Marine Biological Station, National Institute of Biology, 6330 Piran, Slovenia.
Mar Drugs. 2010 Sep 6;8(9):2480-92. doi: 10.3390/md8092480.
The key organic constituents of marine macroaggregates (macrogels) of prevalently phytoplankton origin, periodically occurring in the northern Adriatic Sea, are proteins, lipids and especially polysaccharides. In this article, the reactivity of various macroaggregate fractions in relation to their composition in order to decode the potentially »bioavailable« fractions is summarized and discussed. The enzymatic hydrolysis of the macroaggregate matrix, using α-amylase, β-glucosidase, protease, proteinase and lipase, revealed the simultaneous degradation of polysaccharides and proteins, while lipids seem largely preserved. In the fresh surface macroaggregate samples, a pronounced degradation of the α-glycosidic bond compared to β-linkages. Degradation of the colloidal fraction proceeded faster in the higher molecular weight (MW) fractions. N-containing polysaccharides can be important constituents of the higher MW fraction while the lower MW constituents can mostly be composed of poly- and oligosaccharides. Since the polysaccharide component in the higher MW fraction is more degradable compared to N-containing polysaccharides, the higher MW fraction represents a possible path of organic nitrogen preservation. Enzymatic hydrolysis, using α-amylase and β-glucosidase, revealed the presence of α- and β-glycosidic linkages in all fractions with similar decomposition kinetics. Our results indicate that different fractions of macroaggregates are subjected to compositional selective reactivity with important implications for macroaggregate persistence in the seawater column and deposition.
海洋宏观聚集体(大凝胶)的主要有机成分来源于浮游植物,它们在亚得里亚海北部定期出现,主要包括蛋白质、脂质和多糖。本文总结并讨论了各种宏观聚合体部分与其组成的关系,以解码潜在的“生物可利用”部分。使用α-淀粉酶、β-葡萄糖苷酶、蛋白酶、蛋白水解酶和脂肪酶对宏观聚合体基质进行酶水解,揭示了多糖和蛋白质的同时降解,而脂质则基本保留。在新鲜的表层宏观聚合体样品中,与β键相比,α-糖苷键明显降解。胶体部分在较高分子量(MW)部分的降解速度更快。含氮多糖可以是高分子量(MW)部分的重要组成部分,而低分子量(MW)部分主要由多糖和寡糖组成。由于高分子量(MW)部分的多糖成分比含氮多糖更容易降解,因此高分子量(MW)部分代表了有机氮保存的一种可能途径。使用α-淀粉酶和β-葡萄糖苷酶进行的酶水解表明,所有部分都存在α-和β-糖苷键,其分解动力学相似。我们的结果表明,不同的宏观聚合体部分受到组成选择性反应的影响,这对宏观聚合体在海水中的持久性和沉积有重要影响。