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57 results for “nest material”

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dryad28/100

Evidence of nest material kleptoparasitism in Worm-eating Warblers (Helmitheros vermivorum) in east-central Arkansas, USA

<p>Nest material kleptoparasitism likely evolved in birds to reduce the cost of searching for and collecting material themselves. Although nest material kleptoparasitism has been reported commonly in colonially nesting species, reports for solitary breeding species are infrequent, especially for neotropical migratory species. Here we report potential and actual nest material kleptoparasitism in the Worm-eating Warbler (<i>Helmitheros vermivorum</i>). We deployed video camera systems at passerine nests (n = 81) in east-central Arkansas during summers 2011–2012. In one video, we observed a Worm-eating Warbler stealing nesting material from a Hooded Warbler (<i>Setophaga citrina</i>) nest. One day later, we later observed a Worm-eating Warbler landing within 0.5 m of the same warbler nest when the female was incubating, which possibly deterred a second theft of nesting material. In a third video recording, we observed another Worm-eating Warbler landing within 1 m of an Indigo Bunting (<i>Passerina cyanea</i>) nest. As far as we could determine, neither of these latter two nest visits resulted in nest material kleptoparasitism. Potential benefits of nest material kleptoparasitism include reduced competition for limited nest materials, easy access to suitable material, reduced travel distance, and reduction of nest predation risk; however, costs include risk of attack by host or introducing parasites to one's nest. Importantly, this behavior could ultimately affect the behavioral and life history evolution of a species. We suggest further work should be conducted to determine the prevalence of nest material kleptoparasitism in Worm-eating Warblers and other solitary breeding passerines, including efforts to quantify the benefits and costs of this behavior.</p>

opencc-zeroJan 2022View details →
zenodo28/100

Supplementary material 3 from: Müller A, Prosi R, Praz C, Richter H (2019) Nesting in bark – the peculiar life history of the rare boreoalpine osmiine bee Osmia (Melanosmia) nigriventris (Hymenoptera, Megachilidae). Alpine Entomology 3: 105-119. https://doi.org/10.3897/alpento.3.34409

: Data type: XLS file

opencc-zeroMay 2019View details →
zenodo28/100

Supplementary material 1 from: Müller A, Prosi R, Praz C, Richter H (2019) Nesting in bark – the peculiar life history of the rare boreoalpine osmiine bee Osmia (Melanosmia) nigriventris (Hymenoptera, Megachilidae). Alpine Entomology 3: 105-119. https://doi.org/10.3897/alpento.3.34409

: Data type: PDF file

opencc-zeroMay 2019View details →
zenodo28/100

Supplementary material 2 from: Müller A, Prosi R, Praz C, Richter H (2019) Nesting in bark – the peculiar life history of the rare boreoalpine osmiine bee Osmia (Melanosmia) nigriventris (Hymenoptera, Megachilidae). Alpine Entomology 3: 105-119. https://doi.org/10.3897/alpento.3.34409

: Data type: PDF file

opencc-zeroMay 2019View details →
zenodo28/100

Supplementary material 1 from: Yackel Adams AA, Nafus MG, Klug PE, Lardner B, Mazurek MJ, Savidge JA, Reed RN (2019) Contact rates with nesting birds before and after invasive snake removal: estimating the effects of trap-based control. NeoBiota 49: 1-17. https://doi.org/10.3897/neobiota.49.35592

: Data type: TIF File (.tif)

opencc-zeroJul 2019View details →
zenodo28/100

Supplementary material 3 from: Hostinská L, Kuneš P, Hadrava J, Bosch J, Scaramozzino PL, Bogusch P (2021) Comparative biology of four Rhodanthidium species (Hymenoptera, Megachilidae) that nest in snail shells. Journal of Hymenoptera Research 85: 11-28. https://doi.org/10.3897/jhr.85.66544

Table S3. Pollen contents of nests

opencc-zeroSep 2021View details →
zenodo28/100

Supplementary material 1 from: Hostinská L, Kuneš P, Hadrava J, Bosch J, Scaramozzino PL, Bogusch P (2021) Comparative biology of four Rhodanthidium species (Hymenoptera, Megachilidae) that nest in snail shells. Journal of Hymenoptera Research 85: 11-28. https://doi.org/10.3897/jhr.85.66544

