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Home Science News Climate

Tree Rings Reveal Hidden Youth of Greece’s Relict Macedonian Pine Forests

September 12, 2026
in Climate
Sloane Callahan
By Sloane Callahan Scienmag Editorial Profile - Climate Mitigation
Reading Time: 5 mins read
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Tree Rings Reveal Hidden Youth of Greece’s Relict Macedonian Pine Forests

Tree Rings Reveal Hidden Youth of Greece's Relict Macedonian Pine Forests

Tree Rings Reveal Hidden Youth of Greece's Relict Macedonian Pine Forests

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High in the border mountains of northern Greece, where steep ravines and brown bear territory deter even the most determined researchers, stands one of Europe’s most enigmatic forests. Macedonian pine, Pinus peuce, is a living relic of the Tertiary period, a Balkan endemic that once ranged far more widely before Pleistocene glaciations squeezed it into the highest refuges of the peninsula. Now, for the first time, scientists have pierced the mystery surrounding the Greek populations of this remarkable tree, extracting cores from its trunks and reading the annual rings like pages of an ecological diary. The results, published in Discover Conservation, reveal forests that are startlingly young, surprisingly synchronized in their response to climate extremes, and more vulnerable than their remoteness might suggest.

The research team, led by Anastasia Christopoulou of the University of the Aegean together with colleagues from the National and Kapodistrian University of Athens, Aristotle University of Thessaloniki, and the Academy of Athens, focused on the two most significant Macedonian pine areas in Greece: Mount Voras on the border with North Macedonia and the Chaidou forest in the Rhodope mountains near the Bulgarian frontier. Both sites lie within the Natura 2000 network of protected areas, yet while Mount Voras hosts a formally mapped 76 hectares of the protected habitat type 95A0, the High oro-Mediterranean pine forests, the presence of Macedonian pine in Chaidou had never even been mapped in the site’s official documentation. Reaching these stands required permits from the Ministry of Environment and Energy and close coordination with local forest services, whose staff guided researchers through terrain where brown bears are common and previously unmapped pine groves hide among the ridges.

The methodological approach combined classical dendrochronology with modern forest inventory and vegetation science. The team established five sampling plots of 0.1 hectares each, measuring the diameter at breast height of every tree exceeding 8 centimeters, and using laser hypsometry to capture tree heights. From 29 individual Macedonian pines, they extracted 34 increment cores, preparing each sample in the laboratory and measuring ring widths to the hundredth of a millimeter using a LINTAB measuring table and TSAP-Win software. Cross-dating relied on both visual comparison and statistical indices, including the Gleichläufigkeit coefficient and the Baillie-Pilcher and Hollstein t-values, ensuring that each ring could be assigned to its exact calendar year. Where cores missed the pith, the researchers applied standard growth-rate curves to estimate the missing rings to the tree’s center.

The headline finding is one of youth. The oldest tree sampled on Mount Voras reached just 104 years, with an estimated maximum of 112 years once missing rings were accounted for. At Chaidou, the maximum estimated age was a mere 72 years. This stands in stark contrast to Macedonian pine populations elsewhere in the Balkans, particularly in Bulgaria’s Pirin Mountains, where the species can live up to 600 years, and to its compatriot the Bosnian pine, Pinus heldreichii, which has produced multi-century and even millennia-old trees in the Greek Pindos range. The Greek Macedonian pine forests, it turns out, are essentially new arrivals on the landscape, dominated by trees established within living memory.

What caused this demographic reset remains an open question. The authors consider several plausible explanations, including past exploitation for timber, fires set by shepherds to improve grazing land, and broader land-use change. Historical records do not specifically document heavy use of Macedonian pine in the study area, although the species has been valued for carpentry and furniture elsewhere. Intriguingly, the young and expanding stands observed on Mount Voras, where saplings are colonizing former grasslands, point to land abandonment and the reduction of livestock grazing in recent decades as drivers of natural afforestation. Warming winter temperatures may further favor the species’ expansion toward the treeline, a pattern already documented in Bulgaria. Whatever the precise cause, the absence of very old individuals suggests these forests are recovering cohorts rather than ancient survivors, though the researchers caution that old trees could still persist in inaccessible ravines and cliffs beyond the reach of systematic survey.

Despite their youth, the trees are recording climate history with remarkable fidelity. The two independent chronologies, one from each mountain, correlated strongly with each other despite their limited overlap, and marker year analysis identified 36 years of exceptionally high or low growth. Four marker years were common to both sites, and each corresponds to documented climatic extremes in Greece. The year 1970, the sole shared positive marker year, aligns with the cooling trend that gripped Greece from the early 1960s to the mid-1970s. The negative marker years tell a darker story: 1987 marks the historic heatwave when July temperatures exceeded 40 degrees Celsius for nine consecutive days and reached 44 degrees in some regions; 2000 brought a parched August and sustained summer heat; and 2020 delivered another early-summer heatwave. Density fluctuations detected in the Chaidou samples, present in more than 60 percent of cores and consistently dated to 2006 and 2007, correspond to two years of extreme temperatures and unusually mild winters in Greece.

