Thermal biology of the deep-sea vent annelidParalvinella grasslei:in vivostudies

Author:

Cottin Delphine12,Ravaux Juliette12,Léger Nelly12,Halary Sébastien12,Toullec Jean-Yves34,Sarradin Pierre-Marie5,Gaill Françoise12,Shillito Bruce12

Affiliation:

1. UPMC Université Paris 6, UMR 7138, `Systématique, Adaptation et Evolution', F-75005 Paris, France

2. CNRS UMR 7138, `Systématique, Adaptation et Evolution', F-75005, Paris,France

3. UPMC Université Paris 6, FRE 2852 `Protéines: Biochimie Structurale et Fonctionnelle', F-75005 Paris, France

4. CNRS FRE 2852 `Protéines: Biochimie Structurale et Fonctionnelle',F-75005 Paris, France

5. DEEP/Laboratoire Environnement Profond, Centre IFREMER de Brest, bp 70, 29280 Plouzané, Cedex, France

Abstract

SUMMARYThe annelid Paralvinella grasslei is a deep-sea vent endemic species that colonizes the wall of active chimneys. We report here the first data on its thermal biology based on in vivo experiments in pressurized aquaria. Our results demonstrate that P. grassleisurvives a 30 min exposure at 30°C, and suggest that the upper thermal limit of this species is slightly above this temperature. The first signs of stress were noticed at 30°C, such as a significant increase in the animal's activity and the expression of HSP70 stress proteins. A preliminary investigation of the kinetics of stress protein expression surprisingly showed high levels of HSP70 proteins as late as 3.5 h after the heat shock. Finally,we provide here the first sequences for vent annelid hsp70 (P. grasslei, Hesiolyra bergi and Alvinella pompejana). These constitute valuable tools for future studies on the thermal biology of these annelids.

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

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