首页> 外文期刊>Global and planetary change >Dextral to sinistral coiling switch in planktic foraminifer Morozovella during the Early Eocene Climatic Optimum
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Dextral to sinistral coiling switch in planktic foraminifer Morozovella during the Early Eocene Climatic Optimum

机译:在早期的初期气候最佳期间,在Planktic Foraminifer Morozovela的探索陷入困境的卷曲开关

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摘要

Coiling direction is a basic characteristic of trochospiral planktic foraminifera. Modifications in the coiling direction within ancient planktic foraminiferal populations may reflect important changes in evolution or environment, yet they remain scarcely discussed. Here we investigate fluctuations in the coiling direction within Morozovella assemblages from sections that span the interval of peak Cenozoic warmth, the Early Eocene Climatic Optimum (EECO; -53-49 million years ago, Ma), at Atlantic Ocean Drilling Program (ODP) sites 1051, 1258 and 1263. The surface-dwelling genus Morozovella is of particular interest because it dominated tropical-subtropical early Paleogene assemblages then suffered an abrupt and permanent decline in abundance and taxonomic diversity at the start of the EECO. At all ODP sites, morozovellids display a dominant dextral coiling preference during the interval preceding the EECO. However, all the Morozovella species at all sites modify their coiling from preferentially dextral to sinistral coiling within the EECO, 200 kyr after the K/X event (-52.8 Ma), providing a new biostratigraphic tool for correlation. We also document that before the major shift in morozovellid coiling, transient excursions to higher abundances of sinistral tests occurred in conjunction with negative carbon isotope excursions. Significantly, carbon isotope data reveal that sinistral morphotypes belonging to the same morphospecies typically have lower delta 13C values. The dominance of sinistral morphotypes, at the expense of dextral forms within the EECO, coupled with the lower delta 13C signatures of the former, suggests that the sinistral forms were less dependent on their photosymbiotic partnerships and thus able to adapt more readily to paleoceanographic change at the EECO. The observed sinistral and dextral coiling of morozovellids can be a genetically heritable characteristic that lies within cryptic speciation across multiple morphologically defined species. Alternatively the coiling changes were exclusively ecophenotypic responses whereby different species were able to preferentially adopt sinistral coiling in reaction to the changed conditions in the mixed-layer during the EECO. Previous interpretations of coiling flips in planktic foraminifera in the early Eocene, especially including morozovellids, have favoured a genetic explanation rather than an ecological response. Our present data cannot validate or disprove this idea, but should stimulate renewed thought on the matter.
机译:卷绕方向是Trochospiral Planktic Foraminifera的基本特征。在古代塑料多场动物中的卷绕方向进行修改可能反映进化或环境的重要变化,但它们仍然几乎没有讨论。在这里,我们调查Morozovella组合中的卷绕方向的波动从跨越新生代温暖的峰值间隔,早期的eocene气候最佳(EECO; -53-49万年前,MA),在大西洋钻探计划(ODP)网站1051,1258和1263.莫罗佐夫氏菌属特别感兴趣,因为它占据了热带亚热带早期古雄组合,然后在EECO开始时突然遭受丰富和分类学多样性的突然和永久性下降。在所有ODP站点,Morozovellids在EECO之前的间隔内显示出主导的右侧卷绕偏好。然而,所有地点的所有Morozovella物种都将它们的卷绕从优先右侧的EECO内卷曲变化,k / x事件(-52.8 mA)之后,提供了一种用于相关的新生物数据库工具。我们还记录了在Morozovellid卷绕的重大换档之前,瞬态短途旅行与负碳同位素偏移相结合发生较高的初始测试。值得注意的是,碳同位素数据显示,属于相同形态学的Sinistral Mor型号通常具有较低的Delta 13c值。 Sinistral Morphotic型的优势,以EECO内的右侧形式为代价,与前者的下层13C签名相结合,表明,朝南形式依赖于他们的影像伙伴关系,从而能够更容易地适应古海洋摄影变化Eeco。观察到的莫罗佐葡萄球菌和右侧卷曲可以是跨多种形态定义的物种的隐秘性质中的遗传遗传特征。或者,卷绕变化仅是生态型反应,由此在EECO期间能够优先采用与混合层中混合层中的变化条件反应的窦中卷曲。先前对早期何种群岛的塑料传染率在早期何种群岛的卷曲翻转,特别是莫罗佐葡萄酒,尤其包括莫罗佐葡萄酒,并赞成遗传解释而不是生态反应。我们现在的数据无法验证或反驳这个想法,但应该刺激对此事的重新思考。

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