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May 14, 2026Plant Cell & Environment2 citations

Petioles Occupy a Partly Distinct Functional Spectrum From Laminae in Broadleaved Woody Plants

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GZGuangkai ZhouCCCarlos P. CarmonaXWXingchang Wang

Key Points

  • The aim is to explore the functional differences between petioles and laminae in broadleaved woody species.
  • Analyzed 7 petiole and 6 lamina traits from 304 species across a 4000-km distance in China.
  • Assessed functional structures and trait space patterns for petioles and laminae.
  • Investigated the influence of temperature on petiole design and efficiency.
  • Petioles defined a unique functional space distinct from laminae, based on structural investment and hydraulic efficiency.
  • Temperature was identified as the primary driver affecting petiole structure and function.
  • Findings challenge existing lamina-centric views of plant functional diversity.

Abstract

The global spectrum of plant form and function has advanced our understanding of ecological strategies, yet the role of petioles has been largely overlooked. Using 7 petiole and 6 lamina traits from 304 broadleaved woody species (2060 individuals) spanning a 4000-km transect in China, we examined the composition of petiole functional structure and its integrated trait space patterns with laminae. Petiole traits define a distinct two-dimensional functional space, structured by orthogonal axes of structural investment and hydraulic efficiency. This space is independent from, and expands beyond, the lamina economics spectrum. Temperature emerges as the dominant driver of petiole structural design and hydraulic efficiency. These findings reveal petiole as a major, independent axis of functional diversity, challenging the lamina-centric paradigm and highlighting its critical role in plant adaptation to environmental heterogeneity.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/6a0567bca550a87e60a1fe96https://doi.org/10.1111/pce.70610
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