4.7 Article

Anti-predatory responses of the thick shell mussel Mytilus coruscus exposed to seawater acidification and hypoxia

Journal

MARINE ENVIRONMENTAL RESEARCH
Volume 109, Issue -, Pages 159-167

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.marenvres.2015.07.008

Keywords

CO2; Acidification; Hypoxia; Byssus thread; Mussels; Crabs; Multiple stresses

Funding

  1. National Natural Science Foundation of China [31302207]
  2. Shanghai Municipal Natural Science Foundation [13ZR1455700]
  3. Innovation Program of Shanghai Municipal Education Commission [13YZ096]
  4. Shanghai University Knowledge Service Platform
  5. Shanghai Ocean University Aquatic Animal Breeding Center [ZF1206]
  6. Shanghai Universities First-class Disciplines Project of Fisheries
  7. China Scholarship Council
  8. DAAD

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Ocean acidification and hypoxia, both caused by anthropogenic activities, have showed deleterious impacts on marine animals. However, their combined effect on the mussel's defence to its predator has been poorly understood, which hinders us to understand the prey-predator interaction in marine environment. The thick shell mussel Mytilus coruscus and its predator, the Asian paddle crab Charybdis japonica were exposed to three pH levels (7.3, 7.7, 8.1) at two concentrations of dissolved oxygen (2.0 mg L-1, 6.0 mg L-1) seawater. The anti-predatory responses of mussels, in terms of byssus thread production were analyzed after 72 h exposure. During the experiment, frequency of shedding stalks (mussels shed their byssal stalks to release themselves from attachment and allow locomotion) and number of byssus threads increased with time, were significantly reduced by hypoxia and low pH levels, and some interactions among time, predator, DO and pH were observed. As expected, the presence of the crab induced an anti-predator response in M. coruscus (significant increases in most tested parameters except the byssus thread length). Acidification and hypoxia significantly reduced byssus thread diamter at the end of the experiment, but not the byssus thread length. Cumulative byssus thread length and volume were significantly impaired by hypoxia and acidification. Our results highlight the significance of anti-predatory responses for adult mussel M. coruscus even under a stressful environment in which stress occurs through ocean acidification and hypoxia. By decreasing the strength of byssus attachment, the chance of being dislodged and consumed by crabs is likely increased. Our data suggest that there are changes in byssus production induced by hypoxia and acidification, which may affect predation rates on M. coruscus in the field. (C) 2015 Elsevier Ltd. All rights reserved.

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