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970 results for “Blattodea”
Dataset on substrate-borne vibrations of Constrictotermes cyphergaster (Blattodea: Isoptera) termites
<p>Here we present data on distinct stimuli as elicitors of substrate-borne vibrations performed by worker and soldier termites belonging to the species<em> Constrictotermes cyphergaster</em> (Blattodea: Isoptera: Termitidae: Nasutitermitinae). The study consisted of assays where groups of termites were exposed to different air-borne stimuli and the vibrations thereby elicited were captured by an accelerometer attached under the floor of the arena in which the termites were confined. A video camera was also used as a visual complement. The data provided here contribute to fill a gap currently existing in published datasets on termite communication. </p>
Dataset for statistical analysis of Constrictotermes cyphergaster (Blattodea: Isoptera: Termitidae: Nasutitermitinae) termites behavioural patterns
<p>This statistical analysis corresponds to the behavioral perspective of a large experiment in which <em>Constrictotermes cyphergaster</em> (Blattodea: Isoptera: Termitidae: Nasutitermitinae) termite groups were submitted to four different alarm stimuli. The aim of the work was to known the effect, at the individual scale, of the intensity of alarm stimuli in the emergence of order/disorder in group responses of social groups.</p> <p>The “read-me” file contains a detailed description of each data table used for the analysis. In the data tables, columns correspond to variables and rows to observations. Explanation of variables is on the headers of each data table.</p>
Fig. 2 in Molecular phylogeny of Blaberidae (Dictyoptera, Blattodea), with implications for taxonomy and evolutionary scenarios
Fig. 2. Conflicting results among different molecular markers. The phylogenetic relationships of four species are detailed for separate and combined analyses performed in Maximum Likelihood (ML) and Bayesian Inference (BI). Boxes colored as 'Untested or unresolved' refer to missing data and multifurcation, respectively.
Fig. 1 in Molecular phylogeny of Blaberidae (Dictyoptera, Blattodea), with implications for taxonomy and evolutionary scenarios
Fig. 1. [part 2 on next page] Optimal phylogenetic tree reconstructed in Maximum Likelihood with the combined dataset. Bootstrap values and posterior probabilities are reported for each node (bootstrap values below 25% are not displayed). The color of internal branches is proportional to bootstrap values. Geographic origin of the specimens sequenced is provided in brackets after the species names. In purple, monophyletic group congruent with morphological hypotheses; in blue, monophyletic group with geographic consistency at the continental level; in brown, incertae sedis species; in green, four species with conflicting and supported positions (Thanatophyllum akinetum Grandcolas, 1991 and Phoetalia pallida (Brunner von Wattenwyl, 1865) or congruent, but weakly supported positions (Laxta sp. and Pronauphoeta cf. viridula (Palisot de Beauvois, 1805)). The four latter species are discussed in the text (see also Fig. 2). The subfamilies indicated on the right of the tree are derived from traditional morphology-based classifications. Units for the branch length scale at the bottom right: number of expected substitutions per site.
Figure 8 in The species of Symplocodes Hebard (Blattodea: Ectobiidae: Blattellinae) with description of a new species from China
Figure 8. Tarsal claws. (A–C) Chorisoserrata biceps Wang et Feng, male: (A) front leg; (B) middle leg; (C) hind leg. (D–F) Symplocodes manubria Feng et Guo, male: (D) front leg; (E) middle leg; (F) hind leg. (G–I) Symplocodes marmorata marmorata (Brunner von Wattenwyl), male: (G) front leg; (H) middle leg; (I) hind leg. (J–L) Symplocodes marmorata tsaii (Bey-Bienko) comb. nov., male: (J) front leg; (K) middle leg; (L) hind leg. (M–O) Symplocodes ridleyi (Shelford), male: (M) front leg; (N) middle leg; (O) hind leg. (P) Front tarsal claw of Symplocodes euryloba sp. nov., male. Scale bars = 0.2 mm.
Figure 10 in The species of Symplocodes Hebard (Blattodea: Ectobiidae: Blattellinae) with description of a new species from China
Figure 10. Symplocodes ridleyi (Shelford), from China, Yunnan Prov., Jinghong, Dadugang; (A) photographed by Guiqiang Huang; (B) photographed by Xinran Li (=Conlin McCat).
Figure 1 in The species of Symplocodes Hebard (Blattodea: Ectobiidae: Blattellinae) with description of a new species from China
Figure 1. (A, B) Symplocodes manubria Feng et Guo from China, Yunnan Prov., Xishuangbanna, Meng'a; male (holotype): (A) dorsal view (B) ventral view. (C, D) Symplocodes marmorata marmorata (Brunner von Wattenwyl) from China, Xizang Aut. Reg., motuo; male: (C) dorsal view (D) ventral view. (E, F) Symplocodes marmorata tsaii (Bey-Bienko) comb. nov. from China, Sichuan Prov., Xichang; male: (E) dorsal view (F) ventral view. (G, H) Symplocodes ridleyi (Shelford) from China, Yunnan Prov., Menglun; male: (G) dorsal view (H) ventral view. (I, J) Symplocodes euryloba sp. nov. from China, Hainan Prov., Mt Jianfengling; male (paratype): (I) dorsal view (G) ventral view. Scale bars = 10.0 mm.
