Search bioRxiv⌕ Search

bioRxiv · 10.1101/2025.09.25.677476

Morphological and heat-tolerance traits are associated with progression and impact of, but not vulnerability to, tree decline

Abstract

Warming and drying climate trends are driving tree dieback worldwide with broad-reaching impacts on ecosystem services. Studying decline is unavoidably a retrospective exercise in which researchers are challenged to determine whether trait values that are associated with dieback are drivers versus consquences of decline. In this study, we use the subalpine snow gum (Eucalyptus pauciflora, ssp niphophila) as a case study to illustrate how to identify whether plant traits may explain vulnerability of individual trees, assess how progression of dieback symptoms affect traits and physiological tolerance, and ask whether those changes could exacerbate decline. While the impact of drought on tree mortality has been well documented, we consider the potential role of heat which has received considerably less attention. We assessed changes in leaf and stem morphology, and stomatal anatomy across a dieback severity and an abiotic elevation gradient. We also assessed the relationship between these traits, photosystem heat tolerance and dieback progression, using results to model leaf viability under current and future climate scenarios. While severely symptomatic trees exibited trait values indicating water stress, trees with low or moderate dieback were not different from unaffected ones. Thus the differences in severely affected trees are likely responses to water stress caused by woodborer girdling and provide no evidence of underlying trait difference driving vulnerability. Severely symptomatic trees, however, had lower photosystem heat tolerance and models indicated leaves were likely to accumulate lethal damage to photosystems within a growing season, thus contributing to a feedback cycle of decline even under current thermal regimes. HighlightsO_LIAccounting for abiotic, spatial variation explains complex relationships in dieback research C_LIO_LIInsect mediated dieback induces trait variation consistent with water limitation C_LIO_LINo evidence of variation in vulnerability to dieback among snow gum individuals C_LIO_LIDieback-induced reduction in heat tolerance compounds heat load effects C_LIO_LIWarming induced heat loading will compromise carbon gain and exacerbate decline C_LI

Source connections

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Aitken, S. M., Arnold, P. A., Broohouse, M. T., Cook, A. M., Danzey, L. M., Harris, R. J., Leigh, A., Nicotra, A. B.. 2025-09-25. Morphological and heat-tolerance traits are associated with progression and impact of, but not vulnerability to, tree decline. https://doi.org/10.1101/2025.09.25.677476

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Species-composition distributions under competition, ecological drift and immigration

Understanding how species interactions, ecological drift, and immigration jointly shape community composition is a central goal of community ecology. These processes determine not only average community composition, but also how often different community states occur. Here, we ask how competition reshapes the neutral distribution of community composition generated by drift and immigration. We analyze a stochastic two-species competition model with immigration and derive the stationary distribution of relative species composition near neutrality. The stationary distribution shows when communities are usually balanced and when they are instead dominated by one species. Species dominance can become common even when the corresponding deterministic model predicts stable coexistence, particularly in smaller communities. Balanced and dominance states can also occur together, producing a trimodal distribution. Competitive asymmetry further biases the distribution toward the competitively favored species. Thus, the interplay between competition, ecological drift, and immigration determines not only how much community composition varies, but also which community states are most likely to be observed. Our results provide an analytical bridge between neutral and competition theory and a framework for interpreting variation in community composition.

ecology↗

Floristic composition, phenology, and conservation value of four peat bogs in Bucovina, with the presence of Betula nana

This paper presents a comparative analysis of the floristic composition and site characteristics of four peat bogs in Bucovina, Romania: Poiana Stampei, Romanesti, Saru Dornei, and Gaina-Lucina. The research was based on phytosociological releves on 25 msq plots and direct field phenological observations, on six field visits from May to August 2026. Vegetation was characterised using the Braun Blanquet method, and floristic similarity between sites was assessed with the Sorensen and Bray Curtis indices. All four plots shared a common core of taxa characteristic of peatland vegetation: Sphagnum spp., Carex rostrata, Drosera rotundifolia, Eriophorum vaginatum, and Vaccinium species. Species richness was 13 taxa at Poiana Stampei, Romanesti, and Saru Dornei, and 12 at Gaina-Lucina. Romanesti and Saru Dornei showed the highest floristic similarity (descriptive values, not statistically tested, given a single releve per site), while Gaina-Lucina differed most markedly, not through species richness, which was similar across sites, but through species identity and through the presence of Betula nana, a glacial relict absent from the other sites. The results provide a descriptive basis for future research on the floristic composition and conservation of these habitats.

ecology↗

Long-Term Surveillance Reveals Establishment of Aedes albopictus in Eastern Nebraska, USA

Aedes albopictus (Skuse), the Asian tiger mosquito, is a highly competent arboviral vector whose range has expanded substantially across the United States over the past four decades. Despite predictive models placing Nebraska within the species' climatically suitable range, its establishment status in the state has remained poorly characterized. Here, we report results from a nine-year mosquito surveillance program (2017-2025) conducted across 44 Nebraska counties in collaboration with the Nebraska Department of Health and Human Services. Ae. albopictus was detected in five counties, with sustained, annually increasing populations documented in Richardson, Douglas, and Lancaster counties. Richardson County recorded continuous detections during 2017-2025, with proportional representation rising to 60.50% of collected mosquitoes by 2025. In Douglas and Lancaster counties, temporal advancement of first seasonal detection in 2024 and 2025 provide evidence consistent with successful overwintering rather than annual reintroduction. A cumulative degree-day model predicted adult emergence in mid-May across all county-year combinations, consistently preceding trap deployment by two to seven weeks and revealing a systematic early-season surveillance gap. Generalized linear mixed-effects models indicated that trap-level detection persistence, rather than urban location, was the primary predictor of yearly Ae. albopictus positivity, suggesting that current invasion dynamics are driven by focal source populations. These findings provide strong evidence for the establishment of Ae. albopictus in eastern Nebraska and highlight the need for earlier seasonal surveillance and standardized criteria to define establishment in northward-expanding vector populations.

ecology↗