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February 2, 2026Plants1 citationsOpen Access

Somatic Embryogenesis of Selected Pinus Species: Developmental Stages of Pinus peuce and Pinus heldreichii

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DSDragana StojičićVČVlado ČokešaMMMarija Marković

Key Points

  • The aim is to review the factors influencing somatic embryogenesis in selected Pinus species.
  • Synthesis of existing knowledge on somatic embryogenesis in Pinus.
  • Focus on Pinus peuce and Pinus heldreichii.
  • Evaluation of explant types and developmental stages for embryogenic tissue formation.
  • Assessment of medium composition effects on somatic embryogenesis.
  • Successful embryogenic tissue was formed from whole megagametophytes with immature zygotic embryos.
  • Embryo development occurred within a narrow window of 4–10 weeks post-fertilization.
  • Reduced ammonium concentration in the medium was critical for success in P. heldreichii.
  • Identified limitations include low initiation frequencies and genotype dependence.

Abstract

Somatic embryogenesis (SE) represents the most efficient and scalable technology for the mass clonal propagation and genetic improvement of superior conifer genotypes, which is crucial for meeting global wood demand and supporting forest adaptation to climate change. Despite its immense potential, SE in the genus Pinus still faces major limitations, including low initiation frequencies, restricted explant availability, and pronounced genotype dependence. This review synthesizes current knowledge on the factors influencing SE in Pinus species, with a specific focus on two ecologically vital Tertiary relicts endemic to the Balkan Peninsula: Pinus peuce (Macedonian pine) and Pinus heldreichii (Bosnian pine). For these species, traditional vegetative propagation methods are difficult or ineffective, making SE the priority approach for clonal propagation. Detailed studies on these species revealed that SE induction is highly dependent on the explant type and developmental stage. Successful embryogenic tissue formation was achieved only from whole megagametophytes containing immature zygotic embryos, within a narrow developmental window spanning 4–10 weeks post-fertilization. Furthermore, medium composition, particularly reduced ammonium concentration, proved critical for P. heldreichii success. These findings underscore the need for continued, species-specific optimization to overcome current bottlenecks and realize the full potential of SE for the conservation and sustainable clonal forestry of these high-value pines.

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Cite This Study

Stojičić et al. (2026) studied this question.

synapsesocial.com/papers/6980fc91c1c9540dea80e6dfhttps://doi.org/10.3390/plants15030411
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