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Metabolic control of nitrogen isotope composition of amino acids in macroalgae and gastropods: implications for aquatic food web studies

机译:大型藻类和腹足动物中氨基酸的氮同位素组成的代谢控制:对水生食物网研究的意义

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We investigated the nitrogen isotopic compositions of individual amino acids from brown and red macroalgae and gastropods in a natural marine coastal environment, to further evaluate them as a tool for ecological studies and to understand the factor(s) controlling the isotopic compositions in terms of biosynthetic and metabolic processes. The isotopic compositions of 12 amino acids range from-2.1 to +8.4‰ for brown algae, from-3.3 to +12.9‰ for red algae, and from-0.6 to + 16.6‰ for gastropods. The isotopic distributions between algae and gastropods and within algal classes are consistent with those in previous reports, suggesting them to be quite useful for studying food web structure. The nitrogen isotopic variation between amino acids strongly reflects their biosynthetic and metabolic processes. In particular, we suggest here that metabolic fate is an important factor in producing distinct trophic relationships in nitrogen isotopic compositions between amino acids.
机译:我们研究了天然海洋沿海环境中棕色和红色大型藻类和腹足动物的各个氨基酸的氮同位素组成,以进一步评估它们作为生态研究的工具并了解就生物合成而言控制同位素组成的因素和代谢过程。褐藻的12个氨基酸的同位素组成范围为-2.1至+ 8.4‰,红藻为-3.3至+ 12.9‰,腹足类动物为-0.6至+ 16.6‰。藻类和腹足纲动物之间以及藻类中的同位素分布与以前的报道一致,这表明它们对于研究食物网结构非常有用。氨基酸之间的氮同位素变化强烈反映了它们的生物合成和代谢过程。特别地,我们在此建议代谢命运是在氨基酸之间的氮同位素组成中产生独特的营养关系的重要因素。

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