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12 results for “conspecific brood parasitism”

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dryad36/100

Data from: Limited evidence of biased offspring sex allocation in a cavity-nesting conspecific brood parasite

<p>Sex allocation theory predicts that mothers should bias investment in offspring toward the sex that yields higher fitness returns; one such bias may be a skewed offspring-sex ratio. Sex allocation is well-studied in birds with cooperative breeding systems, with theory on local resource enhancement and production of helpers at the nest, but little theoretical or empirical work has focused on birds with brood parasitic breeding systems. Wood ducks (<em>Aix sponsa</em>) are conspecific brood parasites, and rates of parasitism appear to increase with density. Because female wood ducks show high natal philopatry and nest sites are often limiting, local resource competition (LRC) theory predicts that females should overproduce male offspring—the dispersing sex—when competition (density) is high. However, the unique features of conspecific brood parasitism generate alternative predictions from other sex allocation theories, which we develop and test here. We experimentally manipulated the nesting density of female wood ducks in four populations from 2013-2016 and analyzed the resulting sex allocation of &gt;2000 ducklings.  In contrast to predictions we did not find overproduction of male offspring by females in high-density populations, females in better condition, or parasitic females; modest support for LRC was found in overproduction of only female parasitic offspring with higher nest box availability. The lack of evidence for sex ratio biases, as expected for LRC and some aspects of brood parasitism, could reflect conflicting selection pressures from nest competition and brood parasitism, or that mechanisms of adaptive sex ratio bias are not possible.</p>

opencc-zeroMar 2024View details →
dryad36/100

Louisiana black-bellied whistling-duck clutch characteristics in the presence of conspecific and interspecific brood parasitism

<p>Black-bellied Whistling-Ducks (Dendrocygna autumnalis; hereafter Whistling-Duck) are undergoing a rapid range expansion northward and now breed throughout the southeastern United States. As a facultative cavity-nesting species, they have the potential to compete with Wood Ducks (Aix sponsa) and Hooded Mergansers (Lophodytes cucullatus) for nest sites. Little is known about Whistling-Duck breeding biology, and estimates of clutch characteristics and rates of conspecific and interspecific brood parasitism (hereafter, CBP and IBP respectively) are lacking. We monitored Whistling-Duck nests in Louisiana to describe nesting chronology, clutch size of parasitized and unparasitized (hereafter, normal) nests, and hatchability (i.e., the portion of eggs that hatched) for clutches of different sizes and types. We monitored a total of 558 nest boxes 2020–2021 and determined the presence of brood parasitism for 231 Whistling-Duck nests. CBP was detected in 73 (31.6%) nests, and IBP was observed in 51 (22.1%) nests parasitized by Wood Ducks, 2 (0.9%) nests parasitized by Hooded Mergansers, and 1 nest contained eggs from all three species. Normal clutches were smaller (15.4 ± 4.4 eggs) than CBP clutches (26.1 ± 8.8 eggs) and mixed clutches (22.2 ± 5.3 eggs; clutches containing Wood Duck or Hooded Merganser eggs; all pairwise P &lt; 0.0001). However, within-clutch repeatability estimates for egg morphology data (i.e., length, width, and mass) were low (&lt; 0.40) for normal clutches, suggesting CBP went undetected. Of 180 fated nests used to determine hatchability, 66 (36.7%) were successful, 49 (27.2%) were abandoned, 64 (35.6%) were depredated, and 1 (0.6%) was nonviable. Considering successful nests, hatchability was high for all clutch size bins ranging from 67.4% (41-45 eggs) to 81.6% (11-15 eggs). This study is the first to document Whistling-Ducks successfully hatching mixed-species broods, and such high productivity could be contributing to whistling-duck range expansion.</p>

opencc-zeroNov 2022View details →
dryad36/100

Louisiana black-bellied whistling-duck clutch characteristics in the presence of conspecific and interspecific brood parasitism

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publicNov 2022View details →
dryad36/100

Extreme offspring ornamentation in American coots is favored by selection within families, not benefits to conspecific brood parasites

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publicDec 2019View details →
dryad36/100

Data from: Limited evidence of biased offspring sex allocation in a cavity-nesting conspecific brood parasite

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publicMar 2024View details →
dryad36/100

Data from: Host response to conspecific brood parasitism in colonial Red-breasted Mergansers (Mergus serrator): Positioning of parasitic eggs within the clutch

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publicMar 2025View details →
dryad32/100

Data from: A likelihood-based approach for assessment of extra-pair paternity and conspecific brood parasitism in natural populations

Genotypes are frequently used to assess alternative reproductive strategies such as extra-pair paternity and conspecific brood parasitism in wild populations. However, such analyses are vulnerable to genotyping error or molecular artefacts that can bias results. For example, when using multilocus microsatellite data, a mismatch at a single locus, suggesting the offspring was not directly related to its putative parents, can occur quite commonly even when the offspring is truly related. Some recent studies have advocated an ad-hoc rule that offspring must differ at more than one locus in order to conclude that they are not directly related. While this reduces the frequency with which true offspring are identified as not directly related young, it also introduces bias in the opposite direction, wherein not directly related young are categorized as true offspring. More importantly, it ignores the additional information on allele frequencies which would reduce overall bias. In this study, we present a novel technique for assessing extra-pair paternity and conspecific brood parasitism using a likelihood-based approach in a new version of program cervus. We test the suitability of the technique by applying it to a simulated data set and then present an example to demonstrate its influence on the estimation of alternative reproductive strategies.

opencc-zeroDec 2013View details →
dryad32/100

Conspecific brood parasitism and nest predation in moorhens

<p>Conspecific brood parasitism was investigated in three species of moorhens on three different continents: common moorhens in the United Kingdom, lesser moorhens in Namibia, and American moorhens in Panama. These are nest data used to summarize population-level rates of conspecific brood parasitism and nest predation. The data reported here were collected using similar field methods, and include nest dates, clutch sizes (number of host eggs), number of parasitic eggs, and nest fates.</p>

opencc-zeroApr 2024View details →
dryad32/100

How to learn to recognize conspecific brood parasitic offspring

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publicApr 2020View details →
dryad32/100

Data from: A likelihood-based approach for assessment of extra-pair paternity and conspecific brood parasitism in natural populations

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publicJun 2014View details →
dryad32/100

Conspecific brood parasitism and nest predation in moorhens

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publicApr 2024View details →
dryad28/100

Data from: Kin grouping is insufficient to explain the inclusive fitness gains of conspecific brood parasitism in the common eider

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publicOct 2019View details →

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