Comparative Analyses of the Self-Sealing Mechanisms in Leaves of Delosperma cooperi and Delosperma ecklonis (Aizoaceae)

Int J Mol Sci. 2020 Aug 11;21(16):5768. doi: 10.3390/ijms21165768.

Abstract

Within the Aizoaceae, the genus Delosperma exhibits a vast diversification colonizing various ecological niches in South-Africa and showing evolutionary adaptations to dry habitats that might include rapid self-sealing. Leaves of Delosperma react to external damage by the bending or contraction of the entire leaf until wound edges are brought into contact. A study of leaf morphology and anatomy, biomechanics of entire leaves and individual tissues and self-sealing kinematics after a ring incision under low and high relative humidity (RH) was carried out comparing the closely related species Delosperma cooperi and Delosperma ecklonis, which are indigenous to semi-arid highlands and regions with an oceanic climate, respectively. For both species, the absolute contractions of the examined leaf segments ("apex", "incision", "base") were more pronounced at low RH levels. Independent of the given RH level, the absolute contractions within the incision region of D. cooperi were significantly higher than in all other segments of this species and of D. ecklonis. The more pronounced contraction of D. cooperi leaves was linked mainly to the elastic properties of the central vascular strand, which is approximately twice as flexible as that of D. ecklonis leaves.

Keywords: biomechanics; damage management; ecological niche; leaf kinematics; morphology; self-repair; succulence; trichomes.

Publication types

  • Comparative Study

MeSH terms

  • Aizoaceae / anatomy & histology
  • Aizoaceae / physiology*
  • Aizoaceae / ultrastructure
  • Biomechanical Phenomena
  • Elastic Modulus
  • Magnetic Resonance Imaging
  • Plant Epidermis / anatomy & histology
  • Plant Epidermis / ultrastructure
  • Plant Leaves / anatomy & histology
  • Plant Leaves / physiology*
  • Plant Leaves / ultrastructure
  • Species Specificity
  • Tensile Strength