Dear colleagues,
I am pleased to announce the publication of a paper that compares options for scaling fatty acid signatures prior to diet estimation using quantitative fatty acid signature analysis (QFASA), a method that has been widely utilized for marine species.
Citation:
Bromaghin, J. F., S. M. Budge, and G. W. Thiemann. 2016. Should fatty acid signature proportions sum to 1 for diet estimation? Ecological Research 31(4):597-606.
Abstract:
Knowledge of predator diets, including how diets might change through
time or differ among predators, provides essential insights into their
ecology. Diet estimation therefore remains an active area of research
within quantitative ecology. Quantitative fatty acid signature analysis
(QFASA) is an increasingly common method of diet estimation. QFASA is
based on a data library of prey signatures, which are vectors of
proportions summarizing the fatty acid composition of lipids, and diet
is estimated as the mixture of prey signatures that most closely
approximates a predator’s signature. Diets are typically estimated
using proportions from a subset of all fatty acids that are known to be
solely or largely influenced by diet. Given the subset of fatty acids
selected, the current practice is to scale their proportions to sum to
1.0. However, scaling signature proportions has the potential to distort
the structural relationships within a prey library and between
predators and prey. To investigate that possibility, we compared the
practice of scaling proportions with two alternatives and found that the
traditional scaling can meaningfully bias diet estimators under some
conditions. Two aspects of the prey types that contributed to a
predator’s diet influenced the magnitude of the bias: the degree to
which the sums of unscaled proportions differed among prey types and the
identifiability of prey types within the prey library. We caution
investigators against the routine scaling of signature proportions in
QFASA.
Regards,
Jeff