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175 results for “Capniidae”

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zenodo40/100

Linked collectors and determiners for: Epiproct And Dorsal Process Structure In The Allocapnia Forbesi Frison, A. Pygmaea (Burmeister), And A. Rickeri Frison Species Groups (Plecoptera: Capniidae), And Inclusion Of A. Minima (Newport) In A New Species Group.

Natural history specimen data linked to collectors and determiners held within, "Epiproct And Dorsal Process Structure In The Allocapnia Forbesi Frison, A. Pygmaea (Burmeister), And A. Rickeri Frison Species Groups (Plecoptera: Capniidae), And Inclusion Of A. Minima (Newport) In A New Species Group". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/1abcb62d-e2d8-4daf-9d33-7acb0cbd9580">https://bionomia.net/dataset/1abcb62d-e2d8-4daf-9d33-7acb0cbd9580</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/1abcb62d-e2d8-4daf-9d33-7acb0cbd9580">https://gbif.org/dataset/1abcb62d-e2d8-4daf-9d33-7acb0cbd9580</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Table 1 in Epiproct And Dorsal Process Structure In The Allocapnia Forbesi Frison, A. Pygmaea (Burmeister), And A. Rickeri Frison Species Groups (Plecoptera: Capniidae), And Inclusion Of A. Minima (Newport) In A New Species Group

<p><b>Table 1.</b> List of <i>Allocapnia</i> species studied with scanning electron microscopy.</p><table><tbody><tr><th><b>SPECIES</b></th><th><b>SEM STUDIES</b></th></tr></tbody><tbody><tr><th><i>Allocapnia aurora</i> Ricker 1952</th><td>Alford, 1998; Stark &amp; Lacey, 2005; Nations et al., 2007</td></tr><tr><th><i>A. granulata</i> (Claassen 1924)</th><td>Nations et al., 2007; Grubbs &amp; Sheldon, 2008</td></tr><tr><th><i>A. loshada</i> Ricker 1952</th><td>Kondratieff &amp; Kirchner, 2000</td></tr><tr><th><i>A. malverna</i> Ross 1964</th><td>Grubbs, 2008</td></tr><tr><th><i>A. menawa</i> Grubbs &amp; Sheldon 2008</th><td>Grubbs &amp; Sheldon, 2008</td></tr><tr><th><i>A. mohri</i> Ross &amp; Ricker 1964</th><td>Stark &amp; Nelson, 2000; Grubbs, 2008</td></tr><tr><th><i>A. muskogee</i> Grubbs &amp; Sheldon 2008</th><td>Grubbs &amp; Sheldon, 2008</td></tr><tr><th><i>A. mystica</i> Frison 1929</th><td>Stark &amp; Lacey, 2005; Nations et al., 2007; Grubbs &amp; Sheldon, 2008</td></tr><tr><th><i>A. perplexa</i> Ross &amp; Ricker 1971</th><td>Kirchner et al., 2002</td></tr><tr><th><i>A. polemistis</i> Ross &amp; Ricker 1971</th><td>Stark et al., 2000</td></tr><tr><th><i>A. recta</i> (Claassen 1924)</th><td>Kondratieff &amp; Kirchner, 2000; Stark et al., 2000; Grubbs, 2008</td></tr><tr><th><i>A. rickeri</i> Frison 1929</th><td>Nations et al., 2007</td></tr><tr><th><i>A. sano</i> Grubbs 2006</th><td>Grubbs, 2006</td></tr><tr><th><i>A. sequatchie</i> Kondratieff &amp; Kirchner 2000</th><td>Kondratieff &amp; Kirchner, 2000</td></tr><tr><th><i>A. starki</i> Kondratieff &amp; Kirchner 2000</th><td>Alford, 1998 (as <i>A. recta</i>); Kondratieff &amp; Kirchner, 2000; Stark et al., 2000 (as <i>A. recta</i>); Nations et al. 2007; Ray et al., 2012</td></tr><tr><th><i>A. tsalagi</i> Grubbs 2008</th><td>Grubbs, 2008</td></tr><tr><th><i>A. unzickeri</i> Ross &amp; Yamamoto 1966</th><td>Grubbs &amp; Sheldon, 2008</td></tr><tr><th><i>A. virginiana</i> Frison 1942</th><td>Alford, 1998; Stark &amp; Lacey, 2005; Nations et al., 2007</td></tr><tr><th><i>A. wrayi</i> Ross 1964</th><td>Grubbs &amp; Sheldon, 2008</td></tr></tbody></table>

