Identification of a tetrahedral apical cell preserved within a fossilized fern fiddlehead.

IF 8.1 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Current Biology Pub Date : 2025-01-20 Epub Date: 2024-12-05 DOI:10.1016/j.cub.2024.10.076
Rafael Cruz, Alexander J Hetherington
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Abstract

The gradual unfurling of fronds from tightly coiled tips, termed fiddleheads or croziers, is one of the most recognizable features of the fern lineage, but its evolutionary origin remains unclear. Here, we identify that fiddleheads and their development, termed circinate vernation,1,2 are not ubiquitous across ferns. Instead, they are a synapomorphy of a clade we term the circinatophytes that includes extant marattioid and leptosporangiate ferns. Circinatophytes encompass the vast majority of extant ferns,3 and fossil evidence demonstrates the antiquity of the group at over 315 million years. Despite their overall conservation, a comparative investigation of extant species suggests that during fiddlehead evolution, there was a transition from a tetrahedral to a wedge-shaped apical cell in the leaf meristem. We predict that a tetrahedral leaf apical cell was likely ancestral in circinatophytes, despite being present in less than 2% of modern species,3 and that this cell mirrored the tetrahedral cell found in the shoots of all major groups of ferns. This is supported by our description of a tetrahedral apical cell in, to our knowledge, the oldest preserved fossil fern leaf meristem of the ca. 315-million-year-old fern Ankyropteris corrugata. We conclude that fiddleheads have been highly conserved in the circinatophytes, and the similarities in leaf and shoot apical cells in early diverging groups of ferns add support to the hypothesis that fern leaves evolved through the modification of shoots, as proposed by the telome theory.4.

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蕨类蕨类植物化石中保存的四面体顶端细胞的鉴定。
从紧密卷曲的顶端逐渐展开的叶子,被称为fidleheads或crozier,是蕨类谱系中最容易识别的特征之一,但其进化起源尚不清楚。在这里,我们确定,fidfidleheads和他们的发展,称为环vernation,1,2不是普遍存在于蕨类植物。相反,它们是我们称之为环状蕨类植物的一个分支的突触形态,包括现存的马颈类蕨类和细孢子蕨类。卷叶植物涵盖了绝大多数现存的蕨类植物,化石证据表明,这一群体的历史超过3.15亿年。尽管它们总体上是保守的,但对现存物种的比较研究表明,在毛头草的进化过程中,叶分生组织中有一个从四面体到楔形顶端细胞的过渡。我们预测四面体叶尖细胞可能是圆形植物的祖先,尽管在不到2%的现代物种中存在3,并且这个细胞反映了所有主要蕨类植物的芽中的四面体细胞。我们对一个四面体顶端细胞的描述支持了这一点,据我们所知,这是大约3.15亿年前的蕨类Ankyropteris gata中保存最古老的蕨类叶分生组织化石。我们得出结论,蕨类植物早期分化类群的叶片和茎尖细胞的相似性支持了端粒理论提出的蕨类植物叶片是通过茎的修饰而进化的假说。
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来源期刊
Current Biology
Current Biology 生物-生化与分子生物学
CiteScore
11.80
自引率
2.20%
发文量
869
审稿时长
46 days
期刊介绍: Current Biology is a comprehensive journal that showcases original research in various disciplines of biology. It provides a platform for scientists to disseminate their groundbreaking findings and promotes interdisciplinary communication. The journal publishes articles of general interest, encompassing diverse fields of biology. Moreover, it offers accessible editorial pieces that are specifically designed to enlighten non-specialist readers.
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