Table S1. List of the localities, where nests of Rhodanthidium were studied

opencc-zeroSep 2021View details →
zenodo28/100

Supplementary material 2 from: Hostinská L, Kuneš P, Hadrava J, Bosch J, Scaramozzino PL, Bogusch P (2021) Comparative biology of four Rhodanthidium species (Hymenoptera, Megachilidae) that nest in snail shells. Journal of Hymenoptera Research 85: 11-28. https://doi.org/10.3897/jhr.85.66544

Table S2. List of all studied nests

opencc-zeroSep 2021View details →
zenodo28/100

Figure 4 from: César E, Bandala VM, Montoya L, Ramos A (2018) A new Gymnopus species with rhizomorphs and its record as nesting material by birds (Tyrannideae) in the subtropical cloud forest from eastern Mexico. MycoKeys 42: 21-34. https://doi.org/10.3897/mycokeys.42.28894

Figure 4 Gymnopusnidus-avis: a Hymenial trama elements b Thick- and thin-walled hyphae from stipe medullary tissue c Hyphae and terminal elements of pileipellis (holotype). Scale bars: 10 µm (a–c).

opencc-by-4.0Nov 2018View details →
zenodo28/100

Figure 3 from: César E, Bandala VM, Montoya L, Ramos A (2018) A new Gymnopus species with rhizomorphs and its record as nesting material by birds (Tyrannideae) in the subtropical cloud forest from eastern Mexico. MycoKeys 42: 21-34. https://doi.org/10.3897/mycokeys.42.28894

Figure 3 Gymnopusnidus-avis: a Spores b Basidia c Cheilocystidia d Pileipellis (holotype). Scale bars: 5 µm (a); 10 µm (b–d).

opencc-by-4.0Nov 2018View details →
zenodo28/100

Figure 1 from: César E, Bandala VM, Montoya L, Ramos A (2018) A new Gymnopus species with rhizomorphs and its record as nesting material by birds (Tyrannideae) in the subtropical cloud forest from eastern Mexico. MycoKeys 42: 21-34. https://doi.org/10.3897/mycokeys.42.28894

Figure 1 Phylogenetic relationships within Gymnopus species inferred from the ITS sequence dataset by maximum likelihood method (ML). Tree with the highest log likelihood (-3619.93). Initial tree(s) for the heuristic search were obtained automatically by applying Neighbour-Joining and BioNJ algorithms to a matrix of pairwise distances estimated using the Maximum Composite Likelihood (MCL) approach and then selecting the topology with superior log likelihood value. The bootstrap values and Bayesian posterior probabilities (obtained after Bayesian inference) are indicated on the tree branches (BS/BPP). Sequences obtained in this study are in bold.

opencc-by-4.0Nov 2018View details →
zenodo28/100

Supplementary material 1 from: Komonen A (2023) Nest characteristics and associates of Dolichovespula (Hymenoptera, Vespidae) in Central Finland. Journal of Hymenoptera Research 96: 45-55. https://doi.org/10.3897/jhr.96.98238

Nest characteristics

opencc-zeroMar 2023View details →
zenodo28/100

Supplementary material 1 from: Garcia A, Samalens J-C, Grillet A, Soares P, Branco M, van Halder I, Jactel H, Battisti A (2023) Testing early detection of pine processionary moth Thaumetopoea pityocampa nests using UAV-based methods. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 267-279. https://doi.org/10.3897/neobiota.84.95692

Supplementary images

opencc-zeroMay 2023View details →
dryad28/100

Data from: Sexual and natural selection in the evolution of extended phenotypes: the use of green nesting material in starlings

Open the record for dataset details and reuse information.

publicMay 2016View details →
dryad28/100

Evidence of nest material kleptoparasitism in Worm-eating Warblers (Helmitheros vermivorum) in east-central Arkansas, USA

Open the record for dataset details and reuse information.

publicJan 2022View details →
dryad28/100

Data from: Nest material preferences by spotless starlings

Open the record for dataset details and reuse information.

publicSep 2017View details →
zenodo24/100

Figure 2 from: César E, Bandala VM, Montoya L, Ramos A (2018) A new Gymnopus species with rhizomorphs and its record as nesting material by birds (Tyrannideae) in the subtropical cloud forest from eastern Mexico. MycoKeys 42: 21-34. https://doi.org/10.3897/mycokeys.42.28894

Figure 2 Gymnopusnidus-avis: basidiomata (César 36, holotype). Scale bar: 4 mm

opencc-by-4.0Nov 2018View details →

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