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36 results for “colony size”

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dryad32/100

Data from: Odor is linked to adrenocortical function and male ornament size in a colonial seabird

Crested auklets (Aethia cristatella), colonial seabirds of Alaska and Siberia, emit a citrus-like odorant from wick-like feathers. We examined whether the odorant emission is linked to adrenocortical function and correlated with size of the crest feather ornament. Conventional signals like the size of crest ornament are inexpensive to produce and thus may be prone to deception. However, assessment signals such as the odorant could be more reliable if they impose costs and more proximate since they are continually produced. This may be the case for the crested auklet's volatile aldehyde odorant. The signal is composed of highly volatile chemicals that appear to be products of fatty acid metabolism. Adrenocortical function helps to mobilize endogenous resources for metabolism. Elevation of corticosterone may be needed to sustain a reliable chemical signal, but there are physiological costs for prolonged elevation of circulating corticosterone. We predicted that higher odorant emissions would be correlated with larger crest ornaments. Furthermore, we predicted that odorant emissions would be linked to adrenocortical response. Octanal, the most abundant compound in the citrus-like odorant, was positively correlated with crest size in males, and adrenocortical response explained 42% of the variation in octanal emissions, after controlling for stage of the breeding period. Adrenocortical response was positively correlated with octanal emissions (rs = 0.57) in females. We conclude that dominant individuals with greater capacity to mount a more robust stress response may have greater capacity to sustain odorant secretions.

opencc-zeroDec 2017View details →
dryad32/100

Data from: Effects of host colony size and hygiene behaviors on social spider kleptoparasite loads along an elevation gradient

1.Group living animals are likely to attract more parasites than solitary ones. Parasite loads, however, should also depend on environmental conditions and on host characteristics and behaviors. Previous work has found that social spider colonies harbor communities of kleptoparasitic spiders thats forego building their own web and, instead, steal prey from their social host. 2.We examined parasite loads and host hygiene behaviors in colonies of social and subsocial spiders in the genus Anelosimus along an elevation gradient in eastern Ecuador. 3.We found that parasite loads declined dramatically with increasing elevation. Host hygiene behaviors, such as debris removal, web repair, and interactions with the parasites, also declined with elevation. Within elevations, species with more frequent hygiene behaviors appeared more successful at keeping parasites at bay. Contrary to our predictions, parasite density declined with host nest and colony size. 4.The decline in parasite loads at higher elevations likely reflects a lower rate of energy exchange between colonies and their environments, where colder temperatures mean fewer and smaller prey for colonies to process. The decline in parasite density with host colony size may reflect a decline in the number of accessible prey in larger host colonies, as larger colonies should capture fewer but larger insects due to scaling properties of their three dimensional webs. 5.Social immunity, whereby a social host uses social behaviour to fight against parasites, has been studied in eusocial and non‐eusocial insects. This study opens up social spiders as a novel system in which to study how host characteristics interact with environmental factors to affect parasite loads. It also introduces the concept of group‐level immunity to social spiders and suggests a role for colony‐level metabolism in determining ecological patterns in parasitism.

opencc-zeroDec 2017View details →
dryad32/100

Density dependence of clutch size and offspring sex ratio in starling colonies

<p><span>Optimal life-history theory predicts that individuals should adjust both the number and the sex of their offspring to maximize fitness in response to environmental and social factors such as breeding density. While reductions in optimal clutch size are well-studied in birds, the evidence for sex ratio adjustments is still equivocal and, so far, we lack a thorough understanding of how these strategies interact to maximize fitness. Here, we investigate how breeding density simultaneously affects brood sex ratio and clutch size in a sexually dimorphic and polygynous bird. We tested the prediction that mothers breeding at a higher density lay smaller clutches and overproduce daughters, the sex with less variable fitness returns and that disperses further away from their natal territory. We distributed nest boxes at either a high (HD) or a low density (LD) and monitored clutch sizes and sex ratios during five years in a wild breeding colony of spotless starlings. While mothers breeding in HD nests produced more daughters than those breeding in LD nests, the density dependence of clutch size varied among years, with a tendency to lay smaller clutches in HD nests. Our results suggest that mothers consistently adjust offspring sex ratio in response to breeding density, whereas adjustments in clutch size varied in a more complex way. These results support the role of sex allocation strategies in response to density and show that further theoretical and empirical research is required to understand the interaction between clutch size and sex ratio adjustments in animals.</span></p>

