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36 results for “Suboscine”

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zenodo40/100

Figures 49–51 in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 49–51. Platyacarus sittasomi sp. n., female. (49, 50) Dorsal and ventral views, respectively. (51) Spermatheca. pd, primary duct; sd, secondary ducts.

opencc-by-4.0Dec 2010View details →
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Figures 47, 48 in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 47, 48. Platyacarus sittasomi sp. n., male: lobar region, dorsal (47) and ventral (48) views. ias, inner anal shield; oas, outer anal shield.

opencc-by-4.0Dec 2010View details →
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Figures 30, 31 in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 30, 31. Anisophyllodes candango sp. n., male: dorsal (30) and ventral (31) views. ad, adanal shield; ap, acetabular plate; pgp, pregenital plates.

opencc-by-4.0Dec 2010View details →
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Figures 27–29. Atrichophyllodes mentalis gen. n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 27–29. Atrichophyllodes mentalis gen. n., sp. n., female. (27, 28) Dorsal and ventral views, respectively. (29) Spermatheca. co, copulatory opening; pd, primary duct; sd, secondary ducts.

opencc-by-4.0Dec 2010View details →
zenodo40/100

Figures 17–21. Atrichophyllodes delalandi gen. n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 17–21. Atrichophyllodes delalandi gen. n., sp. n. (17–20) Male legs I–IV, dorsal views. (21) Female spermatheca. pd, primary duct; sd, secondary ducts.

opencc-by-4.0Dec 2010View details →
zenodo40/100

Figures 9–14. Tyranniphyllodes pitangi gen. n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 9–14. Tyranniphyllodes pitangi gen. n., sp. n. (9–11) Male: (9) variation on shape of prodorsal plate in paratype; (10) lobar region in dorsal view; (11) genital region. (12–14) Female: (12) spermatheca; (13, 14) dorsal crests on genua III and IV, respectively. a, aedeagus; ms, median extension; os, opisthogastral shield; pd, primary duct; s.a., sheath of aedeagus; sd, secondary ducts.

opencc-by-4.0Dec 2010View details →
zenodo40/100

Figures 7, 8. Tyranniphyllodes pitangi gen. n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 7, 8. Tyranniphyllodes pitangi gen. n., sp. n., female: dorsal (7) and ventral (8) views. co, copulatory opening.

opencc-by-4.0Dec 2010View details →
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Figures 15, 16. Atrichophyllodes delalandi gen. n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 15, 16. Atrichophyllodes delalandi gen. n., sp. n., male: dorsal (15) and ventral (16) views. ad, adanal shield; ap, acetabular plate.

opencc-by-4.0Dec 2010View details →
zenodo40/100

Figures 38–40 in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 38–40. Anisophyllodes candango sp. n., female. (38, 39) Dorsal and ventral views, respectively. (40) Spermatheca. co, copulatory opening; pd, primary duct; sd, secondary ducts.

opencc-by-4.0Dec 2010View details →
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Figures 24–26. Atrichophyllodes mentalis gen. n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 24–26. Atrichophyllodes mentalis gen. n., sp. n., male. (24, 25) Dorsal and ventral views, respectively. (26) Tarsus IV. ad, adanal shield.

opencc-by-4.0Dec 2010View details →
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Figures 1, 2. Tyranniphyllodes pitangi gen. n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 1, 2. Tyranniphyllodes pitangi gen. n., sp. n., male: dorsal (1) and ventral (2) views. os, opisthogastral shield.

opencc-by-4.0Dec 2010View details →
zenodo40/100

Figures 41, 42 in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 41, 42. Platyacarus sittasomi sp. n., male: dorsal (41) and ventral (42) views. ias, inner anal shield; oas, outer anal shield.

opencc-by-4.0Dec 2010View details →
zenodo40/100

Figures 22, 23. Atrichophyllodes delalandi gen.n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 22, 23. Atrichophyllodes delalandi gen.n., sp. n., female:dorsal (22) and ventral (23) views.co, copulatory opening.

opencc-by-4.0Dec 2010View details →
zenodo40/100

Figures 32, 33 in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil

Figures 32, 33. Anisophyllodes candango sp. n., male: lobar region, dorsal (32) and ventral (33) views. ad, adanal shield; ap, acetabular plate; pgp, pregenital plates.

