首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The molecular products and biogeochemical significance of lipid photooxidation in West Antarctic surface waters
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The molecular products and biogeochemical significance of lipid photooxidation in West Antarctic surface waters

机译:西南极地表水域脂质光氧化的分子产物及生物地球化学意义

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The seasonal depletion of stratospheric ozone over the Southern Hemisphere allows abnormally high doses of ultraviolet radiation (UVR) to reach surface waters of the West Antarctic Peninsula (WAP) in the austral spring, creating a natural laboratory for the study of lipid photooxidation in the shallow mixed layer of the marginal ice zone. The photooxidation of lipids under such conditions has been identified as a significant source of stress to microorganisms and short-chain fatty acids altered by photochemical processes have been found in both marine aerosols and sinking marine particle material. However, the biogeochemical impact of lipid photooxidation has not been quantitatively compared at ecosystem scale to the many other biological and abiotic processes that can transform particulate organic matter in the surface ocean. We combined results from field experiments with diverse environmental data, including high-resolution, accurate-mass HPLC-ESI-MS analysis of lipid extracts and in situ measurements of ultraviolet irradiance, to address several unresolved questions about lipid photooxidation in the marine environment. In our experiments, we used liposomes-nonliving, cell-like aggregations of lipids-to examine the photolability of various moieties of the intact polar diacylglycerol (IP-DAG) phosphatidylcholine (PC), a structural component of membranes in a broad range of microorganisms. We observed significant rates of photooxidation only when the molecule contained the polyunsaturated fatty acid (PUFA) docosahexaenoic acid (DHA). As the DHA-containing lipid was oxidized, we observed the steady ingrowth of a diversity of oxylipins and oxidized IP-DAG; our results suggest both the intact IP-DAG the degradation products were amenable to heterotrophic assimilation. To complement our experiments, we used an enhanced version of a new lipidomics discovery software package to identify the lipids in water column samples and in several diatom isolates. The galactolipid d
机译:Southern Hemisphere上的季节性耗尽允许异常高剂量的紫外线辐射(UVR)在南部的西南南极半岛(WAP)的表面水域,从而为浅层脂质光氧化研究了自然实验室边缘冰区的混合层。在这种条件下,脂质的光氧化已被鉴定为对微生物和通过光化学方法改变​​的微生物和短链脂肪酸的显着源,两种海洋气溶胶和沉没的海洋颗粒材料都已发现。然而,在生态系统尺度上尚未定量地将脂质光氧化的生物地球化学影响尚未定量地比较到可以在表面海洋中转化颗粒状有机物质的许多其他生物学和非生物过程。我们将现场实验与各种环境数据的结果组合,包括高分辨率,精确的质量HPLC-ESI-MS分析脂质提取物和原位测量的紫外线辐照度,以解决海洋环境中的脂质光氧化的几个未解决的问题。在我们的实验中,我们使用了脂质的脂质体 - 非生物,细胞样聚集 - 以检查完整的极性二酰基甘油(IP-DAG)磷脂酰胆碱(PC)的各种部分的光图,是膜中膜中的膜中的结构组分。只有当分子包含多不饱和脂肪酸(PUFA)二十二碳六烯酸(DHA)时,我们才观察到显着的光氧化率。随着含DHA的脂质被氧化,我们观察到氧化哌汀多样性的稳定增生和氧化IP-DAG;我们的结果表明,完整的IP-DAG均可降解产物可用于异养同化。为了补充我们的实验,我们使用了一个新的脂素发现软件包的增强版本,以识别水柱样品中的脂质和几个硅藻分离物。加罗脂D.

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