opencc-zeroMay 2022View details →
zenodo32/100

Impact of colony size on survival and sanitary strategies in fungus-infected ant colonies

<p>Data of the scientifc paper "Impact of colony size on survival and sanitary strategies in fungus-infected ant colonies"</p>

opencc-by-4.0Oct 2017View details →
dryad32/100

Data from: Strict monandry in the ponerine army ant genus Simopelta suggests that colony size and complexity drive mating system evolution in social insects

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publicNov 2010View details →
dryad32/100

Data from: Odor is linked to adrenocortical function and male ornament size in a colonial seabird

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publicFeb 2018View details →
dryad32/100

Density dependence of clutch size and offspring sex ratio in starling colonies

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publicMay 2022View details →
dryad32/100

Data from: Effects of host colony size and hygiene behaviors on social spider kleptoparasite loads along an elevation gradient

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publicOct 2018View details →
dryad28/100

Data and code for: Dietzel et al. Long-term shifts in the colony size structure of coral populations along the Great Barrier Reef

<p>The age or size structure of a population has a marked influence on its demography and reproductive capacity. While declines in coral cover are well documented, concomitant shifts in the size frequency distribution of coral colonies are rarely measured at large spatial scales. Here we document major shifts in the colony size structure of coral populations along the 2,300km length of the Great Barrier Reef over the past two decades. Coral colony abundances on reef crests and slopes have declined sharply across all colony size classes and in all coral taxa compared to historical baselines. Declines were particularly pronounced in the Northern and Central regions of the Great Barrier Reef, following mass coral bleaching in 2016 and 2017. The relative abundances of large colonies remained relatively stable, but this apparent stability masks steep declines in absolute abundance. The potential for recovery of older fecund corals is uncertain given the increasing frequency and intensity of disturbance events. The systematic decline in smaller colonies across regions, habitats and taxa, suggests that a decline in recruitment has further eroded the recovery potential and resilience of coral populations.</p>

opencc-zeroSep 2020View details →
dryad28/100

Data from: Estimating colony sizes of emerging bats using acoustic recordings

The decline of bats demands more widespread monitoring of populations for conservation and management. Current censusing methods are either prone to bias or require costly equipment. Here, we report a new method using passive acoustics to determine bat count census from overall acoustic amplitude of the emerging bat stream. We recorded the video and audio of an emerging colony of Mexican free-tailed bats from two cave locations across multiple nights. Instantaneous bat counts were calculated from the video frames, and the bat stream's acoustic amplitude corresponding to each video frame was determined using three different methods for calculating acoustic intensity. We found a significant link between all three acoustic parameters and bat count, with the highest R2 of 0.742 linking RMS pressure and bat count. Additionally, the relationship between acoustics and population size at one cave location could accurately predict the population size at another cave location. The data were gathered with low-cost, easy-to-operate equipment, and the data analysis can be easily accomplished using automated scripts or with open-source acoustic software. These results are a potential first step towards creating an acoustic model to estimate bat population at large cave colonies worldwide.