The anatomical analysis yielded an unexpected bonus. Four trees from Chaidou displayed indented growth rings, known as hazelwood, a feature caused when external injuries to the cambium, whether from fire, rockfall, herbivores, or human activity, deform the wood structure. While experts have anecdotally noted hazelwood in Macedonian pine, formal documentation in the scientific literature has been sparse. Its prevalence in the younger portions of trees aged 59 to 63 years suggests that even recently established forests are sensitive to episodic stressors capable of leaving permanent anatomical imprints, underscoring the value of dendrochronology for reconstructing disturbance histories that leave no other trace.

Structurally, the two forests could hardly be more different. Mount Voras supports a heterogeneous, uneven-aged stand shaped by prolonged regeneration and episodic disturbance, with lower densities and smaller trees. Chaidou, by contrast, shows a uniform age structure indicative of synchronous establishment, combined with higher stand density and intense competition. These differences produced a striking divergence in the relationship between size and age: on Mount Voras, diameter and height correlated moderately with tree age, but at Chaidou the relationships were weak and non-significant, with diameter and height even trending in opposite directions. The practical lesson is that the largest trees are not necessarily the oldest, a rule the data confirm emphatically. Fitted diameter distributions reinforced the contrast, with a lognormal distribution best describing Mount Voras and a gamma distribution fitting Chaidou, both revealing positively skewed structures dominated by small and intermediate trees.

The floristic survey recorded 55 plant taxa across the two sites, with 42 on Mount Voras and 22 at Chaidou, including understory species such as Juniperus communis, Vaccinium myrtillus, and Fragaria vesca. Only Pinus peuce and Calamagrostis arundinacea were typical species of the habitat type found at both sites. Worryingly, despite minimal human pressure and evidence of active expansion, both forests were assessed as having an Unfavourable-Inadequate conservation status, mirroring the national assessment for habitat type 95A0. The culprit is inadequate regeneration of the dominant pine at certain sites, compounded by the species’ limited and fragmented distribution in Greece. Remoteness, the authors warn, is a double-edged sword: it shields the forests from everyday human pressures but hampers active protection against large-scale disturbances, particularly wildfires, which are increasingly affecting high-altitude conifer forests in Greece and are expected to intensify under climate change.

For a species classified as Near Threatened on the IUCN Red List, and for a habitat type whose Greek conservation status is formally assessed as Inadequate-Bad, these findings carry real weight. The young Macedonian pine forests of Greece may lack the romantic gravitas of millennia-old Bosnian pines, but they represent unique ecosystems at the southernmost edge of the species’ range, with demonstrated sensitivity to regional climate variability and clear signs of dynamic expansion. The researchers argue that long-term monitoring of stand dynamics, regeneration, and disturbance responses is essential for adaptive management within the Natura 2000 sites that host them. As climate and land use continue to reshape mountain landscapes across the Balkans, these slender, half-century-old pines may prove to be not remnants of a lost past but pioneers of an uncertain future, their rings faithfully inscribing whatever comes next.

Subject of Research: Ecology, age structure, and conservation of Pinus peuce forests in Greece assessed through tree-ring analysis and plant diversity surveys

Article Title: Revealing the ecology of Pinus peuce forests in Greece through tree rings forest dynamics and plant diversity

Article References: Christopoulou, A., Lasut-Zmudzka, D., Zikos, A., Chrysafis, I., Kapsomenakis, I., Paidi, C., Ntagkounakis, G., Zevgolis, Y. G., Zerefos, C., & Arianoutsou, M. (2026). Revealing the ecology of Pinus peuce forests in Greece through tree rings forest dynamics and plant diversity. Discover Conservation, 3(1), Article 31. https://doi.org/10.1007/s44353-026-00095-x

Image Credits: AI Generated

DOI: 10.1007/s44353-026-00095-x

Keywords: Macedonian pine, Pinus peuce, dendrochronology, tree rings, forest ecology, Natura 2000, habitat 95A0, Balkan endemic species, climate change, forest conservation, plant diversity, Greece

Cite Scienmag News

Sloane Callahan. (September 12, 2026). Tree Rings Reveal Hidden Youth of Greece’s Relict Macedonian Pine Forests. Scienmag. https://scienmag.com/tree-rings-reveal-hidden-youth-of-greeces-relict-macedonian-pine-forests/

Sloane Callahan. "Tree Rings Reveal Hidden Youth of Greece’s Relict Macedonian Pine Forests." Scienmag, 12 September 2026, https://scienmag.com/tree-rings-reveal-hidden-youth-of-greeces-relict-macedonian-pine-forests/. Accessed 12 September 2026.

Sloane Callahan. "Tree Rings Reveal Hidden Youth of Greece’s Relict Macedonian Pine Forests." Scienmag. September 12, 2026. https://scienmag.com/tree-rings-reveal-hidden-youth-of-greeces-relict-macedonian-pine-forests/

Tags: Balkan endemic conifersBalkan endemic speciesclimate changeclimate response of ancient forestsconservation of relict forests in Greecedendrochronologydendrochronology in European ecosystemsecological history of Pinus peuceforest conservationforest ecologyGreecehabitat 95A0high-altitude forest biodiversityMacedonian pineMacedonian pine forest ecologyNatura 2000Pinus peuceplant diversityPleistocene glaciation impact on Balkan floraprotected areas within Natura 2000 networkTertiary relic tree speciestree ring analysis in Greecetree ringsvulnerability of remote mountain forests
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