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221 results for “tropical spiders”

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FIGURE 1 in Description of three new species of the tropical Asian jumping spider genus Onomastus Simon, 1900 from high altitude cloud forests of Sri Lanka (Araneae: Salticidae)

FIGURE 1. Onomastus jamestaylori sp. nov. from Loolecondera, Deltota. A–B. Male in life. C–D. Female in life.

opennotspecifiedDec 2016View details →
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FIGURE 10 in Description of three new species of the tropical Asian jumping spider genus Onomastus Simon, 1900 from high altitude cloud forests of Sri Lanka (Araneae: Salticidae)

FIGURE 10. Phylogenetic placement of the jumping spider genus Onomastus Simon, 1900 obtained by the analysis of 35 morphological characters under implied weights. Strict consensus (L= 74 steps, CI= 0.81, RI= 0.81) of five most parsimonious trees. Unambiguous character state changes are mapped using Farris optimization. Characters are denoted by the numbers above the circles and character state changes by numbers below the circles. The values at the top of each node represent sympatric resampling frequencies/sympatric resampling frequency differences, while the values at the bottom of nodes represent Bremer support/relative Bremer support.

opennotspecifiedDec 2016View details →
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Figure 4 in Defensive behaviour of a moth (Crambidae: Eoophyla sp.) that mimics jumping spiders (Araneae: Salticidae) in tropical India

Figure 4. Archetypal features displayed on the raised wings of Eoophyla (based on Hill 2022).

opencc-by-nd-4.0Jan 2024View details →
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Figure 1 in Defensive behaviour of a moth (Crambidae: Eoophyla sp.) that mimics jumping spiders (Araneae: Salticidae) in tropical India

Figure 1. Location of the study site at Simbalwara National Park in Himachal Pradesh. Satellite

opencc-by-nd-4.0Jan 2024View details →
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Figure 4 in Tropical Asian jumping spiders of the genus Viciria (Araneae: Salticidae: Viciriini)

Figure 4. Two sets of paired Viciria pavesii, Singapore. Femora II of the

opencc-by-nd-4.0Mar 2022View details →
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FIGURE 1 in Microfungi associated with dead caterpillars and spiders in Xishuangbanna Tropical Botanical Garden, P.R. China

FIGURE 1. The Curvularia phylogram was constructed based on combined LSU, ITS, gapdh, and tef1-α sequences. The tree is rooted with Johnalcornia aberrans (CBS 510.91 and CBS 281.91). The BI and ML bootstrap support values equal to or greater than 0.90 BYPP and 60 % are shown at the first and second positions above the nodes, respectively. Type strains are in bold, and newly generated strains are in red.

opennotspecifiedApr 2024View details →
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FIGURE 3 in Microfungi associated with dead caterpillars and spiders in Xishuangbanna Tropical Botanical Garden, P.R. China

FIGURE 3. Curvularia geniculata (HKAS 129046). a Mycelia on a dead caterpillar; b,c obverse and reverse in PDA; d–f stromata on PDA; g–j conidiophores, and conidiogenous cells bearing conidia; k–n conidia.

opennotspecifiedApr 2024View details →
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FIGURE 4 in Microfungi associated with dead caterpillars and spiders in Xishuangbanna Tropical Botanical Garden, P.R. China

FIGURE 4. Purpureocillium atypicola (HKAS 129045). a P. atypicola colonized on a dead spider; b,c close-up of colonies; d–f,h,i conidiophores bearing conidiogenous cells and conidia stained by congo red reagent; g mycelium stained by congo red reagent; j conidia stained by congo red reagent; k germinated conidia; l,m colonies on PDA.

opennotspecifiedApr 2024View details →
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FIGURE 2 in Microfungi associated with dead caterpillars and spiders in Xishuangbanna Tropical Botanical Garden, P.R. China

FIGURE 2. Purpureocillium phylogram was constructed based on combined LSU, ITS, SSU, tef1-α, and rpb1 sequences. The tree is rooted with Tolypocladium cylindrosporum (YFCC 1805001), and T. inusitaticapitatum (HKAS 112152). The BI and ML bootstrap support values equal to or greater than 0.95 BYPP and 60% are shown at the first and second positions above the nodes, respectively. Type strains are in bold, and newly generated strains are in red.

opennotspecifiedApr 2024View details →
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Figure 1 in Mating behaviour and maternal care in the tropical savanna funnel-web spider Aglaoctenus lagotis Holmberg (Araneae: Lycosidae)

Figure 1. Experimental set-up to evaluate the role of chemical cues on female webs. (A) General view of arena, the arrow shows the diameter of tube entrance; (B) test comparing the attraction of virgin or mated female webs to males; (C) comparison between old and recent webs used by females.

opennotspecifiedApr 2011View details →
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Figure 2 in Mating behaviour and maternal care in the tropical savanna funnel-web spider Aglaoctenus lagotis Holmberg (Araneae: Lycosidae)

