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首页> 外文期刊>International journal of plant sciences >WHOLE-PLANT CONCEPT AND ENVIRONMENT RECONSTRUCTION OF A TELEMACHUS CONIFER (VOLTZIALES) FROM THE TRIASSIC OF ANTARCTICA
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WHOLE-PLANT CONCEPT AND ENVIRONMENT RECONSTRUCTION OF A TELEMACHUS CONIFER (VOLTZIALES) FROM THE TRIASSIC OF ANTARCTICA

机译:南极三叠纪的锥果(VOLTZIALES)的全植物概念和环境重建

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摘要

We present a whole-plant concept for a genus of voltzialean conifers on the basis of compression/impression and permineralized material from the Triassic of Antarctica. The reconstruction of the individual organs is based on a combination of organic connections, structural correspondences, similarities in cuticles and epidermal morphologies, co-occurrence data, and ex situ palynology. The affiliated genera of organs include trunks, branches, and roots (Notophytum); strap-shaped leaves with parallel venation (Heidiphyllum compressions and permineralized Notophytum leaves); seed cones (Telemachus and Parasciadopitys); pollen cones (Switzianthus); and bisaccate pollen of Alisporites type. Structural similarities lead us to suggest that Parasciadopitys is the permineralized state of a Telemachus cone and should be treated as a junior synonym. Biotic interactions involving the reconstructed conifer genus include plant-insect interactions (oviposition by Odonata) and not less than five different types of plant-fungal interactions, including two distinct endomycorrhizal associations, two probable seed parasites, and epiphyllous fungi. A representative whole plant is reconstructed as a 10-15-m-tall, seasonally deciduous forest tree with a vertical, narrow-conical crown shape. We interpret these Telemachus trees as the dominant components of peat-forming conifer swamps, forest bogs, and immature bottomland vegetation in the Triassic high-latitude river basins of southern Gondwana. In architecture, growth habit, and many ecological characteristics, the Telemachus conifers appear to be comparable to extant larch (Larix). Owing to the large amount and often exquisite preservation of the material, this conceptual whole-plant genus represents one of the most completely reconstructed ancient conifer taxa to date.
机译:我们基于南极三叠纪的压缩/压实和矿化材料,提出了Voltzialean针叶树属的全植物概念。各个器官的重建基于有机联系,结构对应,表皮和表皮形态的相似性,共现数据和异位孢粉学的组合。器官的附属属包括树干,分支和根(Notophytum);带状叶具平行脉状(Heidiphyllum压缩和矿化的能生植物叶);球果(Telemachus和寄生);花粉球(Switzianthus);以及Arisporites型的双花粉。结构上的相似性使我们认为,寄生虫症是Telemachus锥的矿化状态,应将其视为初级同义词。涉及重建针叶树属的生物相互作用包括植物-昆虫相互作用(由卵形卵生卵)和不少于五种不同类型的植物-真菌相互作用,包括两种不同的内生菌根结合,两种可能的种子寄生虫和epi生真菌。有代表性的整株植物被重建为高10-15米的季节性落叶林树,树冠呈垂直,窄圆锥形。我们将这些Telemachus树解释为冈瓦纳南部三叠纪高纬河流域中形成泥炭的针叶树沼泽,森林沼泽和不成熟的底地植被的主要成分。在建筑,生长习性和许多生态特征方面,Telemachus针叶树似乎可以与现存的落叶松(Larix)相媲美。由于材料的大量保存和经常精美的保存,这种概念上的全植物属代表了迄今为止最完整的古代针叶树分类群之一。

著录项

  • 来源
    《International journal of plant sciences》 |2013年第3期|425-444|共20页
  • 作者单位

    Department of Ecology and Evolutionary Biology, University of Kansas, Lawrence, Kansas 66045, U.S.A.Natural History Museum and Biodiversity Institute, University of Kansas, Lawrence, Kansas 66045, U.S.A.;

    Universite Montpellier 2, Unite Mixte de Recherche Botanique et Bioinformatique de l'Architecture des Plantes (UMR AMAP), Montpellier, F-34000, France Centre National de la Recherche Scientifique, UMR AMAP, Montpellier, F-34000, France;

    Consejo Nacional de Investigaciones Cientfficas y Tecnicas-Museo Paleontologico Egidio Feruglio, Trelew, Chubut 9100, Argentina;

    Department of Ecology and Evolutionary Biology, University of Kansas, Lawrence, Kansas 66045, U.S.A.Natural History Museum and Biodiversity Institute, University of Kansas, Lawrence, Kansas 66045, U.S.A.;

    Department of Biological Sciences, LSCB 124, University of South Alabama, Mobile, Alabama 36688, U.S.A.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Triassic; Antarctica; conifer; whole-plant reconstruction; Heidiphyllum; Telemachus, Notophytum;

    机译:三叠纪;南极洲;针叶树;全厂改造;Heidiphyllum;远藤植物;

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