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8 results for “Great spotted cuckoo”
Data from: Great spotted cuckoo eggshell microstructure characteristics can make eggs stronger
Obligate avian brood parasites lay stronger eggs than their hosts or non-parasitic relatives because they are rounder and have a thicker eggshell. Additionally, some other characteristics of the brood parasitic eggshells related to their microstructure such as size and orientation of calcite crystal units could also contribute to generating even stronger shells. An eggshell microstructure formed by small randomly oriented calcite crystal units can increase the robustness of the eggshells of birds. Here, the eggshell microstructure of avian brood parasites as well as their hosts have been characterized in detail, using X-ray diffraction analyses to estimate the size and degree of orientation of calcite crystal units making the eggshell. Specifically, the brood parasitic great spotted cuckoo (Clamator glandarius) and two hosts (jackdaws, Corvus monedula and magpie, Pica pica) and one non-host species (the pigeon, Columba livia domestica) were considered. Calcite crystal of the eggshell of the brood parasitic species was smaller and more randomly oriented than those of the eggshells of non-parasitic species, which suggest that eggshell microstructure would contribute to explain why parasitic eggs are more resistant to breakage than those of their hosts.
Data from: Great spotted cuckoo nestlings have no antipredatory effect on magpie or carrion crow host nests in southern Spain
Host defences against cuckoo parasitism and cuckoo trickeries to overcome them are a classic example of antagonistic coevolution. Recently it has been reported that this relationship may turn to be mutualistic in the case of the carrion crow (Corvus corone) and its brood parasite, the great spotted cuckoo (Clamator glandarius), given that experimentally and naturally parasitized nests were depredated at a lower rate than non-parasitized nests. This result was interpreted as a consequence of the antipredatory properties of a fetid cloacal secretion produced by cuckoo nestlings, which presumably deters predators from parasitized host nests. This potential defensive mechanism would therefore explain the detected higher fledgling success of parasitized nests during breeding seasons with high predation risk. Here, in a different study population, we explored the expected benefits in terms of reduced nest predation in naturally and experimentally parasitized nests of two different host species, carrion crows and magpies (Pica pica). During the incubation phase non-parasitized nests were depredated more frequently than parasitized nests. However, during the nestling phase, parasitized nests were not depredated at a lower rate than non-parasitized nests, neither in magpie nor in carrion crow nests, and experimental translocation of great spotted cuckoo hatchlings did not reveal causal effects between parasitism state and predation rate of host nests. Therefore, our results do not fit expectations and, thus, do not support the fascinating possibility that great spotted cuckoo nestlings could have an antipredatory effect for host nestlings, at least in our study area. We also discuss different possibilities that may conciliate these with previous results, but also several alternative explanations, including the lack of generalizability of the previously documented mutualistic association.
Data from: Great spotted cuckoo nestlings have no antipredatory effect on magpie or carrion crow host nests in southern Spain
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Data from: Telomere dynamics in parasitic great spotted cuckoos and their magpie hosts
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Data from: Great spotted cuckoo eggshell microstructure characteristics can make eggs stronger
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Data from: Great spotted cuckoos show dynamic patterns of host selection during the breeding season
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Data from: Great spotted cuckoo disregard information on conspecific breeding success while parasitizing magpie
The study of mechanisms underlying host selection by brood parasites usually lays on selection by parasites of host traits that inform on host parental abilities or location. However, brood parasites might use information extracted from past reproductive performance of either their hosts or themselves, a possibility almost neglected. In this study, we use a long-term data set to analyse whether the probability of parasitism by great spotted cuckoos (Clamator glandarius) of a magpie (Pica pica) nest in a given year is related with the reproductive outcome of any of the two species in the surroundings of that nest the previous year. We found that probability of parasitism for a nest in a year was explained by previous year cuckoo reproductive outcome and parasitism rate in the area surrounding the focal nest, but not by host reproductive outcome. To discern between the effect of parasitism rate and that of parasite reproductive success on parasite choices we carried out an experiment modifying the natural correlation found between parasitism status and host and parasite success in the patches. The results showed that neither host nor cuckoo reproductive outcome in a patch after the experiment explained probability of parasitism the following year. Only parasitism rate in the surroundings of a nest before the experiment explained probability of parasitism for this nest in the following year. Hence, these results indicate that great spotted cuckoos disregard social information related to past parasitism outcome, probably because parasitism outcome is tightly correlated with parasitism itself.
Data from: Great spotted cuckoo disregard information on conspecific breeding success while parasitizing magpie
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