Authors
M M Sanches, C P Mouzella, A M S da Cruz, M R Pace, I R Guesdon, R M S A Meira
Published in
Annals of botany. Aug 26, 2026. Epub Aug 26, 2026.
Abstract
Laticifers represent one of the most functionally striking secretory systems in angiosperms, characterizing entire families and being the latex considered a key element in defense against herbivores in plants. However, they are still understudied, especially in clades where the secretions are not so copious, which is the case of the Malpighiaceae. Here, we undertake a study combining anatomy, phylogeny, ancestral state reconstruction to unravel the structure, distribution, and evolution of laticifers and other leaf anatomical traits in Galphimioid clade (Malpighiaceae), sampling approximately 90% of the clade.
Laticifers and other leaf anatomical traits were surveyed comparatively across all genera of the Galphimioid clade using detailed anatomical and histochemical techniques. Leaf characters were mapped onto the most recent phylogenetic framework for Malpighiaceae to reconstruct ancestral states and identify possible synapomorphies to less inclusive clades within the Galphimioid. Structural and developmental aspects of laticifers, and chemical composition of latex were characterized.
Non-anastomosing, articulated laticifers were found in all analyzed species, originated from both ground meristem and procambium, representing most remarkable putative anatomical synapomorphy of the clade. Twelve additional synapomorphies were inferred, including absence of trichomes on mature leaves and revolute leaf margins. Ancestral reconstructions indicate that the Galphimioid clade is also characterized by dorsiventral, hypostomatic leaves with concave-convex petioles and flat-convex midribs bearing an open vascular arc. Leaf margin conformation, leaf gland distribution, epidermal features, and latex chemistry were informative for distinguishing genera within the clade.
The presence of laticifers represents main putative synapomorphy of the Galphimioid clade within Malpighiaceae. However, other key anatomical features support the delimitation of less inclusive clades and genera, strengthening the systematics of Malpighiaceae. The study advances our understanding of the evolution of leaf traits and secretory structures, opening new avenues for studies on defense evolution, plant-animal interactions, and latex diversification.
PMID:
42647744
Bibliographic data and abstract were imported from PubMed on 27 Aug 2026.
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