石炭系氨类基因区

S. Nikolaeva
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引用次数: 2

摘要

作为石炭系地层学的主干,传统的氨类地层学在国际研究小组的改进方面取得了相当大的进展。石炭系含氨基因带在世界上大多数演替中已被确认为贯穿于整个系统,并有一些空白。通过对西欧、北非、乌拉尔、中国和北美等地的精细收集和文献记录,确立了石炭纪大部分时期的第一个演化点,并促进了与有孔虫和牙形石鳞片的对比。现在在密西西比地区发现了10到11个氨类基因区,在宾夕法尼亚地区发现了8到9个基因区。其中,已确定的子系统下边界与氨类分带具有较好的相关性,而与目前正在讨论的已确定的以有孔虫为基础的Visean下边界和其他阶段边界的相关性需要进一步研究。未来在氨类地质年代学方面的成功也将取决于对类型材料的准确识别和重新说明,包括氨类生物地层学先驱描述的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carboniferous ammonoid genozones
Abstract Considerable progress has been made by international teams in refining the traditional ammonoid zonation that remains the backbone of Carboniferous stratigraphy. The Carboniferous ammonoid genozones, with a few gaps, are now recognized throughout the entire system in most successions worldwide. Refined collecting and documentation of occurrences in Western Europe, North Africa, the Urals, China and North America aimed to establish the first evolutionary occurrences, and facilitated correlation with foraminiferal and conodont scales for most of the Carboniferous. From ten to eleven ammonoid genozones are now recognized in the Mississippian, and eight to nine genozones in the Pennsylvanian. Of these, the established lower boundaries of the subsystems are reasonably well correlated with the ammonoid zonation, whereas correlations with the ratified foraminiferal-based lower boundary of the Visean and other stage boundaries, currently under discussion, need further research. Future success in the ammonoid geochronology will also depend on accurate identification and re-illustration of the type material, including material described by pioneers of ammonoid biostratigraphy.
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