Changes in spatial and temporal variability of prey affect functional connectivity of larval and juvenile cod

Author:

Lough R. Gregory1,Broughton Elisabeth A.1,Kristiansen Trond2

Affiliation:

1. Northeast Fisheries Science Center, NMFS, NOAA, Woods Hole, MA 02543, USA

2. Norwegian Institute for Water Research (NIVA), Gaustadalléen 21, Oslo 0349, Norway

Abstract

Abstract Changes in structural connectivity as it can affect functional connectivity, the biological and behavioural responses of an organism, has been examined here over 2 contrasting years when the spatial distribution of larval and juvenile cod and their prey shifted from the flank to the crest on Georges Bank. New data on the gut contents of pelagic juvenile cod are compared with known prey distributions, potential growth and how climate warming can change connectivity in this region. Centropages spp. was the most important prey for pelagic juveniles, especially in June 1987 when they had high abundance on the crest and were dominant in the cod stomachs. In June 1986, copepod abundance was low where the juveniles were distributed along the flank. The potential growth of juvenile cod was greater in June 1987, consistent with the higher abundance of Centropages spp., and with higher recruitment survival, compared with June 1986. Annual changes in the spatial distribution of cod early life stages within the environment of cold or warm years can have different impacts on their growth and survival. Whereas the small copepods, Pseudocalanus spp., are primary prey for cod larvae and very abundant in cold years, larger copepods, Calanus finmarchicus and Centropages spp., are important prey for the pelagic juveniles and the latter species can have a high impact in warm years on the crest. The different spatial structure during cold or warm years provides an explanation why different year classes respond differently to environmental change. Depending on the presence or absence of specific prey, the functional connectivity response changes pathways that determine the growth and survival of early life stages and ultimately a role in recruitment.

Publisher

Oxford University Press (OUP)

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics,Oceanography

Reference60 articles.

1. Modeling the effects of temperature on the survival and growth of North Sea cod (Gadus morhua) through the first year of life;Akimova;Fisheries Oceanography,2016

2. Data assimilative hindcast on the Southern Flank of Georges Bank during May 1999: frontal circulation and implications;Aretxabaleta;Continental Shelf Research,2005

3. Plankton effect on cod recruitment in the North Sea;Beaugrand;Nature,2003

4. Climate, plankton and cod;Beaugrand;Global Change Biology,2010

5. Global fish production and climate change;Brander;Proceedings of the National Academy of Sciences of the United States of America,2007

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