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FIGURE 2.—A. Lycopodium clavatum ssp. clavatum—(Ecuador: Harling 4091, S).A. Growth habit. A1. Close-up of branchlet leaf. A2. Close-up of sporophyll.—B. Lycopodium clavatum ssp. contiguum—(Ecuador: Cazalet & Pennington 5409, US). Growth habit. B1. Close-up of sporophylls.—C. Diphasiastrum thyoides—(Ecuador: Holm-Nielsen et al. 4818, AAU). C. Branchlet upper side left, and underside right.—D. Diphasium jussiaei—(Ecuador: Holm-Nielsen et al. 4670, AAU) D. Branchlet upper side left and underside right. Drawing by B. Johnsen in The Lycopodiaceae of Panamá
FIGURE 2.—A. Lycopodium clavatum ssp. clavatum—(Ecuador: Harling 4091, S).A. Growth habit. A1. Close-up of branchlet leaf. A2. Close-up of sporophyll.—B. Lycopodium clavatum ssp. contiguum—(Ecuador: Cazalet & Pennington 5409, US). Growth habit. B1. Close-up of sporophylls.—C. Diphasiastrum thyoides—(Ecuador: Holm-Nielsen et al. 4818, AAU). C. Branchlet upper side left, and underside right.—D. Diphasium jussiaei—(Ecuador: Holm-Nielsen et al. 4670, AAU) D. Branchlet upper side left and underside right. Drawing by B. Johnsen
Molecular data of Sphagnum majus ssp. majus and ssp. norvegicum (Bryophyta: Sphagnaceae) relative to taxonomy and geography
<p><span>Species delimitation is problematic in many plant groups and among the mosses, <em>Sphagnum</em> is one of the more contentious genera because of high levels of morphological variation. The allopolyploid species, <em>Sphagnum majus</em>, comprises one such problematic complex. Two morphologically differentiated but overlapping subspecies have been described. We conducted morphometric and molecular analyses with samples from around the Northern Hemisphere to test for phenotypic and phylogenetic differentiation between the subspecies. Although field collections of the two species can be statistically differentiated morphologically, there is substantial overlap. Genome-scale molecular data do not suggest any differentiation between <em>S. majus </em>ssp<em>. majus</em> and ssp.<em> norvegicum</em>, including samples assigned to the two taxa from sympatric sites. Sequence data from the plastid genome were employed to infer parentage of allopolyploid <em>S. majus</em>. Our results support the hypothesis that <em>S. annulatum</em> is the paternal parent and <em>S. cuspidatum</em> is the maternal parent. We conclude that the morphological differences between them are either plastic responses to habitat heterogeneity or segregating genetic variation within a single taxon. Formal taxonomic recognition of two taxa is not supported by our molecular data.</span></p>
Bringing Back the Manchester Argus Coenonympha tullia ssp. davus (Fabricius 1777): Quantifying the habitat resource requirements to inform the successful reintroduction of a specialist peatland butterfly
<p>2021-30 has been designated the UN decade of ecosystem restoration. A landscape scale peatland restoration project is being undertaken on Chat Moss, Greater Manchester, UK, with conservation translocations an important component of this work. The Manchester Argus Coenonympha tullia ssp. davus, a specialist butterfly of lowland raised bogs in the northwest of England, UK is under threat due to severe habitat loss and degradation. A species reintroduction was planned for spring 2020. </p> <p>This study aimed to quantify the resource thresholds for C. tullia, in order to assess potential risks for the project. Thirteen peatland habitat patches with either recent historic or current C. tullia populations were surveyed for biotic and abiotic factors based on previous qualitative research on the species' requirements. </p> <p>Percentage cover of two habitat resources were found to be the strongest predictors in models of C. tullia presence: cross-leaved heath Erica tetralix and hair's-tail cotton-sedge Eriophorum vaginatum. </p> <p>Critical inflection points on logistic regression curves were used to make quantitative estimates of the minimum requirement of each resource for population survival and the near-optimum abundance of each resource. </p> <p>The results of this study improve our understanding of C. tullia's ecology and the restoration of peatlands for its reintroduction. Additionally, the method has wider utility for the quantitative assessment of habitat readiness before attempting species reintroductions.</p>
FIGURES 24–25 in A new subspecies of Ropalopus (Ropalopus) ungaricus (Herbst, 1784) from southern Spain, Ropalopus (Ropalopus) ungaricus occidentalis ssp. nov. (Coleoptera: Cerambycidae)
FIGURES 24–25. Male pronotum of R. (R.) ungaricus ungaricus and R. (R.) ungaricus insubricus (Photo: Karpiński et al. 2020).
