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  3. CESA7 and microtubules pattern complex secondary cell walls in explosive fruit of Cardamine hirsuta
 

CESA7 and microtubules pattern complex secondary cell walls in explosive fruit of Cardamine hirsuta

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BORIS DOI
10.48620/96854
Publisher DOI
10.1093/plcell/koag062
Description
Secondary cell walls (SCW) constitute the most abundant form of renewable plant biomass and are major sinks for atmospheric carbon. Their highly ordered patterns underpin specialized cell functions. In Cardamine hirsuta, the geometry of a polarly localized SCW in fruit endocarp b (endb) cells determines the mechanics of explosive seed dispersal. Yet, the genetic control of SCW synthesis and patterning in these specialized cells remains poorly understood. Here we show that CELLULOSE SYNTHASE 7 (CESA7) is required to synthesize SCW cellulose in endb cells. While lignin and xylan deposition occurs independently of cellulose patterning in cesa7 endb SCWs, the final geometry and layered organization of wild-type endb SCWs depend on CESA7. Cellulose serves as a scaffold for the organized assembly of SCW polymers, thereby maintaining the precise SCW patterns observed in endb cells of fruits and metaxylem cells in roots. Cortical microtubules guide the patterned deposition of cellulose, lignin and xylan in endb cells, creating SCW-depleted domains along cell edges that produce the specific hinged SCW geometry. Disrupting microtubules abolished this pattern and prevented explosive coiling of the fruit valves. Our findings show that microtubules and CESA7 shape the form and function of endb SCWs in exploding seed pods.
Date of Publication
2026-03
Publication Type
Article
Language(s)
en
Contributor(s)
Eng, Ryan C
Emonet, Aurélia
Institute of Plant Sciences (IPS)
Neumann, Ulla
Pauly, Markus
Hay, Angela
Additional Credits
Institute of Plant Sciences (IPS)
Series
The Plant Cell
Publisher
Oxford University Press
ISSN
1040-4651
1532-298X
Access(Rights)
open.access
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