Microscopy and chemical analyses reveal flavone-based woolly fibres extrude from micron-sized holes in glandular trichomes of Dionysia tapetodes

Author:

Bourdon Matthieu,Gaynord Josephine,Müller Karin H.,Evans Gareth,Wallis Simon,Aston Paul,Spring David R.,Wightman RaymondORCID

Abstract

Abstract Background Dionysia tapetodes, a small cushion-forming mountainous evergreen in the Primulaceae, possesses a vast surface-covering of long silky fibres forming the characteristic “woolly” farina. This contrasts with some related Primula which instead form a fine powder. Farina is formed by specialized cellular factories, a type of glandular trichome, but the precise composition of the fibres and how it exits the cell is poorly understood. Here, using a combination of cell biology (electron and light microscopy) and analytical chemical techniques, we present the principal chemical components of the wool and its mechanism of exit from the glandular trichome. Results We show the woolly farina consists of micron-diameter fibres formed from a mixture of flavone and substituted flavone derivatives. This contrasts with the powdery farina, consisting almost entirely of flavone. The woolly farina in D. tapetodes is extruded through specific sites at the surface of the trichome’s glandular head cell, characterised by a small complete gap in the plasma membrane, cell wall and cuticle and forming a tight seal between the fibre and hole. The data is consistent with formation and thread elongation occurring from within the cell. Conclusions Our results suggest the composition of the D. tapetodes farina dictates its formation as wool rather than powder, consistent with a model of thread integrity relying on intermolecular H-bonding. Glandular trichomes produce multiple wool fibres by concentrating and maintaining their extrusion at specific sites at the cell cortex of the head cell. As the wool is extensive across the plant, there may be associated selection pressures attributed to living at high altitudes.

Funder

Gatsby Charitable Foundation

Engineering and Physical Sciences Research Council

Biotechnology and Biological Sciences Research Council

AstraZeneca

Publisher

Springer Science and Business Media LLC

Subject

Plant Science

Reference34 articles.

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3. Grey-Wilson C. The genus Dionysia. Alpine Garden Society; 1989

4. Beckett KA, Grey-Wilson C. Alpine Garden Society (Great Britain). Encyclopaedia of alpines: AGS Publications; 1993.

5. Müller H. XCVI.—The occurrence of flavone as the farina of the primula. J Chem Soc Trans. 1915;107:872–8.

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