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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Evolutionary driven of Gephyrocapsa coccolith isotopic vital effects over the past 400 ka
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Evolutionary driven of Gephyrocapsa coccolith isotopic vital effects over the past 400 ka

机译:在过去400 ka过去400 ka中,进化驱动令人讨厌的胃肠杆菌同位素生命影响

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Coccolithophores play important roles in marine biochemistry due to the processes of calcification and photosynthesis. Coccoliths are produced intracellularly, and cells produce coccoliths with stable isotopes distinct from theoretically precipitated inorganic calcite due to the influences of coccolithophore physiology, which are the so-called vital effects. The coccolith isotopic vital effects show large variations between species and hamper the use of coccolith isotopes in paleoceanography. In addition, learning the coccolith isotopic vital effects can help to better understand the carbon fractionation in coccolithophore cell, so as to provide a new insight in reconstructing sea water carbonate system (e.g., from alkenone delta C-13 or directly from coccolith delta C-13) in geological past. In the present study, we investigated the morphological parameters, growth rate, and coccolith stable isotope compositions of Gephyrocapsa, the most universal alkenone-producing coccolithophore across the Pleistocene. These data allow us to estimate the influences of Gephyrocapsa morphology as well as the growth rate on coccolith vital effects. The results showed that Gephyrocapsa morphology, as well as coccolith isotopes, varied with species and morphotype changes, which were evolutionarily forced over the past 400 ka. The small Gephyrocapsa morphotypes (G. caribbeanica and Gephyrocapsa 3 mu m) produced more robust coccoliths with relatively heavier isotopes for both carbon and oxygen than that of the larger-sized G. oceanica. The carbon and oxygen vital effects were significantly correlated and showed negative values, suggesting a kinetic effect on bicarbonate formation during calcification. The Gephyrocapsa growth rate showed a glacial-interglacial cyclicality, and had close relations with coccolith isotopic vital effects before MIS 8 when G. oceanica dominated. It is suggested that coccolith isotopic fractionation were influenced by coccolithophore growth rate, however
机译:由于钙化和光合作用的过程,CoccolithoRogres在海洋生物化学中起重要作用。 Coccoliths以细胞内产生,并且由于Coccolthophore生理学的影响,细胞产生与理论上沉淀的无机方解石不同的稳定同位素,这是所谓的生命效应。 COCCOLITH同位素至关重要的效果在古科学术中展示了物种和妨碍了COCCOLITH同位素的使用巨大变化。此外,学习COCCOLITH同位素生命效应可以有助于更好地了解COCCOLETHOPHORE细胞中的碳分级,以便在重建海水碳酸盐体系(例如,从链烯酮δC-13或直接来自Coccolith Delta C-提供新的见解13)在地质过去。在本研究中,我们研究了Gephyrocapsa的形态学参数,生长速率和椰油族稳定同位素组合物,在整个优质烯穿过全胞外链蛋白。这些数据允许我们估算Gephyrocapsa形态的影响以及Coccolith至关重要效应的生长速度。结果表明,Gephyrocapsa形态以及Coccolith同位素,随着物种和Morphyype的变化而变化,其在过去400 ka上被迫使迫使。小的Gephyrocapsa mor otherphy型(G. caribbeanica和gephyrocapsa&3μm)制备了更强壮的coccoliths,对于碳和氧的相对较重的同位素而不是较大尺寸的G. Oceanica的同位素。碳和氧气至关重要效应显着相关,显示出负值,表明在钙化期间对碳酸氢盐形成的动力学作用。 Gephyrocapsa生长速率显示出冰川间周期性,并且在G. Oceanica主导的Mis 8之前与Coccolith同位素至关重要的影响密切关系。建议Coccolith同位素分级受到Coccolthophore生长速率的影响,然而

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