Abstract
Fluoride
is retained in bone tissues of animals and its availability in the
environment varies between regions according to natural and
anthropogenic sources. These properties suggest this element as a
suitable tracer of origin, distribution or movements of animals. In
marine environments, krill builds-up fluoride concentrations that are
transferred to its predators. In this study we examine the ability of
bone fluoride concentrations to discriminate two separate populations of
a krill consumer, the fin whale. Background levels of the sampling
areas (Western Iceland and North-Western Spain) were determined through
the analysis of krill samples. As expected, due to the high load of
volcanic-derived fluoride in Icelandic waters, krill from W Iceland
showed much higher fluoride concentrations than that from NW Spain.
Concentrations in whales’ bone were correlated with sex and age,
increasing linearly with age in females and showing significantly lower
values and a different age-related pattern of accumulation in males.
Fluoride concentrations in whales’ bone were much higher than in krill,
indicating accumulation of the element but, rather unexpectedly, the
area of origin had no influence on concentrations. This apparent
contradiction may be explained either by the integration in bone of food
consumed in other areas, or by the activation of homeostatic responses
at very high levels of fluoride exposure. It is concluded that fluoride
can be a useful tracer only if age and sex data are integrated into the
analysis, year-round information on diet is available and/or the
investigated population is exposed to mild levels of this element.
PDF copy of the work will be available for free downloaded until April 23, 2015, from:
http://www.sciencedirect.com/science/article/pii/S0045653515001253#
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