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Published by The Company of Biologists Ltd doi:10.1242/jeb.076216 RESEARCH ARTICLE Rapid decline of cold tolerance at young age is associated with expression of stress genes in Drosophila melanogaster Hervé Colinet1,2,*, David Siaussat3, Francoise Bozzolan3 and Kenneth Bowler4 1 Earth and Life Institute ELI, Biodiversity Research Centre BDIV, Catholic University of Louvain, Croix du Sud 4-5, B-1348 Louvainla-Neuve, Belgium, 2Université de Rennes 1, UMR CNRS 6553 Ecobio, 263 Avenue du Général Leclerc CS 74205, 35042 Rennes Cedex, France, 3UMR 1272A Physiologie de lʼInsecte:
Tolerance and the Distributed Sorites Consider the family of principles that includes these:
xxx-xxx EXPOSURE TO DESICCATING CONDITIONS AND CROSS-TOLERANCE WITH THERMAL STRESS IN THE LESSER MEALWORM ALPHITOBIUS DIAPERINUS (COLEOPTERA:
Tolerance to cold storage is a very plastic trait inﬂuenced by a wide range of endogenous (biotic) and exogenous (abiotic) factors experienced before, during, or after cold exposure.
Dietary sugars affect cold tolerance of Drosophila melanogaster Hervé Colinet, Vanessa Larvor, Raphaël Bical &
www.elsevier.com/locate/cbpa Does cold tolerance plasticity correlate with the thermal environment and metabolic proﬁles of a parasitoid wasp?
00, 1–7 doi:10.1093/gerona/glv193 Advance Access publication October 27, 2015 Original Article Age-related Decline of Abiotic Stress Tolerance in Young Drosophila melanogaster Adults Downloaded from http://biomedgerontology.oxfordjournals.org/ at University of Liverpool on October 29, 2015 Hervé Colinet,1 Thomas Chertemps,2 Isabelle Boulogne,2,3 and David Siaussat2 1 UMR CNRS 6553 ECOBIO, Université de Rennes 1, France.
Insects have the capacity to adjust their physiological mechanisms during their lifetime to promote cold tolerance and cope with sublethal thermal conditions, a phenomenon referred to as thermal acclimation.
www.elsevier.com/locate/cbpa Dietary live yeast alters metabolic proﬁles, protein biosynthesis and thermal stress tolerance of Drosophila melanogaster Hervé Colinet ⁎, David Renault Université de Rennes 1, UMR CNRS 6553 Ecobio, 263 Avenue du Gal Leclerc, CS 74205, 35042 Rennes, France a r t i c l e i n f o Article history:
doi:10.1242/jeb.213744 RESEARCH ARTICLE Thermal stress causes DNA damage and mortality in a tropical insect ABSTRACT Cold tolerance is considered an important factor determining the geographic distribution of insects.
Seasonal changes in supercooling point (SCP) and acute cold tolerance (2-h exposure at ⫺5, ⫺10, ⫺15, ⫺20, ⫺23, or ⫺25⬚C) were assessed in Þeld-collected females during the winter in 2010 Ð2011 in Iran.
The Science of Nature (2018) 105:59 https://doi.org/10.1007/s00114-018-1584-7 SHORT COMMUNICATION Microbiota disruption leads to reduced cold tolerance in Drosophila flies Youn Henry 1 &
3) There is increased tolerance of bison in Montana that facilitates the conservation and harvest of bison through public and treaty hunting.
The mechanisms underlying phenotypic plasticity in inducible cold tolerance are complex and not fully understood.
10.3389/fphys.2018.01506 Frontiers in Physiology | www.frontiersin.org ECOBIO – UMR 6553, Université de Rennes 1, CNRS, Rennes, France, 2 Institut Universitaire de France, Paris, France The invasive fruit fly pest, Drosophila suzukii, is a chill susceptible species, yet it is capable of overwintering in rather cold climates, such as North America and North Europe, probably thanks to a high cold tolerance plasticity.
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Here, we complete a comprehensive assessment of how the different forms of acclimation based on simulated ﬁeld temperatures affect cold tolerance in Drosophila melanogaster under different levels of cold stress ()4Æ5 C ⁄ 2 h and 0 C ⁄ 10 h).
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