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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Carbon isotopic composition of the tetrapyrrole nucleus in chloropigments from a saline meromictic lake: A mechanistic view for interpreting the isotopic signature of alkyl porphyrins in geological samples
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Carbon isotopic composition of the tetrapyrrole nucleus in chloropigments from a saline meromictic lake: A mechanistic view for interpreting the isotopic signature of alkyl porphyrins in geological samples

机译:盐溶性淡水湖泊中氯化色素中四吡咯核的碳同位素组成:解释地质样品中烷基卟啉同位素特征的力学观点

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We report carbon isotopic compositions of tetrapyrrole nuclei (chlorophyllides) and side chains (phytol or farnesol) of chlorophyll a, bacteriochlorophyll a, and bacteriochlorophylls e isolated from several depths in the saline meromictic Lake Kaiike, Japan. The chlorophyllides are substantially enriched in C-13 relative to the side chains in all the depths of the lake, namely oxic mixolimnion, chemocline, anoxic monimolimnion, and benthic microbial mat. The isotopic compositions of chlorophyllide moieties are strongly related to those of the whole molecule (chloropigments; r(2) = 0.94) with the former being 1.8 +/- 0.8 parts per thousand (1 sigma, n = 18) enriched in C-13 relative to the latter. No significant difference was observed between chlorophyll species. The heterogeneity of C-13 in the chloropigments call be ascribed to differences between the biosynthetic pathways of chlorophyllides and side chains. The alkyl porphyrins in the geological samples are derived from the chlorophyllides, whose carbon skeleton is ultimately inherited from glutamate, one of the major amino acids ill the cell. Together with the isotopic relationship between chlorophylls and cell previously reported, we estimate that the carbon isotopic composition of DPEP, a major C-32 alkyl porphyrin in the geological samples, is similar to 1.8 parts per thousand enriched in C-13 relative to the cell. (C) 2007 Elsevier Ltd. All rights reserved.
机译:我们报告了四吡咯核(叶绿素)和叶绿素a,细菌叶绿素a和细菌叶绿素e的侧链(植醇或法尼醇)的碳同位素组成,这些盐从日本咸淡水湖泊Kaiike中的多个深度分离。相对于侧链,整个湖深处的叶绿素都富含C-13,即有氧混种,化学趋化性,缺氧单抗性和底栖微生物垫。叶绿素部分的同位素组成与整个分子的同位素组成密切相关(叶绿素; r(2)= 0.94),前者是富含C-13的每千个1.8 +/- 0.8份(1 sigma,n = 18)。相对于后者。叶绿素种类之间没有观察到显着差异。叶绿素中C-13的异质性归因于叶绿素和侧链的生物合成途径之间的差异。地质样品中的烷基卟啉来自叶绿素,其碳骨架最终从谷氨酸继承,而谷氨酸是细胞中的主要氨基酸之一。连同先前报道的叶绿素和细胞之间的同位素关系,我们估计,地质样品中主要的C-32烷基卟啉DPEP的碳同位素组成与相对于细胞的C-13富集量相似,为1.8千分之一。 。 (C)2007 Elsevier Ltd.保留所有权利。

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