Living jewels: iterative evolution of iridescent blue leaves from helicoidal cell walls.

IF 3.6 2区 生物学 Q1 PLANT SCIENCES Annals of botany Pub Date : 2024-06-07 DOI:10.1093/aob/mcae045
Clive R Lundquist, Paula J Rudall, Rahayu S Sukri, María Conejero, Alyssa Smith, Martin Lopez-Garcia, Silvia Vignolini, Faizah Metali, Heather M Whitney
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Abstract

Background and aims: Structural colour is responsible for the remarkable metallic blue colour seen in the leaves of several plants. Species belonging to only ten genera have been investigated to date, revealing four photonic structures responsible for structurally coloured leaves. One of these is the helicoidal cell wall, known to create structural colour in the leaf cells of five taxa. Here we investigate a broad selection of land plants to understand the phylogenetic distribution of this photonic structure in leaves.

Methods: We identified helicoidal structures in the leaf epidermal cells of 19 species using transmission electron microscopy. Pitch measurements of the helicoids were compared with the reflectance spectra of circularly polarized light from the cells to confirm the structure-colour relationship.

Results: By incorporating species examined with a polarizing filter, our results increase the number of taxa with photonic helicoidal cell walls to species belonging to at least 35 genera. These include 19 monocot genera, from the orders Asparagales (Orchidaceae) and Poales (Cyperaceae, Eriocaulaceae, Rapateaceae) and 16 fern genera, from the orders Marattiales (Marattiaceae), Schizaeales (Anemiaceae) and Polypodiales (Blechnaceae, Dryopteridaceae, Lomariopsidaceae, Polypodiaceae, Pteridaceae, Tectariaceae).

Conclusions: Our investigation adds considerably to the recorded diversity of plants with structurally coloured leaves. The iterative evolution of photonic helicoidal walls has resulted in a broad phylogenetic distribution, centred on ferns and monocots. We speculate that the primary function of the helicoidal wall is to provide strength and support, so structural colour could have evolved as a potentially beneficial chance function of this structure.

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活宝石:螺旋形细胞壁迭代演化出彩虹蓝叶。
背景和目的:几种植物的叶片之所以呈现出显著的金属蓝色,是由结构色造成的。迄今为止,只对十个属的物种进行了调查,发现了四种导致蓝色叶片的光子结构。其中之一是螺旋形细胞壁,已知它能在五个类群的叶细胞中产生结构色。在此,我们研究了多种陆生植物,以了解叶片中这种光子结构的系统发育分布:方法:我们使用透射电子显微镜鉴定了 19 个物种叶表皮细胞中的螺旋状结构。方法:我们利用透射电子显微镜确定了 19 个物种叶片表皮细胞中的螺旋状结构,并将螺旋状结构的间距测量结果与细胞中圆极化光的反射光谱进行了比较,以确认结构与颜色之间的关系:结果:通过纳入使用偏振滤光片检测的物种,我们的研究结果使具有光子螺旋形细胞壁的类群数量增加到至少 35 个属。其中包括 23 个单子叶植物属,分别来自天南星科(Asparagales)和蔷薇科(Poales),以及 17 个蕨类植物属,分别来自马齿苋目(Marattiaceae)、五味子目(Anemiaceae)和多针叶目(Blechnaceae、Dryopteridaceae、Lomariopsidaceae、Polypodiaceae、Pteridaceae、Tectariaceae):我们的研究大大丰富了具有彩色叶片结构的植物的多样性。光子螺旋壁的反复进化导致了以蕨类植物和单子叶植物为中心的广泛系统发育分布。我们推测,螺旋壁的主要功能是提供强度和支撑,因此结构色的进化可能是这种结构的一种潜在有益的偶然功能。
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来源期刊
Annals of botany
Annals of botany 生物-植物科学
CiteScore
7.90
自引率
4.80%
发文量
138
审稿时长
3 months
期刊介绍: Annals of Botany is an international plant science journal publishing novel and rigorous research in all areas of plant science. It is published monthly in both electronic and printed forms with at least two extra issues each year that focus on a particular theme in plant biology. The Journal is managed by the Annals of Botany Company, a not-for-profit educational charity established to promote plant science worldwide. The Journal publishes original research papers, invited and submitted review articles, ''Research in Context'' expanding on original work, ''Botanical Briefings'' as short overviews of important topics, and ''Viewpoints'' giving opinions. All papers in each issue are summarized briefly in Content Snapshots , there are topical news items in the Plant Cuttings section and Book Reviews . A rigorous review process ensures that readers are exposed to genuine and novel advances across a wide spectrum of botanical knowledge. All papers aim to advance knowledge and make a difference to our understanding of plant science.
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