opencc-by-4.0May 2012View details →
zenodo36/100

Fig. 4 in First report of viviparity of the stoneflies Capnia khingana (Plecoptera: Capniidae) in the Low Amur River Basin

Fig. 4. Female of Capnia khingana hatched embryos: A – first instar nymph exiting of

opencc-by-4.0Oct 2020View details →
zenodo36/100

Fig. 5 in First report of viviparity of the stoneflies Capnia khingana (Plecoptera: Capniidae) in the Low Amur River Basin

Fig. 5. Female of Capnia khingana giving birth to first instar nymph.

opencc-by-4.0Oct 2020View details →
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Fig. 3 in First report of viviparity of the stoneflies Capnia khingana (Plecoptera: Capniidae) in the Low Amur River Basin

Fig. 3. Female of Capnia khingana with developing eggs, non hatched and hatched

opencc-by-4.0Oct 2020View details →
zenodo36/100

Fig. 2 in First report of viviparity of the stoneflies Capnia khingana (Plecoptera: Capniidae) in the Low Amur River Basin

Fig. 2. Female of Capnia khingana with developing nymphal embryos throughout

opencc-by-4.0Oct 2020View details →
zenodo36/100

Fig. 1 in First report of viviparity of the stoneflies Capnia khingana (Plecoptera: Capniidae) in the Low Amur River Basin

Fig. 1. Female reproductive system of Capnia khingana. Abbreviations: Ov – developing

opencc-by-4.0Oct 2020View details →
zenodo36/100

Figure 9 in The first records of Capniella (Plecoptera: Capniidae) from northeast China

Figure 9. Capniella nodosa Klapálek, 1920 (male) — a: forewing; b: hindwing — scale 0.1 mm.

opencc-by-4.0Nov 2021View details →
zenodo36/100

Figure 11 in A new species of the winter stonefly genus Capniella Klapálek, 1920 (Plecoptera: Capniidae) from Korea

Figure 11. Habitat of Capniella gibba sp. n.: South Korea, Odaesan Mts, Odaechen Stream.

opencc-by-4.0Nov 2021View details →
zenodo32/100

FIGURE 14 in Plecoptera larvae of China: larval descriptions of two stonefly species (Capniidae, Nemouridae) from Jiangsu Province

FIGURE 14. Male larva of Nemoura nankinensis Wu, 1926. A. left maxilla, dorsal view; B. left mandible, ventral view.

opennotspecifiedApr 2020View details →
zenodo32/100

FIGURE 3 in Plecoptera larvae of China: larval descriptions of two stonefly species (Capniidae, Nemouridae) from Jiangsu Province

FIGURE 3. Female larva of Capnia zijinshana Du &amp; Chen, 2016. A. larval habitus, dorsal view; B. larval habitus, ventral view.

opennotspecifiedApr 2020View details →
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FIGURE 4 in Plecoptera larvae of China: larval descriptions of two stonefly species (Capniidae, Nemouridae) from Jiangsu Province

FIGURE 4. Male larva of Capnia zijinshana Du &amp; Chen, 2016. A–B. head and pronotum, dorsal view; C. head and pronotum, ventral view; D–E. mesothorax and metathorax, dorsal view; F. mesothorax and metathorax, ventral view. Abbreviations: mp = maxillary palp, lp = labial palp, gl = glossa, pg = paraglossa, lcs = lateral cervical sclerite.

opennotspecifiedApr 2020View details →
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FIGURE 16 in Plecoptera larvae of China: larval descriptions of two stonefly species (Capniidae, Nemouridae) from Jiangsu Province

