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引用本文的文献

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Carbonate uranium isotopes record global expansion of marine anoxia during the Toarcian Oceanic Anoxic Event.碳酸盐铀同位素记录了托阿尔期海洋缺氧事件期间海洋缺氧的全球扩张。
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2
The fossil insect assemblage associated with the Toarcian (Lower Jurassic) oceanic anoxic event from Alderton Hill, Gloucestershire, UK.与英国格洛斯特郡奥尔登顿山的托阿尔阶(下侏罗统)海洋缺氧事件有关的化石昆虫组合。
PLoS One. 2024 Apr 17;19(4):e0299551. doi: 10.1371/journal.pone.0299551. eCollection 2024.
3
Global ocean redox changes before and during the Toarcian Oceanic Anoxic Event.全球海洋氧化还原变化在托阿尔阶海洋缺氧事件之前和期间。
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4
Reduced plate motion controlled timing of Early Jurassic Karoo-Ferrar large igneous province volcanism.板块运动减弱控制了早侏罗世卡鲁-费拉尔大火成岩省火山活动的时间。
Sci Adv. 2022 Sep 9;8(36):eabo0866. doi: 10.1126/sciadv.abo0866.
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Morphological response accompanying size reduction of belemnites during an Early Jurassic hyperthermal event modulated by life history.早侏罗世热事件中菊石缩小伴随的形态响应受生活史调节。
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7
A major sea-level drop briefly precedes the Toarcian oceanic anoxic event: implication for Early Jurassic climate and carbon cycle.主要的海平面下降在 Toarcian 海洋缺氧事件之前短暂出现:对早侏罗世气候和碳循环的启示。
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Fungal decomposition of terrestrial organic matter accelerated Early Jurassic climate warming.真菌分解陆地有机物质加速了早侏罗世气候变暖。
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Adaptations to squid-style high-speed swimming in Jurassic belemnitids.侏罗纪箭石类对鱿鱼式高速游泳的适应性。
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本文引用的文献

1
The geological record of ocean acidification.海洋酸化的地质记录。
Science. 2012 Mar 2;335(6072):1058-63. doi: 10.1126/science.1208277.
2
Ocean deoxygenation in a warming world.全球变暖背景下的海洋脱氧
Ann Rev Mar Sci. 2010;2:199-229. doi: 10.1146/annurev.marine.010908.163855.
3
Astronomical pacing of methane release in the Early Jurassic period.早侏罗世甲烷释放的天文节奏
Nature. 2005 Sep 15;437(7057):396-9. doi: 10.1038/nature04037.
4
Changes in carbon dioxide during an oceanic anoxic event linked to intrusion into Gondwana coals.与冈瓦纳煤侵入相关的海洋缺氧事件期间二氧化碳的变化。
Nature. 2005 May 26;435(7041):479-82. doi: 10.1038/nature03618.
5
Massive dissociation of gas hydrate during a Jurassic oceanic anoxic event.侏罗纪大洋缺氧事件期间天然气水合物的大规模分解
Nature. 2000 Jul 27;406(6794):392-5. doi: 10.1038/35019044.

侏罗纪海洋缺氧事件对箭石生态和进化的影响。

Effect of a Jurassic oceanic anoxic event on belemnite ecology and evolution.

机构信息

Department of Geosciences and Natural Resource Management, University of Copenhagen, 1350 Copenhagen, Denmark; and

Department of Geosciences and Natural Resource Management, University of Copenhagen, 1350 Copenhagen, Denmark; and.

出版信息

Proc Natl Acad Sci U S A. 2014 Jul 15;111(28):10073-6. doi: 10.1073/pnas.1320156111. Epub 2014 Jun 30.

DOI:10.1073/pnas.1320156111
PMID:24982187
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4104856/
Abstract

The Toarcian oceanic anoxic event (T-OAE; ∼ 183 million y ago) is possibly the most extreme episode of widespread ocean oxygen deficiency in the Phanerozoic, coinciding with rapid atmospheric pCO2 increase and significant loss of biodiversity in marine faunas. The event is a unique past tipping point in the Earth system, where rapid and massive release of isotopically light carbon led to a major perturbation in the global carbon cycle as recorded in organic and inorganic C isotope records. Modern marine ecosystems are projected to experience major loss in biodiversity in response to enhanced ocean anoxia driven by anthropogenic release of greenhouse gases. Potential consequences of this anthropogenic forcing can be approximated by studying analog environmental perturbations in the past such as the T-OAE. Here we present to our knowledge the first organic carbon isotope record derived from the organic matrix in the calcite rostra of early Toarcian belemnites. We combine both organic and calcite carbon isotope analyses of individual specimens of these marine predators to obtain a refined reconstruction of the early Toarcian global exogenic carbon cycle perturbation and belemnite paleoecology. The organic carbon isotope data combined with measurements of oxygen isotope values from the same specimens allow for a more robust interpretation of the interplay between the global carbon cycle perturbation, environmental change, and biotic response during the T-OAE. We infer that belemnites adapted to environmental change by shifting their habitat from cold bottom waters to warm surface waters in response to expanded seafloor anoxia.

摘要

桐油旋回缺氧事件(T-OAE;约 1.83 亿年前)可能是显生宙期间海洋缺氧范围最广的极端事件,与大气 pCO2 的快速增加以及海洋动物群生物多样性的显著丧失同时发生。该事件是地球系统中独特的过去转折点,大量轻同位素碳的快速释放导致了全球碳循环的重大干扰,这在有机碳和无机碳同位素记录中都有记录。预计现代海洋生态系统将因人为温室气体释放导致海洋缺氧加剧而经历生物多样性的重大丧失。通过研究过去类似的环境干扰,如 T-OAE,可以近似了解这种人为强迫的潜在后果。在这里,我们首次提出了从桐油旋回早期箭石碳酸钙喙基质中获得的有机碳同位素记录。我们将这些海洋捕食者个体的有机碳和碳酸钙碳同位素分析相结合,以更精细地重建桐油旋回全球外源碳循环扰动和箭石古生态学。与来自同一标本的氧同位素值的测量相结合,有机碳同位素数据允许更稳健地解释桐油旋回缺氧事件期间全球碳循环扰动、环境变化和生物响应之间的相互作用。我们推断,箭石通过将其栖息地从冷海底水转移到温暖的表层水来适应环境变化,以应对海底缺氧的扩大。