Skip to main navigation Skip to search Skip to main content

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

  • C. R. Lundquist*
  • , Paula Rudall
  • , Rahayu Sukri
  • , Maria Conejero
  • , Alyssa Smith
  • , Martin Lopez-Garcia
  • , Heather M Whitney
  • , et al
  • *Corresponding author for this work

Research output: Contribution to journalArticle (Academic Journal)peer-review

5 Citations (Scopus)
90 Downloads (Pure)

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.
Original languageEnglish
Pages (from-to)131-149
Number of pages19
JournalAnnals of Botany
Volume134
Issue number1
Early online date29 Mar 2024
DOIs
Publication statusPublished - 1 Jul 2024

Bibliographical note

Publisher Copyright:
© 2024 Oxford University Press. All rights reserved.

Fingerprint

Dive into the research topics of 'Living jewels: iterative evolution of iridescent blue leaves from helicoidal cell walls'. Together they form a unique fingerprint.

Cite this