FIGURE 21 in A new subspecies of Ropalopus (Ropalopus) ungaricus (Herbst, 1784) from southern Spain, Ropalopus (Ropalopus) ungaricus occidentalis ssp. nov. (Coleoptera: Cerambycidae)
FIGURE 21. Male of Ropalopus (Ropalopus) ungaricus occidentalis ssp. nov. on trunk of Acer granatense Boissduval, 1838.
FIGURE 1 in A new subspecies of Ropalopus (Ropalopus) ungaricus (Herbst, 1784) from southern Spain, Ropalopus (Ropalopus) ungaricus occidentalis ssp. nov. (Coleoptera: Cerambycidae)
FIGURE 1. Habitus of Ropalopus (Ropalopus) ungaricus occidentalis ssp. nov., male, holotype. Scale bar 1 cm.
FIGURE 12 in A new subspecies of Ropalopus (Ropalopus) ungaricus (Herbst, 1784) from southern Spain, Ropalopus (Ropalopus) ungaricus occidentalis ssp. nov. (Coleoptera: Cerambycidae)
FIGURE 12. Habitus of Ropalopus (Ropalopus) ungaricus occidentalis ssp. nov., female, allotype. Scale bar 1 cm.
FIGURE 20 in A new subspecies of Ropalopus (Ropalopus) ungaricus (Herbst, 1784) from southern Spain, Ropalopus (Ropalopus) ungaricus occidentalis ssp. nov. (Coleoptera: Cerambycidae)
FIGURE 20. Area and aspect of the typical locality in the Sierras de Cazorla, Segura and Las Villas Natural Park (province of Jaén, Spain).
FIGURES 107–108. Trichotichnus ssp., habitus. 107, T. miwai continentalis ssp. n in New data on carabid beetles of Trichotichnus s. str. (Coleoptera: Carabidae) of Yunnan (China) and adjacent areas, with description of six new species and two new subspecies
FIGURES 107–108. Trichotichnus ssp., habitus. 107, T. miwai continentalis ssp. n. (Wuliangshan); 108, T. kavanaughi sp. n. (Kongdang). Scale bar = 1.0 mm.
Holotype of Dicyphus orientalis ssp. sibiricus Kerzhner in Vinokurov, 1979
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FIGURES 12a–e. Andrena pannosa ssp. atrosa Osytshnjuk, 1994 in The type specimens of bees (Hymenoptera, Apoidea) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg. Contribution VII. Family Andrenidae, genus Andrena Fabricius, 1775, taxa described by A. Osytshnjuk and A. Lebedev
FIGURES 12a–e. Andrena pannosa ssp. atrosa Osytshnjuk, 1994. Holotype, female: a—habitus, lateral view and labels; b— head, frontal view; c—labrum, dorsal view; d—metasoma, dorsal view; e—mesosoma, dorsal view. Scale bar: 1 mm.
FIGURES 11a–e. Andrena ovatula ssp. transcaspiensis Osytshnjuk, 1994 in The type specimens of bees (Hymenoptera, Apoidea) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg. Contribution VII. Family Andrenidae, genus Andrena Fabricius, 1775, taxa described by A. Osytshnjuk and A. Lebedev
FIGURES 11a–e. Andrena ovatula ssp. transcaspiensis Osytshnjuk, 1994. Holotype, female: a—habitus, lateral view and labels; b—head, frontal view; c—labrum, dorsal view; d—metasoma, dorsal view; e—mesosoma, dorsal view. Scale bar: 1 mm.
FIGURES 3a–e. Andrena gravida ssp. rubidopilosa Osytshnjuk, 1994 in The type specimens of bees (Hymenoptera, Apoidea) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg. Contribution VII. Family Andrenidae, genus Andrena Fabricius, 1775, taxa described by A. Osytshnjuk and A. Lebedev
FIGURES 3a–e. Andrena gravida ssp. rubidopilosa Osytshnjuk, 1994. Holotype, female: a—habitus, lateral view and labels; b—head, frontal view; c—labrum, dorsal view; d—metasoma, dorsal view; e—mesosoma, dorsal view. Scale bar: 1 mm.
FIGURES 2a–e. Andrena carbonaria ssp. imamiana Osytshnjuk, 1994 in The type specimens of bees (Hymenoptera, Apoidea) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg. Contribution VII. Family Andrenidae, genus Andrena Fabricius, 1775, taxa described by A. Osytshnjuk and A. Lebedev
FIGURES 2a–e. Andrena carbonaria ssp. imamiana Osytshnjuk, 1994. Holotype, female: a—habitus, lateral view and labels; b—head, frontal view; c—labrum, dorsal view; d—metasoma, dorsal view; e—mesosoma, dorsal view. Scale bar: 1 mm.
