从陆地植物有机物的生物标记和同位素组成洞察花卉和气候变化--综述

Achim Bechtel, Doris Groß
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摘要

煤炭和植物组织的生物标记和同位素组成有助于了解花卉的组合和古环境。被子植物和裸子植物叶蜡脂质(即正烷烃)的丰度、分布和 d13C 值不同。萜类碳氢化合物用于评估裸子植物和被子植物的贡献。被子植物和裸子植物对煤的 d13C 含量的不同影响可以通过分析化石木材残骸的同位素组成来克服。被子植物和裸子植物在正烷烃和水之间表现出相似的 H 同位素分馏。由于生物合成途径不同,与被子植物衍生的三萜类化合物相比,二萜类化合物产生的 d2H 值较低。年平均降水量的差异会影响大量叶片有机物的 d13C 值。脂质 d13C 和 d2H 的共同变化反映了植物水分供应的变化。根据凡湖沉积物中支链甘油二烷基甘油四醚(brGDGTs)和 n-C29 烷烃的 d2H 值,温度变化揭示了间冰期温暖潮湿的气候和冰川期凉爽干燥的气候。根据 brGDGTs 的甲基化,可以得到泥炭和褐煤的校准古温度计。
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Insights into floral and climatic changes from biomarker and isotopic composition of land plant organic matter – A review
Biomarkers and isotopic composition of coal and plant tissue enable insights into floral assemblage and paleoenvironment. Abundance, distribution, and d13C values of leaf wax lipids (i.e. n-alkanes) differ between angiosperm and gymnosperm plants. Terpenoid hydrocarbons are used to assess the contributions of gymnosperms versus angiosperms. The influence of varying contributions of angiosperms and gymnosperms on d13C of coal can be overcome by the analyses of fossil wood remains for their isotopic composition. Angiosperms and gymnosperms show similar H-isotope fractionation between n-alkanes and water. Diterpenoids yield lower d2H values compared to angiosperm-derived triterpenoids, due to different biosynthetic pathways. Differences in mean annual precipitation affect d13C of bulk leaf organic matter. Co-variations in d13C and d2H of lipids reflect changes in water availability to the plants. Temperature variations, based on branched glycerol dialkyl glycerol tetraethers (brGDGTs), and d2H values of n-C29 alkane from Lake Van sediments reveal warm-humid climate during interglacials and cooler and drier climate during glacials. Based on the methylation of brGDGTs, a calibrated paleothermometer is available for peats and lignites.
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