Figure 9. Ischnopter galibi Hebard, 1926 in New and enigmatic cockroaches (Dictyoptera: Blattodea) of Guyana
Figure 9. Ischnopter galibi Hebard, 1926. Adult male. (a) Ventral subgenital plate. Voucher number: DEKBO0869. (b) Ventral supra-anal plate. Voucher number: DEKBO0348. (c) Terminal terga showing supra-anal plate and tergal gland. Voucher number: DEKBO0344. (d) Right phallomere (R2). (e) Left phallomere (L3). (f). Medial phallomere (Lvm). Voucher number: DEKBO0869. (g) Wing. Voucher number: DEKBO0634.
Figure 6 in New and enigmatic cockroaches (Dictyoptera: Blattodea) of Guyana
Figure 6. Dasyblatta warei sp. nov. (a–c) Adult male holotype. Voucher number: DECBA0907. (a) Dorsal body; (b) dorsal abdomen; (c). ventral abdomen. (d, e) Adult female allotype. Voucher number: DECBA1803. (d) Dorsal body; (e) ventral body.
Fig. 7 in Eight new species of the genus Anaplecta Burmeister, 1838 (Blattodea: Blattoidea: Anaplectidae) from China based on molecular and morphological data
Fig. 7. Anaplecta cruciata Deng & Che sp. nov., holotype, ♂ (SWU). A. Habitus, dorsal view. B. Habitus, ventral view. C. Head, ventral view. D. Pronotum, dorsal view. E. Tegmina. F. Tegmina vein. G. Maxillary palp. H. Front femur, ventral view. I. Wings. J. Supra-anal plate, dorsal view. K. Subgenital plate, ventral view. L. Hook, ventral view. M. Left phallomere, ventral view. N. Right phallomere, ventral view. Scale bars: A–C = 1 mm; D–F, I–K = 0.5 mm; G–H = 0.2 mm; L–N = 0.25 mm.
Fig. 5 in Eight new species of the genus Anaplecta Burmeister, 1838 (Blattodea: Blattoidea: Anaplectidae) from China based on molecular and morphological data
Fig. 5. Anaplecta strigata Deng & Che sp. nov., holotype, ♂ (SWU). A. Habitus, dorsal view. B. Habitus, ventral view. C. Head, ventral view. D. Pronotum, dorsal view. E. Tegmina. F. Tegmina vein. G. Maxillary palp. H. Front femur, ventral view. I. Wings. J. Supra-anal plate, dorsal view. K. Subgenital plate, ventral view. L. Hook, ventral view. M. Left phallomere, ventral view. N. Right phallomere, ventral view. Scale bars: A–B = 2 mm; C, E–F, I = 1 mm; D, G–H, J–K, M–N = 0.5 mm; L = 0.25 mm.
Fig. 10. A–B, E in Eight new species of the genus Anaplecta Burmeister, 1838 (Blattodea: Blattoidea: Anaplectidae) from China based on molecular and morphological data
Fig. 10. A–B, E. Anaplecta omei Bey-Bienko, 1958. A. Habitus, dorsal view. B. Habitus, ventral view. E. Supra-anal plate, dorsal view. – C–D. Anaplecta basalis Bey-Bienko, 1969. C. Habitus, dorsal view. D. Habitus, ventral view. – F–I. Comparison of R1 of A. corneola Deng & Che sp. nov. from different localities. F. Guangdong Prov., Zhaoqing City (ZQ). G. Hainan Prov., Ledong County, Mt. Jianfengling (JFL1). H. Hunan Prov., Chenzhou City, Yizhang County, Mangshan National Forest Park (MS). I. Fujian Prov., Wuyishan City, (WY). Scale bars: A–B = 2 mm; C–D = 1 mm; E = 0.5 mm; F–I = 0.25 mm.
Fig. 4 in Eight new species of the genus Anaplecta Burmeister, 1838 (Blattodea: Blattoidea: Anaplectidae) from China based on molecular and morphological data
Fig. 4. Anaplecta arcuata Deng & Che sp. nov., holotype, ♂ (SWU). A. Habitus, dorsal view. B. Habitus, ventral view. C. Head, ventral view. D. Pronotum, dorsal view. E. Maxillary palp. F. Front femur, ventral view. G. Tegmina. H. Wings. I. Supra-anal plate, dorsal view. J. Subgenital plate, ventral view. K. Hook, ventral view. L. Left phallomere, ventral view. Scale bars: A–B, G–H = 2 mm; C = 1 mm; D–F, I–J = 0.5 mm; K–L = 0.1 mm.