Figure 2. Schematic drawings of the male behavioural repertoire of Aglaoctenus lagotis (Araneae: Lycosidae). The sequence (courtship to mating) presents three stages: I – courtship; II – pre-mating; III – mating. Courtship shows five other possible stages: (A) vibration of palps and first legs; (B) vibration of palps and first legs under the web; (C) vibration of palps and first legs alternating with leg rubbing; (D) vibration of palps; (E) moving straight to female's position, tapping the palps on the web.

opennotspecifiedApr 2011View details →
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Figure 16. Ocular area, carapace. A in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 16. Ocular area, carapace. A, Zoropsis spinimana; B, Ctenus dubius; C, Leptoctenus byrrhus; D, Gephyroctenus philodromoides.

opennotspecifiedJan 2014View details →
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Figure 13. A–D in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 13. A–D, ventral view of epigynum; E, anterior view of epigynum; F–G, lateral view. A, Toca bossanova; B, Ctenus tarsalis; C, Isoctenus coxalis; D–G, Ctenus dubius; G, green area (grey in print version) represents the ovoid projection of the copulatory opening. Abbreviations: LS, lateral sector; LP, lateral process; MS, median sector; OL, ovoid lobe; OP, ovoid projection.

opennotspecifiedJan 2014View details →
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Figure 11 in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 11. Male palp, tegulum close-up. A–B, Ctenus dubius, ventral view; C–D, Phoneutria fera, prolateral view. Abbreviations: C, conductor; Cy, cymbium; E, embolus; ELP, embolar laminar process; LL, locking lobes; MA, median apophysis; RTA, retrolateral tibial apophysis; TP, tegular process. Arrows point to ventral spine of embolus.

opennotspecifiedJan 2014View details →
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Figure 8. A–C in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 8. A–C, Ctenus eminens, male palp. A, ventral view of tegulum; B, close-up of embolus tip; C, retrolateral view of tibia; D–F, Ctenus immortalis, male palp. D, retrolateral view of tibia; E, ventral view of cymbium; F, close-up of embolus tip. Abbreviations: C, conductor; Cy, cymbium; E, embolus; MA, median apophysis; RTA, retrolateral tibial apophysis; Te, tegulum; Ti, tibia.

opennotspecifiedJan 2014View details →
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Figure 10. Ctenus manauara, male palp. A–B in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 10. Ctenus manauara, male palp. A–B, prolateral view of tegulum; C, retrolateral view of tegulum; D, retrolateral view of tibia. Abbreviations: C, conductor; E, embolus; ELP, embolar laminar process; MA, median apophysis; RTA, retrolateral tibial apophysis; ST, subtegulum; Ti, tibia; TP, tegular process.

opennotspecifiedJan 2014View details →
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Figure 6. A–D, male palp. A in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 6. A–D, male palp. A, Vulsor isaloensis; B, Amauropelma trueloves; C, Enoploctenus cyclothorax, setae indicated the tibial retroapical notch; D, Ctenus inaja. Abbreviations: C, conductor; Cy, cymbium; E, embolus; LL, locking lobes; MA, median apophysis; MTP, membranous tegular process; PaP, patellar process; PCP, prolateral cymbial process; PP, pars pendula; RCP, retrolateral cymbial process; RTA, retrolateral tibial apophysis; Ti, tibia; VCP, ventral cymbial process; VTP, ventral tibial process.

opennotspecifiedJan 2014View details →
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Figure 5. A–F, male palp. A in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 5. A–F, male palp. A, Viracucha andicola; B–C, Ctenus tarsalis; D, Ctenus lejeunei; E–F, Anahita aff. mamma. Abbreviations: C, conductor; Cy, cymbium; E, embolus; MA, median apophysis; PaP, patellar process; PCP, prolateral cymbial process; RTA, retrolateral tibial apophysis; Ti, tibia.

opennotspecifiedJan 2014View details →
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Figure 7. A–D in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 7. A–D, male palp, ventral view. A, Ctenus ornatus; B, Thoriosa taurina; C, Celaetycheus modestus; D, Toca bossanova. Abbreviations: C, conductor; Cy, cymbium; E, embolus; LL, locking lobes; MA, median apophysis; PP, pars pendula; RCP, retrolateral cymbial process; RTA, retrolateral tibial apophysis; Te, tegulum; Ti, tibia; VTP, ventral tibial process.

opennotspecifiedJan 2014View details →
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Figure 4 in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)

Figure 4. Consensus tree under implied weights for constant of concavity k = 2. Character changes mapped on branches. Black circles indicate non-homoplastic synapomorphies. White circles indicate homoplastic synapomorphies.

opennotspecifiedJan 2014View details →

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International Brain Laboratory public data

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OpenNeuro

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