Characterizing the branching architecture of drepanophycalean lycophytes (Lycopsida): an exceptional specimen from the Early Devonian Hunsrück Slate, southwest Germany, and its paleobiological implications

被引:0
作者
Markus Poschmann
Rolf Gossmann
Kelly K. S. Matsunaga
Alexandru M. F. Tomescu
机构
[1] Generaldirektion Kulturelles Erbe RLP,
[2] Direktion Landesarchäologie/Erdgeschichte,undefined
[3] University of Michigan,undefined
[4] Humboldt State University,undefined
来源
PalZ | 2020年 / 94卷
关键词
Lycopsida; Early Devonian; Hunsrück Slate; Branching architecture; Morphologic diversity; Oceanic dispersal;
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学科分类号
摘要
An exceptionally large and well-preserved drepanophycalean lycophyte specimen from the Early Emsian Hunsrück Slate exhibits branching morphology and architecture that suggest previously unrecognized diversity of drepanophycalean lycophytes in the German Early Devonian. The specimen shows long prostrate axes giving rise to both rooting axes and erect leafy, unbranched axes via K-branching. Rhizomatous growth along the substrate promoted rapid vegetative expansion of the plant forming monoclonal patches, potential adaptations to colonizing an unstable deltaic environment. K-branches including dormant buds may have allowed resurrection of the shoot system following burial by sediment or damage to growing shoot apices. Cutbank erosion may have uprooted parts of the plants, which were then transported into the open marine areas and eventually buried in the Hunsrück Slate depositional environment. We hypothesize that remains of Late Silurian/Early Devonian plants (and possibly Prototaxites) may have drifted for many kilometers and were large enough to raft small organisms over considerable distances. Thus, the Late Silurian/Early Devonian may have witnessed the earliest passive oceanic dispersal by rafting of terrestrial invertebrates and therefore marks a crucial time in Earth’s history with respect to this important paleobiogeographical factor.
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页码:1 / 16
页数:15
相关论文
共 212 条
[21]  
Bonamo PM(2001) (Dawson) Stockmans, F., 1939, du Dévonien Inférieur de Belgique American Fern Journal 91 74-533
[22]  
Banks HP(2014)Observations nouvelles sur les axes vegetatifs de Proceedings of the Geologists’ Association 125 524-56
[23]  
Grierson JD(2012) Göppert de l’Emsien inferieur des “Nouvelles Carrieres” de Dave, Belgique Trends in Ecology & Evolution 27 47-95
[24]  
Briggs DEG(2004)New observations on Paläontologische Zeitschrift 78 73-299
[25]  
Raiswell R(1852) from the Lower Devonian of Guizhou, China Verhandlungen der kaiserlichen leopoldinisch-carolinischen Akademie der Naturforscher 22 1-186
[26]  
Bottrell SH(2007)Phylogenetic relationships of the zosterophylls and lycopsids: evidence from morphology, paleoecology, and cladistics methods of inference Fossilien 24 170-295
[27]  
Hatfield D(1963)Early lycophyte evolution Palaeontographica Americana 4 220-101
[28]  
Bartels C(1983)Palaeozoic co-evolution of rivers and vegetation: a synthesis of current knowledge Botanical Journal of the Linnean Society 86 81-544
[29]  
Cascales-Miñana B(2017)Long-distance dispersal: a framework for hypothesis testing PLoS One 12 e0180139-425
[30]  
Meyer-Berthaud B(2017)Preservation of tube feet in an ophiuroid (Phylum Echinodermata) from the Lower Devonian Hunsrück Slate of Germany and a redescription of New Phytologist 215 538-17