Agglutinated foraminifera from the Turonian–Coniacian boundary interval in Europe – paleoenvironmental remarks and stratigraphy

IF 4.1 3区 地球科学 Q1 PALEONTOLOGY Journal of Micropalaeontology Pub Date : 2023-09-22 DOI:10.5194/jm-42-117-2023
Richard M. Besen, Kathleen Schindler, Andrew S. Gale, Ulrich Struck
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Abstract

Abstract. Agglutinated foraminiferal assemblages of the Turonian–Coniacian from the GSSP (Global Boundary Stratotype Section and Point) of Salzgitter–Salder (Subhercynian Cretaceous Basin, Germany) and other sections, including Bielefeld–Ostwestfalendamm (Münsterland Cretaceous Basin, Germany) and the Dover–Langdon Stairs (Anglo-Paris Basin, England), from the temperate European shelf realm were studied in order to collect additional stratigraphic and paleoenvironmental information. Stable carbon isotopes were measured for the Bielefeld–Ostwestfalendamm section to establish a reliable stratigraphic correlation with other sections. Highly diverse agglutinated foraminiferal assemblages were obtained from sections in the German basins, whereas the fauna from Dover is less rich in taxa and less abundant. In the German basinal sections, a morphogroup analysis of agglutinated foraminifera and the calculated diversities imply normal marine settings and oligotrophic to mesotrophic bottom-water conditions. Furthermore, acmes of agglutinated foraminifera correlate between different sections and can be used for paleoenvironmental analysis. Three acmes of the species Ammolagena contorta are recorded for the Turonian–Coniacian (perplexus to lower striatoconcentricus zones, lower scupini Zone, and hannovrensis Zone) and likely imply a shift to more oligotrophic bottom-water conditions. In the upper scupini Zone below the Turonian–Coniacian boundary, an acme of Bulbobaculites problematicus likely indicates enhanced nutrient availability. In general, agglutinated foraminiferal morphogroups display a gradual shift from Turonian oligotrophic environments towards more mesotrophic conditions in the latest Turonian and Coniacian.
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欧洲Turonian-Coniacian界线段的凝集有孔虫——古环境注释和地层
摘要为了收集更多的地层和古环境信息,研究了德国下海西期白垩纪Salzgitter-Salder盆地GSSP(全球边界层型剖面和点)以及德国m nsterland白垩纪盆地bieleffeld - ostwestfalendamm剖面和英国Anglo-Paris盆地Dover-Langdon Stairs剖面上的turonia - coniacian有孔虫凝集组合。对Bielefeld-Ostwestfalendamm剖面进行了稳定碳同位素测量,与其他剖面建立了可靠的地层对比。从德国盆地剖面中获得了高度多样化的凝集有孔虫组合,而多佛的动物群分类群较少,数量较少。在德国盆地剖面中,对凝集有孔虫的形态组分析和计算的多样性表明正常的海洋环境和少营养到中营养的底水条件。此外,不同剖面间的凝集有孔虫峰值具有相关性,可用于古环境分析。在Turonian-Coniacian(向下纹状带、下scupini带和hannovrensis带)记录了三个顶点的Ammolagena contorta物种,这可能意味着向更少营养的底水条件的转变。在Turonian-Coniacian边界以下的上部棘骨带,问题球芽孢杆菌的顶峰可能表明营养物质的有效性增强。总的来说,凝集有孔虫形态群在最新的Turonian和Coniacian表现出从Turonian少营养环境向中营养环境的逐渐转变。
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来源期刊
Journal of Micropalaeontology
Journal of Micropalaeontology 生物-古生物学
CiteScore
4.30
自引率
5.00%
发文量
7
审稿时长
>12 weeks
期刊介绍: The Journal of Micropalaeontology (JM) is an established international journal covering all aspects of microfossils and their application to both applied studies and basic research. In particular we welcome submissions relating to microfossils and their application to palaeoceanography, palaeoclimatology, palaeobiology, evolution, taxonomy, environmental change and molecular phylogeny.
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