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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Genomic and geochemical identification of the long-chain alkenone producers in the estuarine Lake Takahoko, Japan: Implications for temperature reconstructions
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Genomic and geochemical identification of the long-chain alkenone producers in the estuarine Lake Takahoko, Japan: Implications for temperature reconstructions

机译:日本河口湖塔淘山丘湖长链链烯酮生产商的基因组和地球化学鉴定:对温度重建的影响

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Identifying the lacustrine haptophyte species that produce long-chain alkenones (LCAs) is essential for using alkenone unsaturation ratios to create lake water temperature reconstructions. We discovered LCAs in the brackish Lake Takahoko in northern Japan. The identity of LCA-producing species was investigated using 18S ribosomal DNA (rDNA) and organic geochemical analysis. Two distinct genetic groups, termed Tak-A and Tak-B, were identified within the Group II haptophyte phylotype. Tak-A was closely related to Hap-A, which was obtained from Lake George, USA; and Tak-B was identified as Isochrysis galbana. Because Hap-A and Isochrysis galbana have similar temperature calibrations, Tak-A and Tak-B were also expected to share similar calibrations. Therefore, the changes of their relative abundances in the lake should not significantly disturb paleotemperature reconstructions. The alkenone temperature recorded in the surface sediment corresponded to the lake temperature in early to late summer. This is likely related to the haptophyte bloom season in Lake Takahoko suggesting that this lake may be a viable location for creating a lacustrine alkenone paleotemperature record. (C) 2020 Elsevier Ltd. All rights reserved.
机译:鉴定产生长链烯烃(LCAs)的曲线触觉物种对于使用链烯酮不饱和度比对于使用湖水温度重建是必不可少的。我们在日本北部的咸塔哈科湖中发现了LCA。使用18S核糖体DNA(RDNA)和有机地球化学分析研究了产生LCA的物种的同一性。在II族触觉子宫型中鉴定出两个不同的遗传基因,称为TAK-A和TAK-B.塔克 - 与美国湖乔治湖获得的HAP-A密切相关;塔克B被识别为isochrysis galbana。由于HAP-A和Isochrysis Galbana具有相似的温度校准,因此塔克A和Tak-B也预计将共享类似的校准。因此,湖中相对丰富的变化不应显着扰乱古温度的重建。在表面沉积物中记录的链烯酮温度与湖泊温度相对应于夏季晚期。这可能与高塔科科湖的幽灵绽放季节有关,这表明这个湖泊可能是创造湖泊链烯酮的可行地理位置。 (c)2020 elestvier有限公司保留所有权利。

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