Gerade angezeigt 1 - 2 von 2
  • Some of the metrics are blocked by your 
    Item-typ:Veröffentlichung,
    EFFECTS OF UV RADIATION ON ANTARCTIC BENTHIC ALGAE - WITH EMPHASIS ON EARLY SUCCESSIONAL STAGES AND COMMUNITIES
    In field experiments the interactive effects of UVR and grazing on early life stages of a hard bottom algal community were studied. In a two-factorial design, experimental units (1. ambient radiation, >280 nm; 2. ambient minus UV-B, >320 nm; 3. ambient minus UVR, >400 nm vs. grazer - no grazer) were installed for 2.5 and 3.5 months in the field. In conclusion, the results showed that the ambient UVR do not seem to be a threat to benthic marine Antarctic diatoms while grazers acted as important drivers on the complete intertidal algal community structure. In contrast, UV-B radiation significantly shaped macroalgal diversity and species composition. Limpets could mediate negative effects of ambient UVR on species richness and diversity to a certain level. On the basis of these results we hypothesise that ambient UV-B radiation, and a potential further increase of these wavelengths has the ability to affect the zonation, composition and diversity of Antarctic intertidal macroalgae altering trophic interactions in this system.
    Dissertation
      465  162
  • Some of the metrics are blocked by your 
    Item-typ:Veröffentlichung,
    Acclimation of kelp photosynthesis to seasonal changes in the underwater radiation regime of an Arctic fjord system
    In Arctic coastal ecosystems marine macroalgae are subjected to drastic seasonal changes in the environmental conditions, especially in the radiation climate. The seasonal variations in the photosynthetic performance, the photosynthetic pigment content and composition as well as in the relative content of compounds screening ultraviolet radiation (UVR) were studied in young sporophytes of Alaria esculenta, Laminaria digitata, Saccharina latissima and Laminaria solidungula (Laminariales, Phaeophyceae) in relation to changes in the underwater radiation regime.Between May and September macroalgae were collected before and after the break-up of sea ice and during clear and turbid water conditions characteristic for spring, early and mid-summer in the Arctic Kongsfjord (Spitsbergen, Norway).To evaluate the acclimation response of the Laminariales, the contents of photosynthetic pigments and UVR-absorbing compounds as well as the maximum relative electron transport rate (rETRmax), the light saturation point of photosynthesis (Ek) and the photosynthetic efficiency (alpha) were determined immediately after collection. Seasonal variation in the sensitivity of macroalgal photosynthesis to photosynthetically active radiation (PAR) and UVR was studied by measuring the optimum quantum yield of photosynthesis (Fv/Fm) before and during 4 h exposure to different artificial radiation treatments as well as during 20 h of recovery in dim white light.In all species studied, photosynthetic characteristics and pigmentation changed significantly in relation to the prevailing radiation conditions at the natural growth sites. In May, all species were highly susceptible to artificial PAR and UVR and were characterized by low rETRmax and Ek accompanied by high alpha and high contents of chlorophyll a and accessory pigments (fucoxanthin, chlorophyll c). Highest PAR and UVR tolerance was found in June, when all species acclimated to the strongly increased underwater irradiances after the sea ice break-up by an increase in rETRmax and Ek concomitantly with a decrease in alpha and in the photosynthetic pigment content. In addition, the algae showed significantly higher contents of photoprotective beta-carotene, xanthophyll cycle pigments (violaxanthin, antheraxanthin, zeaxanthin) and UVR-screening substances. In contrast, with reduced light availability from July onwards, inverse patterns of these photosynthetic and photoprotective pigments and photosynthetic parameters were observed. These reversible acclimation processes enable the perennial Laminariales to maintain optimal photosynthetic performance throughout the seasons despite of significant changes in solar radiation.
    Dissertation
      532  171