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akaturk Academic measurement

OpenAlex topic

Marine and coastal ecosystems

This page lists works and academicians tagged with an OpenAlex topic. It is not a YÖKSİS primary or secondary field.

OpenAlex 714 works 50 author topics

Works

714 works

  1. OpenAlex top 1% OpenAlex 100.0%

    For more than 100 years it was believed that bacteria were the only group responsible for the oxidation of ammonia. However, recently, a new strain of archaea bearing a putative ammonia monooxygenase subunit A (amoA) gene and able to oxidize ammonia was isolated from a marine aquarium tank. Ammonia-oxidizing archaea (…

  2. YÖKSİS SJR Q1 JCR Q1 OpenAlex top 1% OpenAlex 99.4%

    No abstract yet.

  3. OpenAlex top 10% OpenAlex 97.3%

    Green algae offer sustainable, clean and eco-friendly energy resource. However, production efficiency needs to be improved. Increasing cellular lipid levels by nitrogen depletion is one of the most studied strategies. Despite this, the underlying physiological and biochemical mechanisms of this response have not been…

  4. YÖKSİS SJR Q1 JCR Q1 OpenAlex 89.4%

    No abstract yet.

  5. YÖKSİS SJR Q1 JCR Q2 OpenAlex top 1% OpenAlex 99.6%

    No abstract yet.

  6. YÖKSİS SJR Q1 JCR Q1 OpenAlex top 1% OpenAlex 99.9%

    No abstract yet.

  7. YÖKSİS SJR Q3 JCR Q3 OpenAlex top 1% OpenAlex 99.2%

    Abstract There is growing interest in models of marine ecosystems that deal with the effects of climate change through the higher trophic levels. Such end-to-end models combine physicochemical oceanographic descriptors and organisms ranging from microbes to higher-trophic-level (HTL) organisms, including humans, in a…

  8. YÖKSİS SJR Q2 JCR Q3 OpenAlex 89.0%

    No abstract yet.

  9. YÖKSİS SJR Q1 JCR Q1 OpenAlex top 1% OpenAlex 99.6%

    Ocean warming can modify the ecophysiology and distribution of marine organisms, and relationships between species, with nonlinear interactions between ecosystem components potentially resulting in trophic amplification. Trophic amplification (or attenuation) describe the propagation of a hydroclimatic signal up the f…

  10. YÖKSİS SJR Q1 JCR Q1 OpenAlex top 1% OpenAlex 99.6%

    Ocean warming can modify the ecophysiology and distribution of marine organisms, and relationships between species, with nonlinear interactions between ecosystem components potentially resulting in trophic amplification. Trophic amplification (or attenuation) describe the propagation of a hydroclimatic signal up the f…

  11. YÖKSİS SJR Q1 JCR Q1 OpenAlex top 10% OpenAlex 98.3%

    No abstract yet.

  12. OpenAlex top 10% OpenAlex 95.5%

    In a focused analysis of Prochlorococcus population structure in the western North Atlantic, we found that the relative abundances of ecotypes varied significantly with depth and, at seasonally stratified locations, with degree of vertical mixing. More limited regional variation was observed (e.g., Sargasso Sea, Gulf…

Academicians

50 academicians