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首页> 外文期刊>Journal of limnology >The influence of biological and environmental factors on the stable isotopic composition of ostracods – the Late Pleistocene record from Lake Albano, Central Italy
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The influence of biological and environmental factors on the stable isotopic composition of ostracods – the Late Pleistocene record from Lake Albano, Central Italy

机译:生物学和环境因素对类动物稳定同位素组成的影响–意大利中部阿尔巴诺湖的晚更新世记录

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The stable oxygen and carbon isotopic composition of ostracod valves is the result of the interaction of several variables. Understanding and identifying the biological and ecological factors influencing the life of these animals improves the interpretation of isotopical data, and leads to better paleoenvironmental reconstructions. Ostracod biostratigraphy and determinations of oxygen and carbon stable isotopes on ostracod valves were carried out on a short sequence of the Last Glacial Maximum from Lake Albano (Central Italy). The oxygen isotopic composition of adults of Candona neglecta ranged between 0.5‰ and 1.5‰, and in Ilyocypris bradyi between –2‰ and –0.5‰ . Isotopic values from adults of C. neglecta fell within the range –1.5‰ to –0.8‰ when corrected for vital effect. The carbon isotopic signal ranged from 9.4‰ to 10.8‰ in adults and juveniles of C. neglecta, and from 9.8‰ to 11.3‰ in I. bradyi. Differences between left/right valve and gender were negligible, whereas there appeared to be a marked influence of life stage and species-specific factors related to vital effect and differences in microhabitat and seasonality. We combined analyses on carbon and oxygen isotopes with information deriving from ostracod ecology to reconstruct short term oscillations in past lake water level. Seasonal changes in either the temperature or the isotopic composition of the lake water were also identified. Relatively high δ18O values in ostracod valves were probably associated with the lake location and source of moisture, while high δ13C values were most probably related to the input of volcanic CO2 into the lake.
机译:球形rac阀门中稳定的氧和碳同位素组成是几个变量相互作用的结果。理解和识别影响这些动物生命的生物学和生态因素可以改善同位素数据的解释,并导致更好的古环境重建。在来自阿尔巴诺湖(意大利中部)的最后一次冰期最大值的短序列中,进行了兽纲生物地层学研究以及在兽纲阀门上测定氧和碳稳定同位素。念珠念珠菌的成虫的氧同位素组成在0.5‰至1.5‰之间,在缓脉伊蚊中的氧同位素组成在–2‰至–0.5‰之间。校正生命力后,C。neglecta成年人的同位素值在–1.5‰至–0.8‰范围内。在成人和青少年中,碳同位素信号的范围从9.4‰到10.8‰,而缓脉梭菌的碳同位素信号从9.8‰到11.3‰。左/右瓣膜和性别之间的差异可以忽略不计,而生命阶段和与生命影响有关的物种特异性因素以及微生境和季节性的差异似乎有显着影响。我们将对碳和氧同位素的分析与源自兽类生态学的信息相结合,以重建过去湖泊水位的短期振荡。还确定了湖水温度或同位素组成的季节性变化。鱼阀中较高的δ18O值可能与湖泊的位置和水分来源有关,而较高的δ13C值很可能与火山二氧化碳进入湖泊的输入有关。

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