opencc-by-4.0Dec 2010View details →
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Fig. 6 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)

Fig. 6. Diversification of Old World suboscines. Maximum likelihood estimate of phylogeny from RAG- 1 and RAG-2 combined data set with thickened branches supported by parsimony bootstrap proportions above 80 and Bayesian posterior probability greater than 0.95 (see figs. 2, 3 for all support values). Date estimates derived with penalized likelihood (Sanderson, 2003) and a calibration of 90–82 Ma between Acanthisitta and all other passerines. Horizontal gray bars on nodes indicate ±2 standard deviations of age estimates from bootstrap analysis. The two multicolored species names indicate that the taxon is found in more than one region. Bird images of pittas (C. Rose), broadbills (I. Lewington), asities (J. Cox) and Sapayoa (J. Wilczur) are from Handbook of the Birds of the World, Vols. 8 and 9, copyright Lynx Ediciones (Josep del Hoyo).

opencc-by-4.0Dec 2006View details →
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Fig. 5 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)

Fig. 5. Parsimonious reconstruction of the evolution of diet in the Eurylaimides. Key: black branches, insectivorous; dark gray branches, frugivorous; light gray branches, nectivorous; and dotted branches, polymorphic/equivocal.

opencc-by-4.0Dec 2006View details →
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Fig. 3 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)

Fig. 3. Maximum likelihood (ML) estimate of phylogeny from sequences of the RAG-1 and RAG-2 nuclear exons. Numbers by nodes indicate MP bootstrap support/ ML bootstrap support/ Bayesian posterior probability. Asterisks (*) indicate bootstrap support of 100% or posterior probability of 1.0.

opencc-by-4.0Dec 2006View details →
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Fig. 2 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)

Fig. 2. Strict consensus of four maximum parsimony (MP) trees from analysis of combined RAG-1, RAG-2, Fib5, and morphological characters. Numbers by nodes indicate MP bootstrap support.

opencc-by-4.0Dec 2006View details →
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Fig. 4 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)

Fig. 4. Single MP tree from analysis of RAG-1, RAG-2, and Fib5 data. Numbers above branches indicate MP bootstrap support, numbers below branches are ML bootstrap support.

opencc-by-4.0Dec 2006View details →
dryad40/100

The delayed effect of climatic conditions on pre-fledging nestling haematocrit in a suboscine species in Patagonia

<p>Haematocrit, the proportion of blood comprising erythrocytes, is often used as a proxy of individual condition. Nestling haematocrit is influenced by several factors, but ambient temperature is generally agreed as a key driver. It is unclear which day(s) in embryonic or nestling development are most influential in determining pre-fledgling haematocrit. This is important, because if we are able to identify what day(s) nestlings are physiologically most vulnerable to climatic conditions, this may inform future conservation management and help mitigate the effects. We investigated the effect of ambient temperature, precipitation, body size, brood size, age, food abundance and habitat on nestling haematocrit in <em>Aphrastura</em> <em>spinicauda</em> (thorn-tailed Rayaditos). We collected this data from two climatically different locations in Chile: Northern Patagonia (Pucón) and Sub-Antarctic Patagonia (Navarino Island), located ~1800 km further south. We aimed to identify the key drivers of nestling haematocrit and find when nestlings are physiologically most vulnerable to climatic conditions. We confirm that ambient temperature is the key driver of nestling haematocrit, with increasing ambient temperatures nestling haematocrit decreased. However, precipitation also affected haematocrit in the late incubation stage. At low and high precipitation, nestling haematocrit was low and is optimal in light rainfall. Our results show a delayed effect of ambient temperature and precipitation in late incubation and on the day of hatching which can determine pre-fledgling haematocrit, which may cause lower post-fledgling fitness. We found that climatic conditions on the day haematocrit was collected were not important in determining haematocrit. We found that haematocrit was higher in the sub-Antarctic area and that higher temperatures and precipitation on the day of hatching will result in lower nestling haematocrit and poorer pre-fledgling condition. As atmospheric temperatures rise, nestling fitness is at risk. This is a threat to many bird species, especially those in locations vulnerable to climate breakdown.</p>

opencc-zeroDec 2022View details →

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International Brain Laboratory public data

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