Evolutionary Floras ‒ revealing large-scale patterns in Palaeozoic vegetation history

Christopher J. Cleal, Borja Cascales–Miñana
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引用次数: 3

Abstract

The overarching trajectory of Palaeozoic vegetation history can be interpreted as the sequential replacement of the Eotracheophytic, Eophytic, Palaeophytic and Mesophytic evolutionary floras. Each evolutionary flora was characterised by a group of co-existing supra-generic plant taxa (families and orders) that formed relatively coherent communities in time and space. In most cases, the transition between floras was relatively brief and usually reflected the appearance of evolutionary adaptations (e.g., seeds, robust steles) that favoured the plants of the new flora. The main exception was the diachronous appearance of the Mesophytic Flora during the late Carboniferous and Permian, apparently the result of the invasion by upland or extra-basinal vegetation pre-adapted to the drier substrates that were developing then in the lowlands. The mass extinctions that had such a major effect on Sepkoski’s evolutionary faunas had little effect on the dynamics of the evolutionary floras.
进化植物区系——揭示古生代植被史的大规模模式
古生代植被史的总体轨迹可以解释为古植物、生植物、古植物和中植物进化区系的顺序更替。每一种进化植物群的特征都是一组共存的超属植物分类群(科和目),它们在时间和空间上形成了相对连贯的群落。在大多数情况下,植物区系之间的过渡相对较短,通常反映了有利于新植物区系的进化适应的出现(例如,种子、坚固的石柱)。主要的例外是中植物区系在晚石炭世和二叠纪期间的跨时性出现,这显然是高地或盆地外植被入侵的结果,这些植被预先适应了当时在低地发育的干燥基质。大灭绝对塞普科斯基的进化动物群产生了重大影响,但对进化动物群的动态影响很小。
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