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Trophodynamics at the Longqi hydrothermal vent field and comparison with the East Scotia and Central Indian Ridges

W. D. K. Reid; B. D. Wigham; L. Marsh; J. N. J. Weston; Y. Zhu; J. T. Copley
Marine Biology · Vol. 167, Issue 10 · 2020

Abstract

The Longqi vent field, situated on the Southwest Indian Ridge, is ecologically distinct among known hydrothermal vents fields. It hosts a combination of previously unknown species and those shared at species or genus level with other hydrothermal vents on the Central Indian Ridge (CIR) and East Scotia Ridge (ESR). We investigate the size-based and trophodynamics of consumers at Longqi vent field and compared these with ESR and CIR vent fields using stable isotope analysis. Intra-specific variability in δ 13 C and δ 15 N values in relationship to shell length was observed in Gigantopelta aegis but absent in Chrysomallon squamiferum . A model-based clustering approach identified four trophic groupings at Longqi: species with the lowest δ 13 C values being supported by carbon fixed via the Calvin–Benson–Bassham cycle, the highest δ 13 C values being supported by the reductive tricarboxylic acid cycle and intermediate values potentially supported by a mix of these primary production sources. These clusters were driven by potential differences in resource partitioning. There were also differences in the spread of stable isotope values at the vent field level when comparing Bayesian stable isotope ellipse areas among Longqi, CIR and ESR vent fields. This was driven by a combination of the range in δ 13 C value of macrofauna, and the negative δ 15 N values which were only observed at Longqi and CIR vent fields. Many of the shared species or genera showed inter-vent field differences in stable isotope values which may be related to site-specific differences in food sources, geochemistry or potential intra-field competition. This study provides important information on the trophic ecology of hydrothermal vent macrofauna found within an area of seabed that is licensed for seabed mining exploration.

Bibliographic Information

JournalMarine Biology
PublisherSpringer
Publication Date2020-10-01
Publication Year2020
Volume167
Issue10
Document TypeJournal Article
Print ISSN0025-3162
eISSN1432-1793
DOI10.1007/s00227-020-03755-1

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NARA Access Coverage1967-01-01~Current
Journal Homepagehttps://www.springer.com/journal/227
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