Fig. 1 in Eight new species of the genus Anaplecta Burmeister, 1838 (Blattodea: Blattoidea: Anaplectidae) from China based on molecular and morphological data
Fig. 1. Maximum-likelihood (ML) tree derived from COI gene analysis following GTR GAMMA model with 1000 bootstrap replicates. Colored bars in red refer to the morphospecies, those in blue to MOTUs in ABGD and those in purple to MOTUs in GMYC.
Fig. 6 in Eight new species of the genus Anaplecta Burmeister, 1838 (Blattodea: Blattoidea: Anaplectidae) from China based on molecular and morphological data
Fig. 6. Anaplecta furcata Deng & Che sp. nov., holotype, ♂ (SWU). A. Habitus, dorsal view. B. Habitus, ventral view. C. Head, ventral view. D. Pronotum, dorsal view. E. Tegmina. F. Tegmina vein. G. Maxillary palp. H. Front femur, ventral view. I. Wings. J. Supra-anal plate, dorsal view. K. Supra-anal plate. L. Subgenital plate, ventral view. M. Hook, ventral view. N. Left and right phallomere, ventral view. Scale bars: A–B = 1 mm; C–F, H–N = 0.5 mm; G = 0.25 mm.
Fig. 3 in Eight new species of the genus Anaplecta Burmeister, 1838 (Blattodea: Blattoidea: Anaplectidae) from China based on molecular and morphological data
Fig. 3. Anaplecta staminiformis Deng & Che sp. nov. A–M. Holotype, ♂ (SWU). A. Habitus, dorsal view. B. Habitus, ventral view. C. Head, ventral view. D. Pronotum, dorsal view. E. Maxillary palp. F. Front femur, ventral view. G. Tegmina. H. Wings. I. Supra-anal plate, dorsal view. J. Subgenital plate, ventral view. K. Hook, ventral view. L. Left phallomere, ventral view. M. Right phallomere, ventral view. – N–P. Paratype, ♂, samples from LMS (SWU). N. Hook, ventral view. O. Left phallomere, ventral view. P. Right phallomere, ventral view. Scale bars: A–B, G–H = 2 mm; C, E–F = 1 mm; D, I–J, L–M, O–P = 0.5 mm; K, N = 0.25 mm.
Figure 1 in Male wing variation in the Cuban cockroach Byrsotria fumigata (Guérin-Méneville, 1857) (Blattodea: Blaberidae)
Figure 1. Differences in wing shape and size in males of Byrsotria fumigata. (A) dorsal view of a brachypterous individual, with its right tegmen (B) and membranous wing (C) detailed in dorsal view. For comparison, same detail views of the right tegmen (D) and membranous wing (E) of a macropterous individual are included. (F) continuous variation in tegmina, modified from Gutiérrez & Linares (2003). / 1. Diferencias en la forma y tamaño de las alas de los machos de Byrsotria fumigata. (A) vista dorsal de un individuo braquÍptero, con el detalle de su tegmina (B) y ala membranosa (C) derechas en vista dorsal. Para comparación, se incluyen las mismas vistas en detalle de la tegmina (D) y ala membranosa (E) derecha de un individuo macróptero. (F) variación continua en las tegminas, modificado de Gutiérrez & Linares (2003).
Fig. 1 in A New Species of the Genus Eucorydia (Blattodea: Corydiidae) from Chiang Mai in Northern Thailand
Fig. 1. Male and female of Eucorydia asahinai sp. nov. A–B, Male (holotype); C–D, female (paratype); E, antenna; F, hindwing of male (holotype); G, dorsal view of the abdominal segments of male (holotype); H, ventral view of the abdominal 7th and 8th segments of male; I, subgenital plate of male (holotype); J, dorsal view of the abdominal 8th and 9th segments and supra-anal plate of male (holotype); K, supraanal plate of female (paratype); L, ventral view of the abdominal 6th segment of female (paratype); M, subgenital plate of female (paratype); N, right phallomere with L7; O, R2; P, L7; Q, genital hook/L3. Scale bars: 5 mm.
Fig. 3 in A New Species of the Genus Eucorydia (Blattodea: Corydiidae) from Chiang Mai in Northern Thailand
Fig. 3. Specimen labels of Eucorydia asahinai sp. nov. A, Specimen label of male (holotype); B, specimen label of female (paratype); C, identification label of male (holotype) and female (paratype) by Dr. S. Asahina (Japanese part was written as below: they have intermediate appearance between Euc. aenea and Euc. plagiata (=E. ornata), but yellow part of the abdomen is larger than those of both).
FIG. 7. — A in Integrative taxonomic studies on Rinacapritermes Amina & Rajmohana, n. gen. (Blattodea: Isoptera: Termitidae) with two new species from India
FIG. 7. — A, pronotum of Rinacapritermes silvius Amina & Rajmohana, n. gen., n. sp. soldier; B, pronotum of Indocapritermes aruni Chhotani, 1997 soldier C, mandible of Rinacapritermes abundans Amina & Rajmohana, n. gen., n. sp. soldier D, mandible of Indocapritermes aruni soldier. Scale bars: 0.2 mm.
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International Brain Laboratory public data
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OpenNeuro
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