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Stuck in a bauplan: architectural uniformity underlies growth form diversity in the tropical forest understorey plant genus Thottea
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Stuck in a bauplan: architectural uniformity underlies growth form diversity in the tropical forest understorey plant genus Thottea

Sandrine Isnard, Juliana Prosperi, Patrick Blanc, Birgit Oelschlägel, Santiago Trueba, Stefan Wanke, B. R. Ramesh, Mathew Dan, Christoph Neinhuis et Nick P Rowe
Plant ecology & diversity
2026

Résumé

Woodiness Understorey Thottea Reiteration Phylogeny Growth form Architecture Anatomy
Plant growth form diversity stems from a wide range of life history traits, yet vegetative architecture remains relatively understudied. This study investigated the genus Thottea, a small group of understorey plants in tropical forests, to examine how shifts in growth form relate to variations in plant architecture, woodiness and stem biomechanics. We analysed plant architecture, stem biomechanics, and anatomical features for nine Thottea species from lowland tropical forests in Peninsular India. A molecular phylogenetic framework was used to assess shifts in growth form and related traits. All Thottea species displayed a uniform architecture defined by (a) mixed axes (i.e. a single meristem determine both trunk and branch), (b) basal reiteration and (c) repetition of elementary modules. Growth form variations arose from distinct combinations of woodiness, below-ground structures and reiteration processes. Key traits such as adaptive reiteration and basal reiteration, above-ground woodiness, mechanical reinforcement and plagiotropy are pivotal to the adaptation of species of Thottea to disturbed and shaded understorey habitats. These trait syndromes represent important life history strategies linked to the challenges of understorey life and have evolutionary implications across the genus.

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