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  • PANGAEA  (18)
  • Te Papa Tongarewa  (4)
  • Brill  (1)
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  • 1
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    Te Papa Tongarewa
    In:  In: DEEP - Talks and thoughts celebrating diversity in New Zealand’s untouched Kermadecs. Te Papa Tongarewa, Wellington, New Zealand, pp. 46-47.
    Publication Date: 2013-12-04
    Type: Book chapter , NonPeerReviewed
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  • 2
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    Te Papa Tongarewa
    In:  In: New Zealand Birds Online. , ed. by Miskelly, C. M. Te Papa Tongarewa, Wellington, New Zealand, n/a.
    Publication Date: 2013-06-10
    Type: Book chapter , NonPeerReviewed
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  • 3
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    Te Papa Tongarewa
    In:  In: New Zealand Birds Online. , ed. by Miskelly, C. M. Te Papa Tongarewa, Wellington, New Zealand, n/a.
    Publication Date: 2013-06-10
    Type: Book chapter , NonPeerReviewed
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  • 4
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    Te Papa Tongarewa
    In:  In: New Zealand Birds Online. , ed. by Miskelly, C. M. Te Papa Tongarewa, Wellington, New Zealand, n/a.
    Publication Date: 2013-06-10
    Type: Book chapter , NonPeerReviewed
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  • 5
    Publication Date: 2020-06-19
    Description: Despite prolonged and obligate biparental care for a single offspring in the Australasian gannet Morus serrator, several reproductive behaviours are presumed to be sex specific and might indicate sexual dimorphism in mating and parental effort in this broadly monomorphic seabird. For instance, the delivery of seaweed as a nesting material has been typically considered a male specific trait. We assessed this assumption and determined whether the potential role of this behaviour is to serve as a nuptial trait preceeding copulation or to impart a thermal benefit for incubation. First, as predicted, all arriving individuals at the colony that mated following seaweed delivery assumed the top copulatory position, which is consistent with male behaviour in this species. In comparison, the likelihood of birds without seaweed copulating in top position upon arrival at the nest site was approx. 50%, indicating an even mix of the sexes. However, the sex of those individuals in our sample that did not copulate during our observations remains unresolved. Second, seaweed delivery was not related to copulation following arrival, as individuals arriving with seaweed in our sample had a lower probability of mating than did individuals arriving without seaweed. Third, to determine if seaweed provides thermoregulatory benefits to alleviate the physiological costs of incubation, the foot temperatures of incubating and non-incubating individuals and temperatures of nests with or without seaweed were recorded. Temperatures of the foot-webbings during incubation were significantly higher above ambient temperatures than those of non-incubating gannets at the colony. Nests that contained seaweed were significantly warmer at sunrise than those without seaweed. There was no consistent difference between the temperatures of nesting material in the evenings alone, with a large variance of evening nest temperatures. These correlative data are consistent with male specificity and thermoregulatory benefits associated with seaweed delivery in M. serrator, implying that further experimental work on known-sexed birds should focus on physiological benefits and reproductive consequences of seaweed delivery in this species
    Type: Article , PeerReviewed
    Format: text
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  • 6
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    PANGAEA
    In:  Supplement to: Garzke, Jessica; Hansen, Thomas; Ismar, Stefanie M; Sommer, Ulrich; Ross, Pauline M (2016): Combined Effects of Ocean Warming and Acidification on Copepod Abundance, Body Size and Fatty Acid Content. PLoS ONE, 11(5), e0155952, https://doi.org/10.1371/journal.pone.0155952
    Publication Date: 2023-04-24
    Description: Concerns about increasing atmospheric CO2 concentrations and global warming have initiated studies on the consequences of multiple-stressor interactions on marine organisms and ecosystems. We present a fully-crossed factorial mesocosm study and assess how warming and acidification affect the abundance, body size, and fatty acid composition of copepods as a measure of nutritional quality. The experimental set-up allowed us to determine whether the effects of warming and acidification act additively, synergistically, or antagonistically on the abundance, body size, and fatty acid content of copepods, a major group of lower level consumers in marine food webs. Copepodite (developmental stages 1-5) and nauplii abundance were antagonistically affected by warming and acidification. Higher temperature decreased copepodite and nauplii abundance, while acidification partially compensated for the temperature effect. The abundance of adult copepods was negatively affected by warming. The prosome length of copepods was significantly reduced by warming, and the interaction of warming and CO2 antagonistically affected prosome length. Fatty acid composition was also significantly affected by warming. The content of saturated fatty acids increased, and the ratios of the polyunsaturated essential fatty acids docosahexaenoic- (DHA) and arachidonic acid (ARA) to total fatty acid content increased with higher temperatures. Additionally, here was a significant additive interaction effect of both parameters on arachidonic acid. Our results indicate that in a future ocean scenario, acidification might partially counteract some observed effects of increased temperature on zooplankton, while adding to others. These may be results of a fertilizing effect on phytoplankton as a copepod food source. In summary, copepod populations will be more strongly affected by warming rather than by acidifying oceans, but ocean acidification effects can modify some temperature impacts
    Keywords: BIOACID; Biological Impacts of Ocean Acidification
    Type: Dataset
    Format: application/zip, 4 datasets
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  • 7
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    PANGAEA
    In:  Supplement to: Ismar, Stefanie M; Kottmann, Johanna S; Sommer, Ulrich (2018): First genetic quantification of sex- and stage-specific feeding in the ubiquitous copepod Acartia tonsa. Marine Biology, 165(2), https://doi.org/10.1007/s00227-017-3281-z
    Publication Date: 2023-01-13
    Description: Marine copepods provide the major food-web link between primary producers and higher trophic levels, and their feeding ecology is of acute interest in light of global change impacts on food-web functioning. Recently, quantitative polymerase chain reaction (qPCR) protocols have been developed, which can complement classic diet quantification methods, such as stable isotope or fatty acid analyses tools. Here, we present first results of feeding experiments assessing sex- and stage-specific food intake by the ubiquitous calanoid copepod Acartia tonsa by 18S targeted qPCR and microscopic grazing assessment. In triplicated mixed-diet feeding treatments, three suitable A. tonsa diets, the cryptophyte Rhodomonas balthica, the haptophyte Isochrysis galbana, and the diatom Thalassiosira weissflogii, were offered in equal biomass proportions under constant conditions. Prey uptake substantially varied between different algal species, as did the extent of sex- and stage-specificity of prey uptake. Male adult copepods had higher R. balthica gut contents than females, and nauplii contained more of this prey source than copepodites or adult copepods in mixed treatments. A trend towards higher amounts of ingested T. weissflogii in adult females than in males and in nauplii than in other stages was detected. Genetic gut content quantifications indicated low feeding on I. galbana, and no consistent sex- or stage-specific differences of I. galbana content in A. tonsa. Our results highlight diet-specific feeding differences between Acartia life stages and sexes, which can have implications on food-web dynamics and specific nutrient transfer to higher trophic levels in copepod populations of varying age composition under changing environmental parameters, such as rising temperatures and increasing ocean acidification.