opencc-zeroDec 2015View details →
dryad28/100

Climate oscillations drive millennial-scale changes in seabird colony size

<p>Seabird population size is intimately linked to the physical, chemical, and biological processes of the oceans. Yet, the overall effects of long-term changes in ocean dynamics on seabird colonies are difficult to quantify. Here, we used dated lake sediments to reconstruct ~10,000-years of seabird dynamics in the Northwest Atlantic to determine the influences of Holocene-scale climatic oscillations on colony size. On Baccalieu Island (Newfoundland and Labrador, Canada) – where the world's largest colony of Leach's storm-petrel (<em>Hydrobates leucorhous</em> Vieillot 1818) currently breeds – our data track seabird colony growth in response to warming during the Holocene Thermal Maximum (ca. 9,000 to 6,000 BP). From ca. 5,200 BP to the onset of the Little Ice Age (ca. 550 BP), changes in colony size were correlated to variations in the North Atlantic Oscillation (NAO). By contrasting the seabird trends from Baccalieu Island to millennial-scale changes of storm-petrel populations from Grand Colombier Island (an island in the Northwest Atlantic that is subjected to different ocean climate), we infer that changes in NAO influenced the ocean circulation, which translated into, among many things, changes in pycnocline depth across the Northwest Atlantic basin where the storm-petrels feed. We hypothesize that the depth of the pycnocline is likely a strong bottom-up control on surface-feeding storm-petrels through its influence on prey accessibility. Since the Little Ice Age, the effects of ocean dynamics on seabird colony size have been altered by anthropogenic impacts. Subsequently, the colony on Baccalieu Island grew at an unprecedented rate to become the world's largest resulting from favourable conditions linked to climate warming, increased vegetation (thereby nesting habitat), and attraction of recruits from other colonies that are now in decline. We show that although ocean dynamics were an important driver of seabird colony dynamics, its recent influence has been modified by human interference.</p>

opencc-zeroMar 2022View details →
dryad28/100

Climate oscillations drive millennial-scale changes in seabird colony size

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publicMar 2022View details →
dryad28/100

Data and code for: Dietzel et al. Long-term shifts in the colony size structure of coral populations along the Great Barrier Reef

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publicSep 2020View details →
dryad28/100

Data from: Estimating colony sizes of emerging bats using acoustic recordings

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publicFeb 2016View details →
dryad24/100

Data from: Spatial and temporal unpredictability of colony size in cliff swallows across 30 years

Most colonially breeding animals occupy colonies that range in size from a few pairs to thousands of individuals, but the causes of colony size variation are largely unknown. Three general hypotheses are: (1) that variation in colony size is maintained by fluctuating selection via spatial and temporal changes in fitness associated with different colony sizes; (2) that colony formation reflects heterogeneity in habitat, with some sites having resources to support more individuals than others; and (3) that individuals assess the presence or annual reproductive success of current colony residents at each site and aggregate preferentially at high-quality sites. These hypotheses make predictions about how consistent colony size should be across sites and among years. We examined temporal and spatial variability of colony size for &gt;200 Cliff Swallow (Petrochelidon pyrrhonota) colony sites in western Nebraska across a 30-year period. A colony's substrate type, annual population size in the study area, and whether the nesting season was relatively warm or cool, influenced average annual colony size. While some Cliff Swallow colony sites hosted perennially large colonies and others perennially small ones, between-year variability in colony size at most sites was high. Annual colony size distributions were relatively stable over 30 years and provided no evidence for long-term directional changes in colony size. The only ecological characteristic that was strongly associated with Cliff Swallow colony size at a site was the type of nesting substrate, with bridges tending to have larger colonies and being more frequently occupied than other substrates. Some sites showed annual changes in colony size consistent with the birds' basing their choice of colony on the presence or success of conspecifics, but many sites did not conform to a pattern expected if coloniality is a by-product of traditional aggregation. Colony size in Cliff Swallows was temporally and spatially unpredictable when viewed across the 30 years of this study. Each of the three hypotheses to explain size variation may have applied at certain sites, but the pattern of colony size variability leant the most support to the hypothesis that fluctuating selection on group size maintains colonies of widely different sizes.

opencc-zeroDec 2012View details →
dryad24/100

Data from: Spatial and temporal unpredictability of colony size in cliff swallows across 30 years

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publicOct 2014View details →

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