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Biodiversity conservation for climate adaptive forest restoration and reforestation In almost all European forests, land use history is deeply embedded with a variety of effects on biodiversity and ecosystem functioning. Forest biodiv…

#EuropeanForests are shaped by #land-use history

From species selection to management styles, choices made may impact #biodiversity and #climate resilience

Understanding these drivers is key to mitigating loss across the continent 🌍

www.sciencedirect.com/science/chap...

#Europe #Trees #Forestry

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Phytophthora ramorum is an invasive generalist plant pathogen introduced to North America and Europe in the
mid-1990s and is now established in forests and the nursery industry. It causes sudden oak death in the western
US and sudden larch death in Western Europe, leading to extensive forest decline and mortality. While well
studied in California and Oregon, no quantitative assessment exists for its potential economic impact on European
forestry. We assessed the potential direct economic impact of P. ramorum on larch and beech in Europe
under a “no-control” scenario. Climatically optimal areas for disease expression were derived using the CLIMEX
niche model with refined parameter values, updated climate data, and P. ramorum occurrence records from
symptomatic forest trees. These areas were overlaid with host distribution data to identify assets at risk. We then
applied a radial range expansion model and a partial budgeting method to quantify annualized average damage
costs. Our results indicate that 10 % of the study area is climatically optimal for disease expression. Within that
area, 4 223 km² of larch and 2 577 km² of beech are at risk. Under worst-case spread and mortality assumptions,
annual direct damage costs could exceed €117 million for larch and €130 million for beech. Countries such as the
UK, Italy, Austria, and Germany face the highest risks, while potential impacts in Southern Europe are negligible.
This study provides an updated risk assessment of the current post-invasion state of P. ramorum in Europe,
facilitating informed decision-making and the development of appropriate management strategies.

Phytophthora ramorum is an invasive generalist plant pathogen introduced to North America and Europe in the mid-1990s and is now established in forests and the nursery industry. It causes sudden oak death in the western US and sudden larch death in Western Europe, leading to extensive forest decline and mortality. While well studied in California and Oregon, no quantitative assessment exists for its potential economic impact on European forestry. We assessed the potential direct economic impact of P. ramorum on larch and beech in Europe under a “no-control” scenario. Climatically optimal areas for disease expression were derived using the CLIMEX niche model with refined parameter values, updated climate data, and P. ramorum occurrence records from symptomatic forest trees. These areas were overlaid with host distribution data to identify assets at risk. We then applied a radial range expansion model and a partial budgeting method to quantify annualized average damage costs. Our results indicate that 10 % of the study area is climatically optimal for disease expression. Within that area, 4 223 km² of larch and 2 577 km² of beech are at risk. Under worst-case spread and mortality assumptions, annual direct damage costs could exceed €117 million for larch and €130 million for beech. Countries such as the UK, Italy, Austria, and Germany face the highest risks, while potential impacts in Southern Europe are negligible. This study provides an updated risk assessment of the current post-invasion state of P. ramorum in Europe, facilitating informed decision-making and the development of appropriate management strategies.

Work of Stelios Kartakis on the framework of @purpest-eu.bsky.social project:

"Modeling disease expression of #Phytophthora ramorum to estimate potential #EconomicImpacts in #EuropeanForests"

doi.org/10.1016/j.fo...

#ForestPathogen
#PlantBiosecurity
#InvasivePlantPathogen
#Oomycete

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EU climate goals at risk as ailing forests absorb less CO2, scientists say - Sight Magazine Damage to European forests from logging, wildfires, drought and pests is reducing their ability to absorb carbon dioxide, scientists warned.

EU climate goals at risk as ailing forests absorb less CO2, scientists say @sightmagazine.bsky.social #EU #Europeanforests #CO2absorption #logging #wildfires #netzero

sightmagazine.com.au/news/eu-clim...

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Forests, forestry and logging description

For more interesting statistics on forests, forestry and logging visit Eurostat : ec.europa.eu/eurostat/sta...

#forests #forestry #logging #EuropeanForests #timber #forestManagement #OptiForValue

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