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首例来自化石记录的苏铁类植物幼叶及其对新生代苏铁类演化的启示。

First cycad seedling foliage from the fossil record and inferences for the Cenozoic evolution of cycads.

机构信息

1 Botanical Department, Hungarian Natural History Museum , Könyves K. krt. 40, Budapest 1087 , Hungary.

2 Department of Systematic and Evolutionary Botany, University of Zürich , Zollikerstrasse, 107 8008 Zürich , Switzerland.

出版信息

Biol Lett. 2019 Jul 26;15(7):20190114. doi: 10.1098/rsbl.2019.0114. Epub 2019 Jul 10.

Abstract

The morphology of the early ontogenetic stages of cycad foliage may help resolve the relationships between extinct to extant cycad lineages. However, prior to this study, fossil evidence of cycad seedlings was not known. We describe a compression fossil of cycad eophylls with co-occurring fully developed leaves of adult specimens from the early Palaeocene ( ca 63.8 Ma) Castle Rock flora from the Denver Basin, CO, USA and assign it to the fossil genus Dioonopsis (Cycadales) based on leaf morphology and anatomy. The new fossil seedling foliage is particularly important because fully differentiated pinnate leaves of adult plants and the eophylls belong to the same species based on shared epidermal micromorphology, therefore, increasing the number of morphological characteristics that can be used to place Dioonopsis phylogenetically. Significantly, the seedling fossil has a basic foliage structure that is very similar to seedlings of extant cycads, which is consistent with a cycadalean affinity of Dioonopsis. Nevertheless, the set of morphological characters in the seedling and adult specimens of Dioonopsis suggests a distant relationship between Dioonopsis and extant Dioon. This indicates that extinct lineages of cycads were present and widespread during the early Cenozoic (Palaeogene) coupled with the subordinate role of extant genera in the Palaeogene fossil record of cycads.

摘要

苏铁早期胚胎形态学特征可能有助于解决已灭绝苏铁与现存苏铁之间的系统发育关系。然而,在这项研究之前,尚未发现苏铁幼苗的化石证据。我们描述了来自美国科罗拉多州丹佛盆地早古新世(约 63.8 Ma)卡斯尔岩植物群的具有同时发育的成年标本的完全叶的苏铁营养叶的压缩化石,并根据叶片形态和解剖结构将其分配给化石属迪翁opsis(苏铁目)。新的化石幼苗叶非常重要,因为成年植物的完全分化的羽状叶和营养叶具有相同的表皮微形态,因此增加了可以用于迪翁opsis 系统发育的形态特征数量。重要的是,幼苗化石具有与现存苏铁幼苗非常相似的基本叶结构,这与迪翁opsis 的苏铁目亲缘关系一致。然而,迪翁opsis 幼苗和成年标本的一系列形态特征表明迪翁opsis 与现存的迪翁属之间存在较远的关系。这表明在新生代早期(古近纪)已经存在并广泛分布灭绝的苏铁谱系,同时现存属在苏铁古近纪化石记录中也发挥了次要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28f6/6684986/ea33d733d337/rsbl20190114-g1.jpg

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