Spores constraining age of the Middle Devonian paleosol from Voronezh, Russia and their paleopedological and evolutionary significances

IF 1.7 3区 地球科学 Q2 PALEONTOLOGY
Kai Wang , Tatiana Alekseeva , Hong-He Xu
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Abstract

As a tangible record that formed on ancient landscape, paleosols provide unique evidence for the evolutionary, paleoecological, and paleoenvironmental understandings to land organisms. However, not all paleosols have a good potential for fossil preservation. Plant preservation of paleosols is highly dependent on Eh-Ph conditions of the past and usually favor reducing paleosols. In this study, we carry on palynological analysis for an acid sulfate paleosol from Voronezh, Russia. Abundant and well-preserved spores are recognized from the middle part of this paleosol and its overlying shale. The Ancyrospora tichonovitschiRetispora archaeolepidophytaRhabdosporites langii (TAL) assemblage from the paleosol, including spores of 45 genera and 101 species, indicates a late Eifelian?–early Givetian age. This new age constraint on the paleosol is entrenched by another spore assemblage from the lowermost part of the overlying shale, namely Cristatisporites conannulatusGeminospora decoraMembrabaculisporis comans (CDC) assemblage. This assemblage includes spores of 38 genera and 89 species, and can be well correlated with the early Givetian Cymbosporites magnificusHymenozonotriletes tichonovitschi (MT) Subzone in eastern Europe. Both the assemblages are characteristic for the humid subtropical flora. Assessments of sporopollenin degradation within the paleosol lead to the suggestion that low pH value probably plays a significant role in spore preservation and can explain the surprising diversity and abundance of spores. New palynological results indicate a flourishing land flora in the Kačák interval of Voronezh High, where terrestrial vegetation might have suffered from a collapse coincident with the Taghanic event.
俄罗斯沃罗涅日中泥盆世古土壤孢子约束年龄及其古生物学和进化意义
古土壤是形成于古代景观上的有形记录,为认识陆地生物的进化、古生态和古环境提供了独特的证据。然而,并不是所有的古土壤都有很好的保存化石的潜力。古土壤的植物保存高度依赖于过去的Eh-Ph条件,通常有利于还原古土壤。本文对俄罗斯沃罗涅日的酸性硫酸盐古土壤进行了孢粉学分析。在古土壤中部及其上覆页岩中发现了大量保存完好的孢子。从古土壤中发现的铁丘氏针孢菌-古表皮刺孢菌-兰氏横纹孢菌(TAL)组合,包括45属101种孢子,表明在埃菲尔晚期?——吉卜赛人早期。来自上覆页岩最下部的另一孢子组合,即Cristatisporites conannulatus-Geminospora decora-Membrabaculisporis comans (CDC)组合,强化了古土壤的新时代限制。该组合包括38属89种孢子,与东欧早期的Cymbosporites magnificus-Hymenozonotriletes tichonovitschi (MT)亚带具有很好的相关性。这两种组合都是湿润亚热带植物群的特征。对古土壤中孢粉素降解的评估表明,低pH值可能在孢子保存中起重要作用,并可以解释孢子惊人的多样性和丰度。新的孢粉学结果表明,在Voronezh高地Kačák区间有一个繁荣的陆地植物群,那里的陆地植被可能遭受了与Taghanic事件同时发生的崩溃。
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来源期刊
CiteScore
3.50
自引率
21.10%
发文量
149
审稿时长
6 months
期刊介绍: The Review of Palaeobotany and Palynology is an international journal for articles in all fields of palaeobotany and palynology dealing with all groups, ranging from marine palynomorphs to higher land plants. Original contributions and comprehensive review papers should appeal to an international audience. Typical topics include but are not restricted to systematics, evolution, palaeobiology, palaeoecology, biostratigraphy, biochronology, palaeoclimatology, paleogeography, taphonomy, palaeoenvironmental reconstructions, vegetation history, and practical applications of palaeobotany and palynology, e.g. in coal and petroleum geology and archaeology. The journal especially encourages the publication of articles in which palaeobotany and palynology are applied for solving fundamental geological and biological problems as well as innovative and interdisciplinary approaches.
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