0000000000767582

AUTHOR

Katja Leicht

showing 7 related works from this author

Direct and transgenerational effects of an experimental heat wave on early life stages in a freshwater snail

2018

AbstractGlobal climate change imposes a serious threat to natural populations of many species. Estimates of the effects of climate change-mediated environmental stresses are, however, often based only on their direct effects on organisms, and neglect the potential transgenerational effects. We investigated whether high temperature (i.e. an experimental heat wave) that is known to reduce performance of adultLymnaea stagnalissnails affects their offspring through maternal effects. Specifically, we tested whether eggs and hatched juveniles are affected by maternal thermal environment, and how strong these effects are compared with direct effects of temperature on offspring. We examined the eff…

0106 biological sciences0303 health sciencesbiologyHatchingOffspringGlobal warmingMaternal effectZoologyLymnaea stagnalisHeat wavebiology.organism_classification010603 evolutionary biology01 natural sciences6. Clean waterFreshwater snail03 medical and health sciences13. Climate actionEffects of global warmingembryonic structures030304 developmental biology
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Direct and transgenerational effects of an experimental heatwave on early life stages in a freshwater snail

2019

1. Global climate change imposes a serious threat to natural populations of many species. Estimates of the effects of climate change‐mediated environmental stresses are, however, often based only on their direct effects on organisms, and neglect the potential transgenerational (e.g. maternal) effects. 2. We tested whether high temperature (i.e. an experimental heatwave), which is known to reduce the performance of adult Lymnaea stagnalis snails, affects the produced offspring (eggs and hatchlings) through maternal effects, and how strong these effects are compared with the effects of direct exposure of offspring to high temperature. We examined the effect of maternal thermal environment (15…

0106 biological sciencesympäristöOffspringMaternal effectsZoologyLymnaea stagnalisEnvironmental stressAquatic Scienceglobal warming010603 evolutionary biology01 natural sciencesFreshwater snailTransgenerational epigeneticsClimate changeLymnaea stagnalisHatchlingClimate change; Environmental stress; Global warming; Lymnaea stagnalis; Maternal effectsbiologyHatching010604 marine biology & hydrobiologyGlobal warmingMaternal effectstressiilmastonmuutoksetbiology.organism_classificationlisääntyminenEarly lifeenvironmental stresspiippolimakotiloclimate changeembryonic structuresmaternal effects
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Quality attracts parasites: host condition‐dependent chemo‐orientation of trematode larvae

2015

Summary Environmental factors impairing physiological condition of organisms are assumed to predispose them to parasite infections. This is because host immune function is typically condition-dependent. However, poor physiological condition has been reported to reduce host susceptibility to parasites in various systems. We examined whether such an effect can be due to altered exposure of hosts to active parasite transmission stages by investigating chemo-orientation of free-swimming cercariae larvae of a parasite Echinoparyphium aconiatum towards its snail host Lymnaea stagnalis. We used both long-term and short-term feeding treatments to manipulate the body condition and physiological trai…

LarvaHost (biology)EcologyTransmission (medicine)Physiological conditionfungiZoologyLymnaea stagnalisSnailBiologybiology.organism_classificationImmune systembiology.animalparasitic diseasesParasite hostingEcology Evolution Behavior and SystematicsFunctional Ecology
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Potential for adaptation to climate change: family-level variation in fitness-related traits and their responses to heat waves in a snail population.

2017

Background On-going global climate change poses a serious threat for natural populations unless they are able to evolutionarily adapt to changing environmental conditions (e.g. increasing average temperatures, occurrence of extreme weather events). A prerequisite for evolutionary change is within-population heritable genetic variation in traits subject to selection. In relation to climate change, mainly phenological traits as well as heat and desiccation resistance have been examined for such variation. Therefore, it is important to investigate adaptive potential under climate change conditions across a broader range of traits. This is especially true for life-history traits and defences ag…

sopeutuminenEvolutionG × E interaction; Global warming; Great pond snail; Immunocompetence; Life history trait; MolluscAcclimatizationClimate ChangeReproductionGlobal warmingSnailsGreat pond snailnilviäisetG × E interactionGenetic VariationFresh WateradaptationilmastonmuutoksetEnvironmentBiological EvolutionpiippolimakotiloimmuunijärjestelmäQH359-425Life history traitAnimalsMolluscImmunocompetenceResearch ArticleBMC evolutionary biology
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An experimental heat wave changes immune defense and life history traits in a freshwater snail

2013

The predicted increase in frequency and severity of heat waves due to climate change is expected to alter disease dynamics by reducing hosts' ability to resist infections. This could take place via two different mechanisms: (1) through general reduction in hosts' performance under harsh environmental conditions and/or (2) through altered resource allocation that reduces expression of defense traits in order to maintain other traits. We tested these alternative hypotheses by measuring the effect of an experimental heat wave (25 vs. 15°C) on the constitutive level of immune defense (hemocyte concentration, phenoloxidase [PO]‐like activity, antibacterial activity of hemolymph), and life histor…

0106 biological sciencesmedia_common.quotation_subjectZoologyLymnaea stagnalisSnailImmune functionresursointiBiology010603 evolutionary biology01 natural sciencesFreshwater snailLife history theoryToxicology03 medical and health sciencesImmune systembiology.animalHemolymphLymnaea stagnalis14. Life underwaterlife history traitsEcology Evolution Behavior and SystematicsOriginal Researchimmune function030304 developmental biologyNature and Landscape Conservationmedia_common0303 health sciencesEcologyGlobal warmingLife history traitsHeat wavebiology.organism_classificationresource allocation.6. Clean waterpiippolimakotilo13. Climate actionGlobal warming; Immune function; Life history traits; Lymnaea stagnalis; Resource allocationta1181Reproduction
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Implications of heat waves on immune defence, life history traits, and adaptive potential : a snail's perspective

2014

sopeutuminenpeto-saalissuhdeloisalttiuskotilotgenetic covariationinbreedingilmastonmuutoksetimmuunipuolustuslisääntyminenhost-parasite interactiongeneettinen muuntelupiippolimakotiloelinkiertoclimate changecross-generational effectsphenotypic responsesgenetic variationLymnaea stagnalislämpötilalämpöaallotgeneettiset tekijät
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Data from: Quality attracts parasites: host condition-dependent chemo-orientation of trematode larvae

2014

1. Environmental factors impairing physiological condition of organisms are assumed to predispose them to parasite infections. This is because host immune function is typically condition-dependent. However, poor physiological condition has been reported to reduce host susceptibility to parasites in various systems. 2. We examined whether such an effect can be due to altered exposure of hosts to active parasite transmission stages by investigating chemo-orientation of free-swimming cercariae larvae of a parasite Echinoparyphium aconiatum towards its snail host Lymnaea stagnalis. 3. We used both long-term and short-term feeding treatments to manipulate the body condition and physiological tra…

medicine and health carehost-parasite interactionscercariachemical detectionparasitic diseaseshost findingMedicineLymnaea stagnalisLife sciencesEchinoparyphium aconiatum
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