首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Paleobiogeography, high-resolution stratigraphy, and the future of Paleozoic biostratigraphy: Fine-scale diachroneity of the Wenlock (Silurian) conodont Kockelella walliseri
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Paleobiogeography, high-resolution stratigraphy, and the future of Paleozoic biostratigraphy: Fine-scale diachroneity of the Wenlock (Silurian) conodont Kockelella walliseri

机译:古生物地理学,高分辨率地层学和古生代生物地层学的未来:温洛克(西罗里安)牙形古柯藻体walliseri的小尺度双错度

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摘要

The Wenlock Epoch of the Silurian Period has become one of the chronostratigraphically best-constrained intervals of the Paleozoic. The integration of multiple chronostratigraphic tools, such as conodont and graptolite biostratigraphy, sequence stratigraphy, and δ~(13)C_(carb) chemostratigraphy, has greatly improved global chronostratigraphic correlation and portions of the Wenlock can now be correlated with precision better than ±100kyr. Additionally, such detailed and integrated chronostratigraphy provides an opportunity to evaluate the fidelity of individual chronostratigraphic tools. Here, we use conodont biostratigraphy, sequence stratigraphy and carbon isotope (δ~(13)C_(carb)) chemostratigraphy to demonstrate that the conodont Kockelella walliseri, an important guide fossil for middle and upper Sheinwoodian strata (lower stage of the Wenlock Series), first appears at least one full stratigraphic sequence lower in Laurentia than in Baltica. Rather than serving as a demonstration of the unreliability of conodont biostratigraphy, this example serves to demonstrate the promise of high-resolution Paleozoic stratigraphy. The temporal difference between the two first occurrences was likely less than 1million years, and although it is conceptually understood that speciation and colonization must have been non-instantaneous events, Paleozoic paleobiogeographic variability on such short timescales (tens to hundreds of kyr) traditionally has been ignored or considered to be of little practical importance. The expansion of high-resolution Paleozoic stratigraphy in the future will require robust biostratigraphic zonations that embrace the integration of multiple chronostratigraphic tools as well as the paleobiogeographic variability in ranges that they will inevitably demonstrate. In addition, a better understanding of the paleobiogeographic migration histories of marine organisms will provide a unique tool for future Paleozoic paleoceanography and paleobiology research.
机译:志留纪时期的温洛克时代已成为古生代地层学上最受约束的时间段之一。牙形石和笔石生物地层学,层序地层学和δ〜(13)C_(carb)化学地层学等多种年代地层工具的整合,极大地改善了全球年代地层的相关性,现在,Wenlock的某些部分的关联度可以优于±100kyr 。此外,这样详细而完整的年代地层学提供了一个机会来评估各个年代地层工具的保真度。在这里,我们使用牙形石生物地层学,层序地层学和碳同位素(δ〜(13)C_(carb))化学地层学来证明牙形石科克雷利亚壁生孢粉,它是中上层Sheinwoodian地层的重要指导化石(Wenlock系列的下层) ,首先在Laurentia比Baltica低至少一个完整的地层序列。这个例子不是用来说明牙形石生物地层学的不可靠性,而是用来说明高分辨率古生界地层学的前景。两次首次发生之间的时间差异可能不到一百万年,尽管从概念上理解物种形成和定殖一定是非瞬时事件,但传统上在如此短的时间尺度(几十到几百年)上的古生代古生物地理变异是被忽略或被认为没有什么实际意义。未来高分辨率古生代地层的扩张将需要强大的生物地层地带,包括多个年代地层工具的整合以及它们不可避免地表现出的古生物地理变异性。此外,对海洋生物古生物地理迁移历史的更好理解将为未来古生代古海洋学和古生物学研究提供独特的工具。

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