首页 | 本学科首页   官方微博 | 高级检索  
   检索      


Phenotypic diversity,population structure and stress protein-based capacitoring in populations of Xeropicta derbentina,a heat-tolerant land snail species
Authors:Maddalena A Di Lellis  Sergej Sereda  Anna Geißler  Adrien Picot  Petra Arnold  Stefanie Lang  Sandra Troschinski  Andreas Dieterich  Torsten Hauffe  Yvan Capowiez  Christophe Mazzia  Thomas Knigge  Tiphaine Monsinjon  Stefanie Krais  Thomas Wilke  Rita Triebskorn  Heinz-R Köhler
Institution:1. Animal Physiological Ecology, Institute of Evolution and Ecology, Tübingen University, Konrad-Adenauer-Str. 20, D-72072, Tübingen, Germany
2. Department of Animal Ecology & Systematics, Justus Liebig University Giessen, Heinrich-Buff-Ring 26-32 IFZ, D-35392, Giessen, Germany
3. Laboratory of Ecotoxicology (LEMA), EA 3222 PRES Normandie, Le Havre University, 25 Rue Philippe Lebon, F-76058, Le Havre Cedex, France
4. Université d’Avignon et des Pays de Vaucluse, Laboratoire de Toxicologie Environnementale, UMR 406 UAPV/INRA, Domaine St Paul, Site Agroparc, F-84914, Avignon Cedex 9, France
5. IMBE UMR 7263, Institut Mediterranéen de Biodiversité et d’Ecologie marine et continentale, Université d’Avignon et des Pays de Vaucluse, Pole Agrosciences, 301 rue Baruch de Spinoza, BP 21239, F-84916, Avignon cedex 9, France
6. Steinbeis-Transfer Center Ecotoxicology and Ecophysiology Rottenburg, Blumenstr. 13, D-72108, Rottenburg, Germany
Abstract:The shell colour of many pulmonate land snail species is highly diverse. Besides a genetic basis, environmentally triggered epigenetic mechanisms including stress proteins as evolutionary capacitors are thought to influence such phenotypic diversity. In this study, we investigated the relationship of stress protein (Hsp70) levels with temperature stress tolerance, population structure and phenotypic diversity within and among different populations of a xerophilic Mediterranean snail species (Xeropicta derbentina). Hsp70 levels varied considerably among populations, and were significantly associated with shell colour diversity: individuals in populations exhibiting low diversity expressed higher Hsp70 levels both constitutively and under heat stress than those of phenotypically diverse populations. In contrast, population structure (cytochrome c oxidase subunit I gene) did not correlate with phenotypic diversity. However, genetic parameters (both within and among population differences) were able to explain variation in Hsp70 induction at elevated but non-pathologic temperatures. Our observation that (1) population structure had a high explanatory potential for Hsp70 induction and that (2) Hsp70 levels, in turn, correlated with phenotypic diversity while (3) population structure and phenotypic diversity failed to correlate provides empirical evidence for Hsp70 to act as a mediator between genotypic variation and phenotype and thus for chaperone-driven evolutionary capacitance in natural populations.
Keywords:COI  Eco-devo  Evolutionary capacitance  Hsp70  Xeropicta derbentina
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号