Stem Surface Microstructure and Plant–Insect Interactions: A Perspective

Plant surfaces form a critical biomechanical and ecological interface between plants and insects. Beyond chemical cues and rewards, the physical micro- and nanostructure of stems can decisively shape insect attachment, locomotion, and visitation patterns. This perspective paper synthesizes a body of work centered on studies by Gorb, Gorb, and collaborators (2017–2024), together with the broader literature cited therein, to develop a framework for understanding stem surface-mediated plant–insect interactions. We integrate comparative, experimental, and biomechanical evidence demonstrating that epicuticular waxes, pubescence, epidermal cell geometry, and surface roughness act each and in combination as a mechanical filter for crawling insects, particularly ants. We propose a unifying conceptual model, in which plant stem surfaces function as scale-dependent mechanical barriers that modulate insect access, balancing ecological trade-offs between attraction and exclusion. The paper further highlights ecological and evolutionary implications as well as methodological advances and discusses opportunities for bioinspired applications.

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Publication Details

Journal
Plants
Published
2026-09-09
DOI
https://doi.org/10.3390/plants15182751
Primary Topic
Adhesion, Friction, and Surface Interactions
Type
article
Field-Weighted Citation Impact
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article

Stem Surface Microstructure and Plant–Insect Interactions: A Perspective

Stanislav N. Gorb, Elena Gorb
Plants
Adhesion, Friction, and Surface Interactions
article

Stem Surface Microstructure and Plant–Insect Interactions: A Perspective

Stanislav N. Gorb, Elena Gorb
article en

Abstract

Plant surfaces form a critical biomechanical and ecological interface between plants and insects. Beyond chemical cues and rewards, the physical micro- and nanostructure of stems can decisively shape insect attachment, locomotion, and visitation patterns. This perspective paper synthesizes a body of work centered on studies by Gorb, Gorb, and collaborators (2017–2024), together with the broader literature cited therein, to develop a framework for understanding stem surface-mediated plant–insect interactions. We integrate comparative, experimental, and biomechanical evidence demonstrating that epicuticular waxes, pubescence, epidermal cell geometry, and surface roughness act each and in combination as a mechanical filter for crawling insects, particularly ants. We propose a unifying conceptual model, in which plant stem surfaces function as scale-dependent mechanical barriers that modulate insect access, balancing ecological trade-offs between attraction and exclusion. The paper further highlights ecological and evolutionary implications as well as methodological advances and discusses opportunities for bioinspired applications.

PlantsVol. 15(18)
Christian-Albrechts-Universität zu Kiel (DE)
Reduced inequalities
Openalex Percentile: Top 18%
Adhesion, Friction, and Surface Interactions
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Stem Surface Microstructure and Plant–Insect Interactions: A Perspective — Stanislav N. Gorb, Elena Gorb · Plants (2026) | TGRS Research Map | TGRS