首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Aberrant Classopollis pollen reveals evidence for unreduced (2n) pollen in the conifer family Cheirolepidiaceae during the Triassic–Jurassic transition
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Aberrant Classopollis pollen reveals evidence for unreduced (2n) pollen in the conifer family Cheirolepidiaceae during the Triassic–Jurassic transition

机译:异常的Classopollis花粉揭示了在三叠纪-侏罗纪过渡期针叶树科针叶科的花粉未还原(2n)的证据

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摘要

Polyploidy (or whole-genome doubling) is a key mechanism for plant speciation leading to new evolutionary lineages. Several lines of evidence show that most species among flowering plants had polyploidy ancestry, but it is virtually unknown for conifers. Here, we study variability in pollen tetrad morphology and the size of the conifer pollen type Classopollis extracted from sediments of the Triassic–Jurassic transition, 200 Ma. Classopollis producing Cheirolepidiaceae were one of the most dominant and diverse groups of conifers during the Mesozoic. We show that aberrant pollen Classopollis tetrads, triads and dyads, and the large variation in pollen size indicates the presence of unreduced (2n) pollen, which is one of the main mechanisms in modern polyploid formation. Polyploid speciation may explain the high variability of growth forms and adaptation of these conifers to different environments and their resistance to extreme growth conditions. We suggest that polyploidy may have also reduced the extinction risk of these conifers during the End-Triassic biotic crisis.
机译:多倍体(或全基因组倍增)是植物形成新进化世系的关键机制。有几条证据表明,开花植物中的大多数物种具有多倍体起源,但对于针叶树却几乎未知。在这里,我们研究了从三叠纪-侏罗纪过渡带(200 Ma)的沉积物中提取的针叶花粉四倍体形态的变异性和针叶树花粉类型Classopollis的大小。在中生代,生产针叶蕨科的类眼球是针叶树中最主要和种类最多的一组。我们显示异常花粉类花粉四联体,三联体和二联体,并且花粉大小的大变化表明存在未还原的(2n)花粉,这是现代多倍体形成的主要机制之一。多倍体物种可能解释了生长形式的高度可变性以及这些针叶树适应不同环境及其对极端生长条件的抵抗力。我们建议多倍体也可能降低了三叠纪末期生物危机期间这些针叶树的灭绝风险。

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