寻找与Bennettitales相近的生物:一个有希望用于中生代pCO2气孔代用重建的已灭绝植物群

IF 1.2 4区 地球科学 Q2 GEOLOGY Gff Pub Date : 2021-07-03 DOI:10.1080/11035897.2021.1895304
M. Steinthorsdottir, C. Elliott‐Kingston, Mario Coiro, J. McElwain
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引用次数: 2

摘要

摘要为了了解地球的气候变化,提高对未来气候变化的预测,研究过去的气候是一条重要的探索途径。先前发表的一份关于东格陵兰三叠纪-侏罗纪边界(TJB,约201 Ma)pCO2的记录显示,Bennettitales(Anamozamites和Pterophyllum)与经验证明的pCO2响应Ginkgoales平行响应,在整个TJB将其气孔密度降低了一半,表明pCO2瞬时翻倍。世界各地中生代地层和自然历史博物馆收藏的Bennettitales化石为进一步重建气孔代理pCO2提供了巨大的潜力,但理想情况下,应该首先为这个已灭绝的植物群确定一个合适的最接近生命的等效物(NLE)。使用植物标本馆收集的标本,对三种苏铁(历史上被认为是最好的NLE)以及两种在实验生长室中生长的树蕨进行了pCO2反应测试。没有人对pCO2的变化做出反应,因此被拒绝为NLE。最后,从文献中选择了两种蕨类植物,与银杏叶相比,它们产生了非常相似的pCO2。然而,由于栖息地的差异和遥远的进化关系,这些林下蕨类植物不适合Bennettitales。未来的工作应该测试其他植物群,特别是种子植物,如基础被子植物和Gnetales,在pCO2重建中是否适合作为Bennettitales的NLE,例如通过使用红外显微光谱的生物地球化学指纹。在确定合适的NLE之前,Bennettitales pCO2可以基于气孔密度与共存pCO2应答者(如Ginkgoales)的气孔密度的交叉校准来重建。
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Searching for a nearest living equivalent for Bennettitales: a promising extinct plant group for stomatal proxy reconstructions of Mesozoic pCO2
ABSTRACT To understand Earth´s climate variability and improve predictions of future climate change, studying past climates is an important avenue to explore. A previously published record of pCO2, across the Triassic–Jurassic boundary (TJB, ~201 Ma) of East Greenland, showed that Bennettitales (Anamozamites and Pterophyllum) responded in parallel to the empirically proven pCO2-responders Ginkgoales, reducing their stomatal densities by half across the TJB, indicating a transient doubling of pCO2. The abundance of fossil Bennettitales in Mesozoic strata and natural history museum collections worldwide offers enormous potential for further stomatal proxy pCO2 reconstructions, but a suitable nearest living equivalent (NLE) should ideally first be identified for this extinct plant group. Using specimens from herbarium collections, three species of cycads, historically considered the best NLE, were tested for pCO2 response, as well as two species of tree ferns, grown in experimental growth chambers. None responded to changes in pCO2, and were consequently rejected as NLEs. Finally, two species of ferns were selected from the literature, and produced very similar pCO2 compared to Ginkgoales. However, these understory ferns are not appropriate NLEs for Bennettitales due to differences in habitat and a distant evolutionary relationship. Future work should test additional plant groups, in particular seed plants such as basal angiosperms and Gnetales, for suitability as NLE for Bennettitales in pCO2 reconstructions, for example through biogeochemical fingerprinting using infrared microspectroscopy. Until an appropriate NLE is identified, Bennettitales pCO2 can be reconstructed based on cross-calibration of stomatal densities with those of co-occurring pCO2 responders, such as Ginkgoales.
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来源期刊
Gff
Gff 地学-地质学
CiteScore
2.80
自引率
10.00%
发文量
11
审稿时长
>12 weeks
期刊介绍: GFF is the journal of the Geological Society of Sweden. It is an international scientific journal that publishes papers in English covering the whole field of geology and palaeontology, i.e. petrology, mineralogy, stratigraphy, systematic palaeontology, palaeogeography, historical geology and Quaternary geology. Systematic descriptions of fossils, minerals and rocks are an important part of GFF''s publishing record. Papers on regional or local geology should deal with Balto-Scandian or Northern European geology, or with geologically related areas. Papers on geophysics, geochemistry, biogeochemistry, climatology and hydrology should have a geological context. Descriptions of new methods (analytical, instrumental or numerical), should be relevant to the broad scope of the journal. Review articles are welcome, and may be solicited occasionally. Thematic issues are also possible.
期刊最新文献
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