Results 81 to 90 of about 3,821 (183)
Climate change has rapidly expanded and shifted suitable climate conditions for eight major forest pests across North America, especially toward northern and higher elevation areas. Host exposure and overlap among pests are increasing, raising ecological and economic risks, and signaling accelerating future impacts under continued warming.
Yan Boulanger +5 more
wiley +1 more source
A pie chart showing species distribution of the top BLAST hits of Agrilus planipennis antennal transcripts.
Saranga Wijeratne (152917) +8 more
core +1 more source
Tree‐health policies must balance identifying likely entry points and deployment of traps, targeted information campaigns and surveillance subsidies for land managers. Our unique, cross‐disciplinary approach can be applied to other pest/pathogen systems to inform tree‐health plans and how to balance resources.
Vasthi Alonso Chávez +11 more
wiley +1 more source
Our goal is to analyze the known geographical ranges and diagnostic features of two potentially invasive Asian buprestid species: the quarantine apple tree pest, Agrilus mali Matsumura, and the poplar pest A. fleischeri Obenberger.
Mark G. Volkovitsh +2 more
doaj +1 more source
Modeling stratified dispersal in forest pests: A case study of the mountain pine beetle in Alberta
Abstract Forest pests pose critical threats to forest ecosystems worldwide, yet accurately predicting their spatial spread remains challenging due to complex dispersal behaviors, weather effects, and the inherent difficulty of tracking small organisms across large landscapes.
Evan C. Johnson +2 more
wiley +1 more source
Optimal strategies for utilizing host plant distributions to slow the spread of plant pests
Containment of invasive species can be made markedly more cost‐effective by prioritizing landscape features that naturally impede spread. Targeting treatments around host‐plant gaps supports a clear operational rule: use mating disruption where densities are low to prevent establishment and concentrate pesticides where densities are high to suppress ...
Adam Lampert, Andrew M. Liebhold
wiley +1 more source
Pest survey card on Agrilus planipennis [PDF]
Jan Schans +4 more
openaire +1 more source
Agrilus larvae labrum and mandibles.
A, Agrilus planipennis, labrum; B, Agrilus anxius, labrum; C, Agrilus politus, labrum; D, Agrilus guerini, labrum; E, Agrilus ater, labrum; F, Agrilus biguttatus, labrum; G, Agrilus australasiae, labrum; I, Agrilus anxius, mandible; I, Agrilus guerini ...
Robert A. Haack (206483) +4 more
core +1 more source
Group 5 Wood‐boring beetles: Agrilus planipennis Webinar 11
This report details the main results of the Webinar prepared and held on Group 5: Wood‐boring beetles: Agrilus planipennis. This is the eighth webinar of a round of 20 on EU priority pests, promoted by EFSA in collaboration with academic experts under ...
AENOR Conocimiento SLU +1 more
core +1 more source
Invasive Populations of the Emerald Ash Borer Agrilus planipennis Fairmaire, 1888 (Coleoptera: Buprestidae) in Saint Petersburg, Russia: A Hitchhiker? [PDF]
Selikhovkin AV +5 more
europepmc +1 more source

