Benedictoides munclingeri. A in Multiple origins of moss-inhabiting flea beetles (Coleoptera: Chrysomelidae): molecular phylogeny, overview of genera and a new genus from Africa

Figure 5. Benedictoides munclingeri. A, habitus in dorsal view; B, habitus in lateral view; C, habitus in ventral view; D, detail of head and pronotum; E, aedeagus in dorsal, lateral and ventral view; F, pronotum and elytral base of Benedictoides; G, pronotum and elytral base of Benedictus.

opennotspecifiedFeb 2022View details →
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Figure 1 in Multiple origins of moss-inhabiting flea beetles (Coleoptera: Chrysomelidae): molecular phylogeny, overview of genera and a new genus from Africa

Figure 1. Habitats of moss-inhabiting flea beetles. A, B, cloud forests in Mt. Cameroon, type locality of Benedictoides munclingeri (photo by Pavel Munclinger); C, montane coniferous forest in Taiwan, habitat of Ivalia uenoi; D, laurisilva subtropical oceanic rainforest in Madeira, habitat of Mniophilosoma laeve; E, Central European mixed beech forest, habitat of Mniophila muscorum; F, Cangshanaltica sp. nov. in the sample accumulated by sifting moss cushions in Zhejiang, China.

opennotspecifiedFeb 2022View details →
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Figure 4 in Multiple origins of moss-inhabiting flea beetles (Coleoptera: Chrysomelidae): molecular phylogeny, overview of genera and a new genus from Africa

Figure 4. Moss-inhabiting flea beetle genera distributed in Asia. A A, Paraminotella nigrita; B, Benedictus shivalayanicus; C, Paraminota lauribina; D, Ivalia korakundah; E, Cangshanaltica nigra; F, Baoshanaltica minuta; G, Phaelota viridipennis; H, Clavicornaltica dali.

opennotspecifiedFeb 2022View details →
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FIGURE 6 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)

FIGURE 6. Holotype of Goggia matzikamaensis sp. nov., MCZ R-192186, (A) dorsal view, (B), ventral view, depicting coloration in preservative.

opennotspecifiedAug 2017View details →
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FIGURE 5 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)

FIGURE 5. Head scalation in Goggia incognita sp. nov., CAS 224022 (A) vs. Goggia lineata, CAS 85927 (B) and MCZ R- 45427 (C). Note smaller snout and crown scales in G. lineata.

opennotspecifiedAug 2017View details →
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FIGURE 3 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)

FIGURE 3. Bayesian phylogeny of Goggia, based on analysis of ND2, RAG1, and PDC nucleotide sequence data. Branch support values (Bayesian/ML) are listed for all interspecific and major intraspecific nodes. The most distant outgroup, Phyllodactylus xanti, is omitted for clarity.

opennotspecifiedAug 2017View details →
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FIGURE 1 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)

FIGURE 1. Goggia species in life, depicting pattern variation in small-bodied species. (A) Goggia lineata from Garies, Northern Cape, striped form. (B) Goggia lineata from Port Nolloth, Northern Cape, chevron form. (C) Goggia incognita sp. nov. from Jacobsbaai, Western Cape, striped form. (D) Goggia incognita sp. nov. from Doringbaai, Western Cape, chevron form. (E) Goggia hexapora from Farm Waterval, Western Cape. (F) Goggia matzikamaensis sp. nov. MCZ R-192186. Photo credits: (A) André Coetzer. (B) Luke Kemp. (C, D) Tony Gamble. (E, F) Matthew Heinicke.

opennotspecifiedAug 2017View details →
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FIGURE 4 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)

FIGURE 4. Holotype of Goggia incognita sp. nov., CAS 224022, (A) dorsal view, (B) ventral view, depicting coloration in preservative.

opennotspecifiedAug 2017View details →
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FIGURE 7 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)

FIGURE 7. Head scalation in Goggia matzikamaensis sp. nov., MCZ R-192186 (A) and SAM 47802 (B) vs. Goggia rupicola, MCZ R46168 (C) and CAS 192442 (D). Note smaller, non-hexagonal scales above orbits in G. matzikamaensis sp. nov.

opennotspecifiedAug 2017View details →
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FIGURE 2 in Molecular phylogeny reveals strong biogeographic signal and two new species in a Cape Biodiversity Hotspot endemic mini-radiation, the pygmy geckos (Gekkonidae: Goggia)

FIGURE 2. Geographic ranges of Goggia species and sampling localities of specimens included in the study. Countries are labeled in large white text, provinces of South Africa in small white text, and key geographic regions in small black italic text. Colored shaded regions depict overall ranges of species with localities inside these regions; note that shade colors are used twice as follows: red—braacki (east), gemmula (west); yellow—essexi (east), lineata (west); green—hewitti (east), matzikamaensis sp. nov. (west); blue—hexapora, microlepidota (fully overlapping); violet—incognita (south), rupicola (north).

opennotspecifiedAug 2017View details →
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FIGURE 5 in Preliminary molecular phylogeny of beetle cockroaches (Diploptera) and notes on male and female genitalia (Blattodea: Blaberidae: Diplopterinae)

FIGURE 5. Diploptera maculata in Trus Madi, Sabah, Borneo. Left: female, photo Ling-Xiao Chang; right: male, photo Wei- Wei Zhang.

opennotspecifiedSep 2017View details →
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FIGURE 6 in Preliminary molecular phylogeny of beetle cockroaches (Diploptera) and notes on male and female genitalia (Blattodea: Blaberidae: Diplopterinae)

FIGURE 6. Distribution of Diploptera in China and Southeast Asia, modified from Li & Wang (2015). Imprecise localities removed. Circle, D. punctata; other species indicated by first two letters of epithet written in normal fonts: el, elliptica; er, erythrocephala; ma, maculata; mi, minor; na, naevus; gu, nigrescens guani; ni, nigrescens nigrescens; pa, parva; pu, punctata; pu?, cf. punctata. Diamond, sympatry of two species written in Italics. Framed, type locality. Red, included in molecular phylogeny.

opennotspecifiedSep 2017View details →

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