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Keywords = environmental stress
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Context dependent variation in corticosterone and phenotypic divergence of <em>Rana arvalis</em> populations along an acidification gradient
Mausbach, J., Laurila, A., & Räsänen, K. (2022). Context dependent variation in corticosterone and phenotypic divergence of
Rana arvalis
populations along an acidification gradient.
BMC Ecology and Evolution
,
22
(1), 11 (19 pp.). https://doi.org/10.1186/s12862-022-01967-1
Detailed Record
Published Version
Direct and transgenerational effects of an experimental heatwave on early life stages in a freshwater snail
Leicht, K., & Seppälä, O. (2019). Direct and transgenerational effects of an experimental heatwave on early life stages in a freshwater snail.
Freshwater Biology
,
64
(12), 2131-2140. https://doi.org/10.1111/fwb.13401
Detailed Record
Published Version
Simultaneous exposure to a pulsed and a prolonged anthropogenic stressor can alter consumer multifunctionality
Salo, T., Räsänen, K., Stamm, C., Burdon, F. J., & Seppälä, O. (2018). Simultaneous exposure to a pulsed and a prolonged anthropogenic stressor can alter consumer multifunctionality.
Oikos
,
127
(10), 1437-1448. https://doi.org/10.1111/oik.05310
Detailed Record
Published Version
The effect of genetic diversity on ecosystem functioning in vegetated coastal ecosystems
Salo, T., & Gustafsson, C. (2016). The effect of genetic diversity on ecosystem functioning in vegetated coastal ecosystems.
Ecosystems
,
19
(8), 1429-1444. https://doi.org/10.1007/s10021-016-0014-y
Detailed Record
Published Version
Mechanistic basis of adaptive maternal effects: egg jelly water balance mediates embryonic adaptation to acidity in <em>Rana arvalis</em>
Shu, L., Suter, M. J. F., Laurila, A., & Räsänen, K. (2015). Mechanistic basis of adaptive maternal effects: egg jelly water balance mediates embryonic adaptation to acidity in
Rana arvalis
.
Oecologia
,
179
(3), 617-628. https://doi.org/10.1007/s00442-015-3332-4
Detailed Record
Published Version
Multifarious selection through environmental change: acidity and predator-mediated adaptive divergence in the moor frog (<em>Rana arvalis</em>)
Egea-Serrano, A., Hangartner, S., Laurila, A., & Räsänen, K. (2014). Multifarious selection through environmental change: acidity and predator-mediated adaptive divergence in the moor frog (
Rana arvalis
).
Proceedings of the Royal Society B: Biological Sciences
,
281
(1780), 20133266 (10 pp.). https://doi.org/10.1098/rspb.2013.3266
Detailed Record
Published Version
Adaptive divergence in moor frog (<em>Rana arvalis</em>) populations along an acidification gradient: inferences from <em>Q</em><sub>ST</sub>-<em>F</em><sub>ST</sub> correlations
Hangartner, S., Laurila, A., & Räsänen, K. (2012). Adaptive divergence in moor frog (
Rana arvalis
) populations along an acidification gradient: inferences from
Q
ST
-
F
ST
correlations.
Evolution, International Journal of Organic Evolution
,
66
(3), 867-881. https://doi.org/10.1111/j.1558-5646.2011.01472.x
Detailed Record
Published Version
The quantitative genetic basis of adaptive divergence in the moor frog (<em>Rana arvalis</em>) and its implications for gene flow
Hangartner, S., Laurila, A., & Räsänen, K. (2012). The quantitative genetic basis of adaptive divergence in the moor frog (
Rana arvalis
) and its implications for gene flow.
Journal of Evolutionary Biology
,
25
(8), 1587-1599. https://doi.org/10.1111/j.1420-9101.2012.02546.x
Detailed Record
Published Version
Geographic variation in maternal investment: acidity affects egg size and fecundity in <I>Rana arvalis</I>
Rasanen, K., Söderman, F., Laurila, A., & Merilä, J. (2008). Geographic variation in maternal investment: acidity affects egg size and fecundity in
Rana arvalis
.
Ecology
,
89
(9), 2553-2562. https://doi.org/10.1890/07-0168.1
Detailed Record
Published Version
Transient repression of the synthesis of OmpF and aspartate transcarbamoylase in <I>Escherichia coli</I> K12 as a response to pollutant stress
Faber, F., Egli, T., & Harder, W. (1993). Transient repression of the synthesis of OmpF and aspartate transcarbamoylase in
Escherichia coli
K12 as a response to pollutant stress.
FEMS Microbiology Letters
,
111
(2-3), 189-196. https://doi.org/10.1111/j.1574-6968.1993.tb06384.x
Detailed Record
Published Version