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  • 1
    Publication Date: 2024-06-05
    Description: In the Andaman Sea internal waves of extraordinary amplitudes and frequencies break at the continental shelf and periodically introduce cold, nutrient-rich, hypoxic deep-sea water into the surface layer. The islands of the Andaman Sea shelter coral reefs from the effects of these large amplitude internal waves (LAIW) on eastern shores and separate them from the exposed reefs on western shores. Exposed reefs harbor corals with increased heat resistance, but which processes facilitate this resistance is not yet clear. As heterotrophic feeding has been shown to play an important role in warm water coral bleaching resilience and recovery, a shift in trophic strategy through LAIW-enriched organic matter flux may contribute to thermal resistance. In this thesis I utilized modern stable isotope and fatty acid analytics on separated coral host and Symbiodinium fractions to assess the trophic strategy of two coral species Porites lutea and Pocillopora verrucosa from both shore sites of two islands in the Andaman Sea (Miang and Racha). The results reveal a complex picture, with island and species-specific effects. Pocillopora does not show large differences in fatty acid trophic and health markers, with trophic markers indicating marginal higher heterotrophy on Rachas LAIW exposed but also on Miangs sheltered site. SIBER analysis on Pocillopora signals consistent trophic strategy on both sides. Porites do show a tendency of increased heterotrophy on Miangs LAIW exposed site and a smaller increase on Rachas exposed reefs. However, SIBER analysis of both islands pooled does not support this and instead indicates higher autotrophy. Health markers in LAIW exposed Porites are slightly elevated, in concert with higher biomass and fatty acids per surface they suggest a healthier phenotype. However, Pocillopora does not demonstrate this enhanced health status with LAIW exposure. As shift towards more heterotrophy seems to be nuanced and context-dependent it is most likely not the driving factor for the elevated heating resistance observed in LAIW exposed corals.
    Keywords: Course of study: MSc Biological Oceanography
    Type: Thesis , NonPeerReviewed
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  • 2
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    Publication Date: 2024-06-05
    Description: FS MARIA S. MERIAN MSM129/1 Warnemünde – St. John’s / Kanada 25.05. - 05.06.2024
    Type: Report , NonPeerReviewed
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  • 3
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    Publication Date: 2024-06-05
    Description: FS MARIA S. MERIAN MSM129/1 Warnemünde – St. John’s / Kanada 25.05. - 05.06.2024
    Type: Report , NonPeerReviewed
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  • 4
    Publication Date: 2024-06-05
    Description: Animals have a deep evolutionary relationship with microbial symbionts, such that individual microbes or an entire microbial community can diverge alongside the host. Here, we explore these host-microbe relationships in Echinometra, a sea urchin genus that speciated with the Isthmus of Panama and throughout the Indo-West Pacific. We find that the eggs from five Echinometra species generally associate with a species-specific bacterial community and that the relatedness of these communities is largely congruent with host phylogeny. Microbiome divergence per million years was higher in more recent speciation events than in older ones. We, however, did not find any bacterial groups that displayed co-phylogeny with Echinometra. Together, these findings suggest that the evolutionary relationship between Echinometra and their microbiota operates at the community level. We find no evidence suggesting that the associated microbiota is the evolutionary driver of Echinometra speciation. Instead, divergence between Echinometra and their microbiota is likely the byproduct of ecological, geographic, and reproductive isolations.
    Type: Article , PeerReviewed
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  • 5
    Publication Date: 2024-06-05
    Description: Pattern-triggered immunity (PTI) is an integral part of the innate immune system of many eukaryotic hosts, assisting in the defence against pathogen invasions. In plants and animals, PTI exerts a selective pressure on the microbiota that can alter community composition. However, the effect of PTI on the microbiota for non-model hosts, including seaweeds, remains unknown. Using quantitative polymerase chain reaction complemented with 16S rRNA gene and transcript amplicon sequencing, this study profiled the impact that PTI of the red seaweed Gracilaria gracilis has on its microbiota. PTI elicitation with agar oligosaccharides resulted in a significant reduction in the number of bacteria (by 〉75% within 72 h after treatment). However, the PTI elicitation did not cause any significant difference in the community diversity or structure. These findings demonstrated that PTI can be non-selective, and this might help to maintain a stable microbiota by uniformly reducing bacterial loads.
    Type: Article , PeerReviewed
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  • 6
    Publication Date: 2024-06-05
    Description: Due to climate change the pathogenic bacterium Vibrio vulnificus proliferates along brackish coastlines, posing risks to public health, tourism, and aquaculture. Here we investigated previously suggested regulation measures to reduce the prevalence of V. vulnificus, locally through seagrass and regionally through the reduction of eutrophication and consequential formation of algal blooms. Field samples collected in the summer of 2021 covered the salinity and eutrophication gradients of the Baltic Sea, one of the largest brackish areas worldwide. Physico-, biological- and hydrochemical parameters were measured and variables explaining V. vulnificus occurrence were identified by machine learning. The best V. vulnificus predictors were eutrophication-related features, such as particulate organic carbon and nitrogen, as well as occurrence of potential phytoplankton blooms and associated species. V. vulnificus abundance did not vary significantly between vegetated and non-vegetated areas. Thus, reducing nutrient inputs could be an effective method to control V. vulnificus populations in eutrophied brackish coasts.
