Fredrik Schlyter
Fredrik Schlyter
Swedish University of Agricultural Sciences (SLU), Lund university (Present address: EXTEMIT-K, FFWS
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Olfactory recognition and behavioural avoidance of angiosperm nonhost volatiles by conifer‐inhabiting bark beetles
QH Zhang, F Schlyter
Agricultural and Forest Entomology 6 (1), 1-20, 2004
Intraspecific competition affecting parents and offspring in the bark beetle Ips typographus
O Anderbrant, F Schlyter, G Birgersson
Oikos, 89-98, 1985
Olfactory recognition of host-tree susceptibility by pine shoot beetles
JA Byers, BS Lanne, J Löfqvist, F Schlyter, G Bergström
Naturwissenschaften 72 (6), 324-326, 1985
Quantitative variation of pheromone components in the spruce bark beetleIps typographus from different attack phases
G Birgersson, F Schlyter, J Löfqvist, G Bergström
Journal of Chemical Ecology 10 (7), 1029-1055, 1984
Antennal transcriptome analysis of the chemosensory gene families in the tree killing bark beetles, Ips typographus and Dendroctonus ponderosae (Coleoptera: Curculionidae …
MN Andersson, E Grosse-Wilde, CI Keeling, JM Bengtsson, MMS Yuen, ...
BMC genomics 14 (1), 1-16, 2013
Volatiles from nonhost birch trees inhibit pheromone response in spruce bark beetles
JA Byers, QH Zhang, F Schlyter, G Birgersson
The Science of Nature 85 (11), 557-561, 1998
Non-host volatiles mediate associational resistance to the pine processionary moth
H Jactel, G Birgersson, S Andersson, F Schlyter
Oecologia 166 (3), 703-711, 2011
Green leaf volatiles interrupt pheromone response of spruce bark beetle, Ips typographus
QH Zhang, F Schlyter, P Anderson
Journal of Chemical Ecology 25 (12), 2847-2861, 1999
Forest beetles
F Schlyter, G Birgersson
Pheromones of non-lepidopteran insects associated with agricultural plants …, 1999
Redundancy, synergism, and active inhibitory range of non‐host volatiles in reducing pheromone attraction in European spruce bark beetle Ips typographus
QH Zhang, F Schlyter
Oikos 101 (2), 299-310, 2003
Bark volatiles from nonhost angiosperm trees of spruce bark beetle, Ips typographus (L.)(Coleoptera: Scolytidae): Chemical and electrophysiological analysis
QH Zhang, F Schlyter, G Birgersson
Chemoecology 10 (2), 69-80, 2000
Field response of spruce bark beetle, Ips typographus, to aggregation pheromone candidates
F Schlyter, G Birgersson, JA Byers, J Löfqvist, G Bergström
Journal of chemical ecology 13 (4), 701-716, 1987
Attraction to pheromone sources of different quantity, quality, and spacing: Density-regulation mechanisms in bark beetle Ips typographus
F Schlyter, JA Byers, J Löfqvist
Journal of Chemical Ecology 13 (6), 1503-1523, 1987
Differences in attraction to semiochemicals present in sympatric pine shoot beetles, Tomicus minor and T. piniperda
BS Lanne, F Schlyter, JA Byers, J Löfqvist, A Leufvén, G Bergström, ...
Journal of chemical ecology 13 (5), 1045-1067, 1987
Sampling range, attraction range, and effective attraction radius: Estimates of trap efficiency and communication distance in coleopteran pheromone and host attractant systems 1
F Schlyter
Journal of Applied Entomology 114 (1‐5), 439-454, 1992
Leaf Volatiles from Nonhost Deciduous Trees: Variation by Tree Species, Season and Temperature, and Electrophysiological Activity in Ips typographus
QH Zhang, G Birgersson, J Zhu, C Löfstedt, J Löfqvist, F Schlyter
Journal of Chemical Ecology 25 (8), 1923-1943, 1999
Inducibility of chemical defenses in Norway spruce bark is correlated with unsuccessful mass attacks by the spruce bark beetle
C Schiebe, A Hammerbacher, G Birgersson, J Witzell, PE Brodelius, ...
Oecologia 170 (1), 183-198, 2012
Laboratory Evaluation of Plant-Derived Antifeedants Against the Pine Weevil Hylobius abietis (Coleoptera: Curculionidae)
KD Klepzig, F Schlyter
Journal of Economic Entomology 92 (3), 644-650, 1999
Host‐plant use in the range expansion of the pine processionary moth, Thaumetopoea pityocampa
M Stastny, A Battisti, E PETRUCCO‐TOFFOLO, F Schlyter, S Larsson
Ecological entomology 31 (5), 481-490, 2006
Individual variation in aggregation pheromone content of the bark beetle,Ips typographus
G Birgersson, F Schlyter, G Bergström, J Löfqvist
Journal of Chemical Ecology 14 (9), 1737-1761, 1988
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