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早期海洋爬行动物的猛冲式进食与海洋四足动物进食群体的快速演化。

Lunge feeding in early marine reptiles and fast evolution of marine tetrapod feeding guilds.

作者信息

Motani Ryosuke, Chen Xiao-hong, Jiang Da-yong, Cheng Long, Tintori Andrea, Rieppel Olivier

机构信息

Department of Earth and Planetary Sciences, University of California, Davis, One Shields Avenue, Davis, California 95616, U.S.A.

Wuhan Centre of China Geological Survey, Wuhan, Hubei 430023, P. R. China.

出版信息

Sci Rep. 2015 Mar 10;5:8900. doi: 10.1038/srep08900.

Abstract

Traditional wisdom holds that biotic recovery from the end-Permian extinction was slow and gradual, and was not complete until the Middle Triassic. Here, we report that the evolution of marine predator feeding guilds, and their trophic structure, proceeded faster. Marine reptile lineages with unique feeding adaptations emerged during the Early Triassic (about 248 million years ago), including the enigmatic Hupehsuchus that possessed an unusually slender mandible. A new specimen of this genus reveals a well-preserved palate and mandible, which suggest that it was a rare lunge feeder as also occurs in rorqual whales and pelicans. The diversity of feeding strategies among Triassic marine tetrapods reached their peak in the Early Triassic, soon after their first appearance in the fossil record. The diet of these early marine tetrapods most likely included soft-bodied animals that are not preserved as fossils. Early marine tetrapods most likely introduced a new trophic mechanism to redistribute nutrients to the top 10 m of the sea, where the primary productivity is highest. Therefore, a simple recovery to a Permian-like trophic structure does not explain the biotic changes seen after the Early Triassic.

摘要

传统观点认为,二叠纪末大灭绝后的生物复苏是缓慢且渐进的,直到三叠纪中期才完成。在此,我们报告海洋捕食者摄食类群的演化及其营养结构的变化进展更快。具有独特摄食适应性的海洋爬行动物谱系在早三叠世(约2.48亿年前)出现,包括具有异常细长下颌的神秘的湖北鳄。该属的一个新标本显示了保存完好的腭部和下颌,这表明它是一种罕见的猛冲式捕食者,类似于须鲸和鹈鹕。三叠纪海洋四足动物的摄食策略多样性在其首次出现在化石记录后不久的早三叠世达到顶峰。这些早期海洋四足动物的食物很可能包括未被保存为化石的软体动物。早期海洋四足动物很可能引入了一种新的营养机制,将营养物质重新分配到海洋表层10米处,那里的初级生产力最高。因此,简单恢复到类似二叠纪的营养结构并不能解释早三叠世之后出现的生物变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d687/4354009/178b16ebf9bf/srep08900-f1.jpg

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