    Type: Article , PeerReviewed , info:eu-repo/semantics/article
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  • 7
    Publication Date: 2024-06-05
    Description: Despite management efforts, anthropogenic nutrient enrichments continue to enhance phytoplankton blooms worldwide. Release of nitrogen and phosphorus compounds not only provides surplus of nutrients but also disbalances their stoichiometry. Declines in the relative availability of dissolved silicon might induce limitation in diatoms, major primary producers with silicified shells. We studied experimentally how nutrient enrichment and resulting decline in dissolved silicon to nitrogen ratios (Si:N) affect the structure and functioning of natural plankton communities. Nitrate was added to create a range of Si:N ratios and phosphate was supplied in Redfield ratio to nitrogen. We also manipulated copepod abundance to understand the top-down effects on communities experiencing nutrient enrichment. Nitrogen and phosphorus additions resulted in a steep phytoplankton biomass increase, followed by a post-bloom decline. Phytoplankton bloom biomass was higher in high nitrogen treatments but during the post-bloom period this trend switched. Biomass was sustained longer in high Si:N treatments, indicating that silicon limitation terminates the bloom. Many diatom species did not benefit from nitrogen and phosphorus enrichment and diatom dominance ceased below Si:N of 0.4:1. Under high grazing pressure, silicate was taken up faster suggesting that silicification is important in diatom defense. Copepods shaped plankton communities via feeding on dinoflagellates, chlorophytes and the diatom Skeletonema costatum but there was no significant effect of nitrogen and phosphorus enrichment on copepod abundance. Our results, combined with previous studies, show that while nutrient concentrations define the total phytoplankton bloom biomass, resource ratios are important in sustaining biomass and determining community structure and composition.
    Type: Article , PeerReviewed
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  • 8
    Publication Date: 2024-06-05
    Description: Low-level jets (LLJs), vertical profiles with a wind speed maxima in the lowest hundred meters of the troposphere, have multiple impacts in the Earth system, but a global present-day climatology based on contemporary data does not exist. We use the spatially and temporally complete data set from ERA5 reanalysis to compile a global climatology of LLJs for studying the formation mechanisms, characteristics, and trends during the period of 1992–2021. In the global mean, LLJs are detected 21% of the time with more cases over land (32%) than over the ocean (15%). We classified the LLJs into three categories: non-polar land (LLLJ), polar land (PLLJ), and coastal (CLLJ) LLJs. For LLLJ, the averaged frequency of occurrence is 20% and 75% of them are associated with a near-surface temperature inversion as a prerequisite for an inertial oscillation. PLLJs are also associated with a temperature inversion and occur even more frequently with 59% of the time. These are also the lowest and the strongest LLJs among the three categories. CLLJs are particularly frequent in some marine hotspots, situated along the west coast of continents, with neutral to unstable stratification close to the surfaces and a stably stratified layer aloft. We found distinct regional trends in both the frequency and intensity of LLJs over the past decades, which can have implications for the emission and transport of aerosols, and the transport of atmospheric moisture. Future studies could address changes in LLJs and the associated implications in more detail, based on the here released ERA5-based LLJ data. Key Points: - First global comprehensive low-level jet (LLJ) climatology using ERA5 - Polar LLJs are the strongest and most frequent among the detected types - Distinct past trends in regional LLJ frequency and intensity
    Type: Article , PeerReviewed
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  • 9
    Publication Date: 2024-06-05
    Description: April 21th – April 30th 2022 Kiel (Germany) – Kiel (Germany) BALTIC APRIL 2022
    Type: Report , NonPeerReviewed
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  • 10
    Publication Date: 2024-06-05
    Description: The South Atlantic Ocean Dipole (SAOD) exerts strong influence on climate variability in parts of Africa and South America. Here we assess the ability of an ensemble of 35 state-of-the-art coupled global climate models to simulate the SAOD impacts on regional rainfall for the historical period (1950–2014), and their future projections (2015–2079). For both periods we consider the peak phase of the dipole in austral winter. Observational analysis reveals four regions with spatially coherent SAOD impacts on rainfall; Northern Amazon, Guinea Coast, Central Africa, and Southeast Brazil. The observed rainfall response to the SAOD over Northern Amazon (0.31 mm d−1), Guinea Coast (0.38 mm d−1), and Southeast Brazil (0.12 mm d−1) are significantly underestimated by the modeled ensemble-mean response of 0.10 ± 0.15 mm d−1, 0.05 ± 0.15 mm d−1, −0.01 ± 0.04 mm d−1, respectively. A too southerly rain belt in the ensemble, associated with warmer-than-observed Atlantic cold tongue, leads to better performance of models over Central Africa (46% simulate observations-consistent SAOD-rainfall correlations) and poor performance over the Guinea Coast (only 5.7% simulate observations-consistent SAOD-rainfall correlations). We also find divergent responses among the projections of ensemble members precluding a categorical statement on the future strength of the SAOD-rainfall relationship in a high-emissions scenario. Our results highlight key uncertainties that must be addressed to enhance the value of SAOD-rainfall projections for the affected African and South American countries.
    Type: Article , PeerReviewed , info:eu-repo/semantics/article
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