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Estimations of free fatty acid (FFA) as a reliable proxy for larval performance in Mediterranean octocoral species

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Estimations of free fatty acid (FFA) as a reliable proxy for larval performance in Mediterranean octocoral species

DOI: 10.12681/mms.27151

Type: Publication

Year: 2021

Citations: 6

AZORES DEEP-SEA RESEARCH
Publication Open access November 2021

Estimations of free fatty acid (FFA) as a reliable proxy for larval performance in Mediterranean octocoral species

Mediterranean Marine Science

10.12681/mms.27151
Open DOI
Total authors
7
Involved team members
1
Citations
6
References
82

Citations by year

3 years
2025
4
2024
1
2022
1

Abstract

The survival, behavior and competence period of lecithotrophic larvae depends not only on the energy allocation transferred by maternal colonies but also on the amount of energy consumed to sustain embryonic, larval, and post-larval development. The objective of the present work is to understand the effect of energy consumption on the performance of lecithotrophic larvae. To this aim, we analyzed free fatty acid (FFA) content and composition of the larvae of three Mediterranean octocorals (Corallium rubrum, Eunicella singularis and Paramuricea clavata) as a proxy for energy consumption. Results showed that C. rubrum larvae consume more FFA than P. clavata, whereas the energy consumed by E. singularis larvae is high but highly variable. These results are in accordance with the larval behavior of these three species since C. rubrum larvae are characterized by their high swimming activity frequency, P. clavata larvae are almost inactive, and the swimming activity frequency of E. singularis larvae is high, although variable. The differences in FFA composition of the larvae suggest contrasting energetic strategies that could explain the differences in survival and recruitment rates. In fact, high dispersal and recruitment capacities for E. singularis larvae can be inferred from the FFA composition, whereas the high spatial and temporal variability of recruitment observed in C. rubrum may be related to the non-selective transfer of fatty acid (FA) from maternal colonies. Finally, the high recovery rates after mass mortality events observed in P. clavata could be favored by the presence of a specific FA (22:6(n-3)) related to adaptation mechanisms under environmental stresses during the first developmental stages.

Authors

1 involved team member
L
Lorenzo Bramanti
0000-0002-4872-840X

LECOB - Laboratoire d'Ecogéochimie des environnements benthiques (France)

+1 more

G
Georgios Tsounis
0000-0001-9242-9063

Institut de Ciència i Tecnologia Ambientals (Universitat Autònoma de Barcelona), Edifici Z Campus UAB, Cerdanyola del Vallès, 08193, Spain

+1 more

M
Martina Coppari
0000-0002-3178-9409

Institut de Ciència i Tecnologia Ambientals (Universitat Autònoma de Barcelona), Edifici Z Campus UAB, Cerdanyola del Vallès, 08193, Spain

+2 more

A
Audrey Pruski
0000-0003-4740-2528

Sorbonne Université, CNRS, Laboratoire d'Ecogéochimie des Environnements Benthiques, LECOB, 66500 Banyuls-sur-Mer, France

+1 more

S
Sergio Rossi
0000-0003-4402-3418

Sorbonne Université, CNRS, Laboratoire d'Ecogéochimie des Environnements Benthiques, LECOB, 66500 Banyuls-sur-Mer, France

+4 more

Record details

Type
article
Language
EN
ISSN
1108-393X

Keywords

Marine larval ecology Biology Larva Fatty acid Zoology Ichthyoplankton Ecology Polyunsaturated fatty acid Food science Biochemistry

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