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Sugar brings a lot of carbon dioxide into the deeper sea by Staff Writers Bremen, Germany (SPX) Mar 19, 2020
In the sunlit surface layer of the ocean, photosynthetic microalgae such as diatoms convert more carbon dioxide into biomass than Earth's tropical forests. Like land plants, diatoms sequester carbon dioxide into polymeric carbohydrates - in other words: into long-chained sugars. However, it has proven difficult to quantify how much carbon dioxide can be stored in the global oceans throughout this process. This gap of knowledge sparked the interest of the research group Marine Glycobiology, which is located at the Max Planck Institute of Marine Microbiology and the MARUM, Center for Marine Environmental Sciences at the University of Bremen and cooperates with the Alfred Wegener Institute for Polar and Marine Research. To close this gap, the scientists utilized a recently developed enzymatic assay to dissect photosynthetic microalgae and measure concentrations of the long-chained sugar laminarin, an important energy source for microalgae including diatoms.
Laminarin fixes carbon dioxide "This amount suggests that photosynthesis in the surface ocean produces on average twelve gigatons of carbon annually in the form of algal laminarin" says Stefan Becker, first author of the study, published in the scientific journal PNAS in March 2020. "This is a large amount, considering that, according to the Global Carbon Budget 2019, humans released 11.5 gigatons of carbon during 2018." However, only a small part of the carbon bound by laminarin is permanently removed from the atmosphere - a large part is subsequently released again through natural processes. In total, the oceans permanently absorbed around 2.6 gigatons of carbon in 2018. "Yet, our findings indicate that sugars like laminarin are also important for the permanent fixation of carbon in the sea," says Becker. Furthermore the scientists found that laminarin comprises as much as 50 percent of the organic carbon in sinking diatom-containing particles. "Thus laminarin plays a central role in carbon transfer from surface waters to the deeper ocean," says Jan-Hendrik Hehemann, leader of the research group Marine Glycobiology. "Whether laminarin is fixed in deep waters is an important further question that we will address in the future".
Variation during the day "The concentration in algal cells increased markedly during the day and decreased over the night, in analogy to the seasonal storage of energy in starchy roots and fruits of land plants", says Hehemann. "This may have a major impact on the feeding behavior of marine animals, as the time of day determines how much sugar - and therefore energy - animals get when they eat." Collectively, these findings highlight the prominent ecological role and biochemical function of the sugar laminarin in the ocean.
Scientists quantify how wave power drives coastal erosion Boston MA (SPX) Mar 18, 2020 Over millions of years, Hawaiian volcanoes have formed a chain of volcanic islands stretching across the Northern Pacific, where ocean waves from every direction, stirred up by distant storms or carried in on tradewinds, have battered and shaped the islands' coastlines to varying degrees. Now researchers at MIT and elsewhere have found that, in Hawaii, the amount of energy delivered by waves averaged over each year is a good predictor of how fast or slow a rocky coastline will erode. If waves are ... read more
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