Search results for "päivänpituus"

showing 3 items of 3 documents

Effects of photoperiod on life-history and thermal stress resistance traits across populations of Drosophila subobscura

2019

Introduction Organisms use environmental cues to match their phenotype with the future availability of resources and environmental conditions. Changes in the magnitude and frequency of environmental cues such as photoperiod and temperature along latitudes can be used by organisms to predict seasonal changes. While the role of temperature variation on the induction of plastic and seasonal responses is well established, the importance of photoperiod for predicting seasonal changes is less explored. Materials and methods Here we studied changes in life‐history and thermal stress resistance traits in Drosophila subobscura in response to variation in photoperiod (6:18, 12:12 and 18:6 light:dark …

0106 biological sciencesendocrine systemRange (biology)lämmönsietomahlakärpäsetPopulationplastisuusevoluutioZoologyadaptationBiologyphotoperiod010603 evolutionary biology01 natural sciencesthermal toleranceEvolutionsbiologi03 medical and health sciencesevolutioneducationEcology Evolution Behavior and Systematics030304 developmental biologyNature and Landscape ConservationLocal adaptationOriginal Research2. Zero hungerphotoperiodismsopeutuminen0303 health scienceseducation.field_of_studyEvolutionary BiologyEcologyResistance (ecology)environmental cuesilmastonmuutoksetDrosophila subobscuraclimate change13. Climate actionplasticitypäivänpituusTraitta1181DrosophilaAdaptation
researchProduct

Eco-physiological aspects of adaptation to seasonal environments : the latitudinal range expansion of the Colorado potato beetle across Europe

2013

sopeutuminenvuodenaikaisvaihtelutulokaslajitkoloradonkuoriainenrapid adaptationekofysiologiaphenologyphenotypic plasticityfotoperiodismituhohyönteisetpäivänpituusfenologiakasvukausilocal adaptationleviäminen
researchProduct

Plasticity in Photoperiodism : Drosophila montana Females Have a Life-Long Ability to Switch From Reproduction to Diapause

2022

Photoperiodic reproductive diapause is an essential part of female life cycle in several insect species living on high latitudes, where overwintering in reproductive stage involves high risks for survival and progeny production. The sensitive period (SP), during which photoperiodic cues can trigger the switch from direct development to diapause, can last from a few hours or days after emergence to the entire life span of females. Moreover, in some species, sexually mature females can enter post-reproductive diapause as a response to decreasing day length and/or temperature. We studied the duration of SP for diapause induction and the females’ ability to enter post-reproductive diapause at s…

vuodenajatmahlakärpäsetfotobiologiaphotoperiodgeographic variationlisääntyminentalvehtiminencritical day lengthsensitive periodpäivänpituuspost-reproductive diapausehyönteisetlämpötilavaihtelusäätelylepotila
researchProduct