FIGURE 16. Male larva of Nemoura nankinensis Wu, 1926. A. left hind leg, dorsal view; B. left hind leg, ventral view.

opennotspecifiedApr 2020View details →
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FIGURE 9 in Plecoptera larvae of China: larval descriptions of two stonefly species (Capniidae, Nemouridae) from Jiangsu Province

FIGURE 9. Male larva of Capnia zijinshana Du &amp; Chen, 2016. A–B. abdominal segments, ventral view; C. terminal abdominal segments and cerci, ventral view. Abbreviation: ST = sternum.

opennotspecifiedApr 2020View details →
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FIGURE 20 in Plecoptera larvae of China: larval descriptions of two stonefly species (Capniidae, Nemouridae) from Jiangsu Province

FIGURE 20. Male larva of Nemoura nankinensis Wu, 1926. A–B. basal segments of cerci, lateral view; C–D. apical segments of cerci, lateral view.

opennotspecifiedApr 2020View details →
zenodo32/100

FIGURE 8 in Plecoptera larvae of China: larval descriptions of two stonefly species (Capniidae, Nemouridae) from Jiangsu Province

FIGURE 8. Male larva of Capnia zijinshana Du &amp; Chen, 2016. A–B. abdominal segments, dorsal view; C. terminal abdominal segments and cerci, dorsal view. Abbreviation: T = tergum.

opennotspecifiedApr 2020View details →
zenodo32/100

FIGURE 3 in A new species of Eucapnopsis (Plecoptera: Capniidae) from China

FIGURE 3. Eucapnopsis yunnana sp. nov. (male). a. Terminalia, dorsal view (with epiproct erect). b. Terminalia, ventral view. c. Terminalia, latreal view. d. Epiproct, front view. e. Eepiproct, dorsal view.

opennotspecifiedMay 2020View details →
zenodo32/100

FIGURE 7 in A new species of Eucapnopsis (Plecoptera: Capniidae) from China

FIGURE 7. Eucapnopsis yunnana sp. nov. (female) a. Terminalia, ventral view. b. Terminalia, oblique lateral view.

opennotspecifiedMay 2020View details →
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FIGURE 6 in A new species of Eucapnopsis (Plecoptera: Capniidae) from China

FIGURE 6. Eucapnopsis yunnana sp. nov. (male). a–b. Terminalia, ventral view. c. Cercus, dorsal view. d. Basal part of cercus.

opennotspecifiedMay 2020View details →
dryad32/100

Data from: Integrative taxonomy refutes a species hypothesis: the asymmetric hybrid origin of Arsapnia arapahoe (Plecoptera, Capniidae)

Molecular tools are commonly directed at refining taxonomies and the species that constitute their fundamental units. This has been especially insightful for groups for which species hypotheses are ambiguous and have largely been based on morphological differences between certain life stages or sexes, and has added importance when taxa are a focus of conservation efforts. Here we examine the taxonomic status of Arsapnia arapahoe, a winter stonefly in the family Capniidae that is a species of conservation concern because of its limited abundance and restricted range in northern Colorado, USA. Phylogenetic analyses of sequences of mitochondrial and nuclear genes of this and other capniid stoneflies from this region and elsewhere in western North America indicated extensive haplotype sharing, limited genetic differences, and a lack of reciprocal monophyly between A. arapahoe and the sympatric A. decepta, despite distinctive and consistent morphological differences in the sexual apparatus of males of both species. Analyses of autosomal and sex-linked single nucleotide polymorphisms detected using genotyping by sequencing, however, indicated that all individuals of A. arapahoe consisted of F1 hybrids between female A. decepta and males of another sympatric stonefly, Capnia gracilaria. Rather than constitute a self-sustaining evolutionary lineage, A. arapahoe appears to represent the product of nonintrogressive hybridization in the limited area of syntopy between two widely distributed taxa. This offers a cautionary tale for taxonomists and conservation biologists working on the less-studied components of the global fauna.

opencc-zeroDec 2018View details →

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