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Little lasting impact of the Paleocene-Eocene Thermal Maximum on shallow marine molluscan faunas

机译:古新世-始新世热最大值对浅海软体动物的影响不大

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Global warming, acidification, and oxygen stress at the Paleocene-Eocene Thermal Maximum (PETM) are associated with severe extinction in the deep sea and major biogeographic and ecologic changes in planktonic and terrestrial ecosystems, yet impacts on shallow marine macrofaunas are obscured by the incompleteness of shelf sections. We analyze mollusk assemblages bracketing (but not including) the PETM and find few notable lasting impacts on diversity, turnover, functional ecology, body size, or life history of important clades. Infaunal and chemosymbiotic taxa become more common, and body size and abundance drop in one clade, consistent with hypoxia-driven selection, but within-clade changes are not generalizable across taxa. While an unrecorded transient response is still possible, the long-term evolutionary impact is minimal. Adaptation to already-warm conditions and slow release of CO2 relative to the time scale of ocean mixing likely buffered the impact of PETM climate change on shelf faunas.
机译:古新世-始新世热最大值(PETM)的全球变暖,酸化和氧胁迫与深海物种的严重灭绝以及浮游和陆地生态系统的主要生物地理和生态变化有关,但对海洋浅层大型动物的影响却被不完全掩盖了架子部分。我们分析了包围(但不包括)PETM的软体动物组合,发现对重要进化枝的多样性,更新,功能生态,体型或生活史没有明显的持久影响。臭名昭著的和化学共生的类群变得更加普遍,并且一个分支的体型和丰度下降,这与缺氧驱动的选择相一致,但是在整个类群中,分支内的变化并不普遍。尽管仍可能出现未记录的瞬态响应,但长期的进化影响却很小。相对于海洋混合的时间尺度,适应已经温暖的条件和缓慢释放CO2可能会缓冲PETM气候变化对陆架动物的影响。

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