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A bottom-up perspective on ecosystem change in Mesozoic oceans

机译:自下而上的中生代海洋生态系统变化观点

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摘要

Mesozoic and Early Cenozoic marine animals across multiple phyla record secular trends in morphology, environmental distribution, and inferred behaviour that are parsimoniously explained in terms of increased selection pressure from durophagous predators. Another systemic change in Mesozoic marine ecosystems, less widely appreciated than the first, may help to explain the observed animal record. Fossils, biomarker molecules, and molecular clocks indicate a major shift in phytoplankton composition, as mixotrophic dinoflagellates, coccolithophorids and, later, diatoms radiated across shelves. Models originally developed to probe the ecology and biogeography of modern phytoplankton enable us to evaluate the ecosystem consequences of these phytoplankton radiations. In particular, our models suggest that the radiation of mixotrophic dinoflagellates and the subsequent diversification of marine diatoms would have accelerated the transfer of primary production upward into larger size classes and higher trophic levels. Thus, phytoplankton evolution provides a mechanism capable of facilitating the observed evolutionary shift in Mesozoic marine animals.
机译:跨多个门的中生代和早期新生代海洋动物记录了长期的形态,环境分布和推断行为的趋势,这些趋势可以用食指食肉动物增加的选择压力来简化解释。中生代海洋生态系统的另一项系统性变化没有得到广泛认可,这可能有助于解释观察到的动物记录。化石,生物标志物分子和分子钟表明浮游植物的组成发生了重大变化,因为混合营养型鞭毛藻,球墨镜藻以及后来的硅藻散布在架子上。最初开发用来探测现代浮游植物生态学和生物地理学的模型使我们能够评估这些浮游植物辐射对生态系统的影响。特别是,我们的模型表明,混合营养型鞭毛藻的辐射以及随后的海洋硅藻的多样化将加速初级产品向更大规模和更高营养级的转移。因此,浮游植物的进化提供了一种机制,能够促进中生代海洋动物中观察到的进化转变。

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