FIGURES 1a–e. Andrena callopyrrha ssp. kozlovi Osytshnjuk, 1994 in The type specimens of bees (Hymenoptera, Apoidea) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg. Contribution VII. Family Andrenidae, genus Andrena Fabricius, 1775, taxa described by A. Osytshnjuk and A. Lebedev
FIGURES 1a–e. Andrena callopyrrha ssp. kozlovi Osytshnjuk, 1994. Holotype, female: a—habitus, lateral view and labels; b—head, frontal view; c—labrum, dorsal view; d—metasoma, dorsal view; e—mesosoma, dorsal view. Scale bar: 1 mm.
FIGURE 4. Aricia anteros kalmius ssp. nov. A–B in DNA barcode based phylogeographic analysis of the Aricia anteros (Freyer, 1838) species complex (Lepidoptera: Lycaenidae) with description of a new subspecies from SE Europe
FIGURE 4. Aricia anteros kalmius ssp. nov. A–B, Holotype, VL626, ♂, Donetsk Region, Orlovskoe, 47.260°N, 37.743°E, 01 Aug 2023 R.V.Botman. C–D, VL628, Paratype, ♂, Donetsk Region, Orlovskoe, 47.260°N, 37.743°E, 01 Aug 2023 R.V.Botman. E–F, Paratype, ♀, Donetsk Region, Orlovskoe, 47.260°N, 37.743°E, 01 Aug 2023 R.V.Botman. G–H, ♂, Donetsk Region, Mariupol district, 117 km SSE from the centre of Donetsk, left bank of the Kalmius river, Pyshchevyk vill. 47.242°N, 37.794°E, 16 June 2010, R. Botman leg. I–J, ♀, Donetsk Region, Mariupol district, 117 km SSE from the centre of Donetsk, left bank of the Kalmius river, Pyshchevyk vill. 47.242°N, 37.794°E, 16 June 2010, R. Botman leg. Scale = 2 cm.
FIGURES 1–4. Phoenicurusia transcaucasicus flamma ssp. n. 1 in New data on distribution of Phoenicurusia transcaucasicus (Miller, 1923) (Lepidoptera, Lycaenidae) with description of a new subspecies from Iran
FIGURES 1–4. Phoenicurusia transcaucasicus flamma ssp. n. 1—male, holotype; 2—male, paratype, voucher LYC025, Iran, Semnan Prov., Sefid-Kuh Mts., Shahmirzad area, Chashm v. vicinity, 2200 m, 05–06.VII.2010, 35°48'59"N 53°14'46"E, K. Kolesnichenko leg., coll. A. Krupitsky; 3—paratype, female, same data as holotype, leg. et coll. A.R. Naderi. 4—paratype, female, Iran, Esfahan Prov., 25 km E Daran, 2400 m, 27.VI.2008, leg. et coll. A.R. Naderi.
FIGURE 4. Diestramima austrosinensis quaterna ssp. nov. from Zhejiang, A–F in Review of the genus Diestramima Storozhenko, 1990 (Orthoptera: Rhaphidophoridae: Aemodogryllinae) from China
FIGURE 4. Diestramima austrosinensis quaterna ssp. nov. from Zhejiang, A–F. male: A–C. head and pronotum: A. frontal view, B. lateral view, C. dorsal view; D–G. apex of abdomen: D. lateral view, E. dorsal view; F. hind basitarsus in lateral view.
FIGURE 3. Diestramima austrosinensis quaterna ssp. nov. from Fujian, A–H in Review of the genus Diestramima Storozhenko, 1990 (Orthoptera: Rhaphidophoridae: Aemodogryllinae) from China
FIGURE 3. Diestramima austrosinensis quaterna ssp. nov. from Fujian, A–H. male: A–C. head and pronotum: A. frontal view, B. lateral view, C. dorsal view; D–G. apex of abdomen: D. dorsal view, E. apico-dorsal view, F. ventral view, G. lateral view; H. hind basitarsi in lateral view.
FIGURE 37. Cechetra subangustata continentalis ssp. n in Three new taxa of the genus Cechetra Zolotuhin & Ryabov, 2012 (Lepidoptera, Sphingidae) from South-East Asia with notes on other species of the genus
FIGURE 37. Cechetra subangustata continentalis ssp. n., paratype (BOLD sample ID BC-Ivsh04727), VietNam: a—sagital projectioN of male geNitalia (oNe valve is removed); b—phallus armature.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.