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 8
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    PANGAEA
    In:  Supplement to: Besel, Diana; Hauber, Mark E; Hunter, Colin; Ward-Smith, Tamsin; Raubenheimer, David; Millar, Craig D; Ismar, Stefanie M (2018): Multifactorial roles of interannual variability, season, and sex for foraging patterns in a sexually size monomorphic seabird, the Australasian gannet (Morus serrator). Marine Biology, 165(4), https://doi.org/10.1007/s00227-018-3332-0
    Publication Date: 2023-01-13
    Description: Marine top predators forage in environments that show potentially extreme temporal and spatial variation in prey availability, with reproductive success being crucially linked to food supply. Multiple factors of interannual and sexual variation, as well as variation across breeding stages, can shape patterns of spatial use in foraging seabirds, yet studies that address all of these variables simultaneously are rare. We present spatial assessment of foraging patterns by µGPS tracking of a sexually size monomorphic, long-lived species, the Australasian gannet (Morus serrator). The study spanned the incubation and chick-rearing stages in three consecutive breeding seasons. Our findings revealed high interannual variability in foraging distances and trip durations, but no consistent differences between birds across different breeding stages or the sexes. The exception was that core foraging areas were different for female and male Australasian gannets, although trip durations or distances were similar for both sexes. Our results also indicate bimodality in foraging distance and trip duration in this species, while highlighting interannual variability in the extent of bimodality. These findings contribute to a scarcely documented type of foraging behaviour in the seabird family of the Sulidae. Overall, these spatial use patterns provide a baseline for understanding the evolution of sex-specific foraging differences in biparental seabirds, and the extent to which these differences might help in securing breeding success across years of variable food availability.
    Keywords: BIRDOBS; Bird observation; Breeding stage; Date/time end; Date/time start; Distance; Duration; Hawkes-Bay_Plateau-Colony; Identification; Number; Season; Sex; Species; Speed; Time in hours
    Type: Dataset
    Format: text/tab-separated-values, 1144 data points
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  • 9
    Publication Date: 2023-01-13
    Keywords: Grazing rate per individual; Identification; Life stage; Name; Number of cells; Sex; Species; Standard deviation; Threshold cycle, quantitative polymerase chain reaction
    Type: Dataset
    Format: text/tab-separated-values, 180 data points
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  • 10
    Publication Date: 2023-10-23
    Keywords: Balanion sp.; BIOACID; Biological Impacts of Ocean Acidification; Ceratium furca; Ceratium fusus; Ceratium horridum; Ceratium lineatum; Ceratium longipes; Ceratium macroceros; Ceratium tripos; Chaetoceros curvisetus; Chaetoceros sp.; ciliates; Ciliates; Dactyliosolen fragilissimus; DATE/TIME; Day of experiment; Diatoma sp.; Dinoflagellate sp.; Dinophysis acuminata; Dinophysis acuta; Dinophysis norvegica; Dinophysis rotundata; Dinophyta spp.; Event label; fatty acids; Fjord; Guinardia delicatula; Guinardia flaccida; Gymnodinium; Gymnodinium sp.; Gyrodinium fusiforme; Katodinium; KOSMOS_2015; KOSMOS_2015_Mesocosm-M1; KOSMOS_2015_Mesocosm-M2; KOSMOS_2015_Mesocosm-M3; KOSMOS_2015_Mesocosm-M4; KOSMOS_2015_Mesocosm-M5; KOSMOS_2015_Mesocosm-M6; KOSMOS_2015_Mesocosm-M7; KOSMOS_2015_Mesocosm-M8; KOSMOS_2015_Mesocosm-M9; KOSMOS Bergen; Laboea; Lohmanniella oviformis; MESO; Mesocosm experiment; Mesocosm label; Myrionecta spp.; Ocean acidification; Phase; Phytoplankton; Proboscia alata; Protoperidinium bipes; Protoperidinium depressum; Pseudo-nitzschia delicatissima; Pseudo-nitzschia seriata; Scripsiella sp. cyst; Scuticociliates, fractionated; Skeletonema marinoi; Strombidium; Strombidium capitatum; Strombidium emergens; Strombidium sp.; Treatment
    Type: Dataset
    Format: text/tab-separated-values, 4550 data points
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