Published May 9, 2023 | Version v1
Dataset Open

Data From: Effects of disease on foraging behaviour and success in an individual free-ranging northern elephant seal

  • 1. University of California, Santa Cruz
  • 2. Sonoma State University
  • 3. National Institute of Polar Research

Description

Evaluating consequences of stressors on vital rates in marine mammals is of considerable interest to scientific and regulatory bodies. Many of these species face numerous anthropogenic and environmental disturbances. Despite its importance as a critical form of mortality, little is known about disease progression in air-breathing marine megafauna at sea.  We examined the movement, diving, foraging behaviour, and physiological state of an adult female northern elephant seal (Mirounga angustirostris) who suffered from an infection while at sea. Comparing her to healthy individuals, we identified abnormal behavioural patterns from high-resolution biologging instruments that are likely indicators of diseased and deteriorating condition. We observed continuous extended (3–30 min) surface intervals coinciding with almost no foraging attempts (jaw motion) during two weeks of acute illness early in her post-breeding foraging trip. Elephant seals typically spend ~2 min at the surface. There were less frequent but highly extended (30–200 min) surface periods across the remainder of the trip. Dive duration declined throughout the trip rather than increasing. This seal returned in the poorest body condition recorded for an adult female elephant seal (18.3% adipose tissue; post-breeding trip average is 30.4%). She was immunocompromised at the end of her foraging trip and has not been seen since that moulting season. The timing and severity of the illness, which began during the end of the energy-intensive lactation fast, forced this animal over a tipping point from which she could not recover. Additional physiological constraints to foraging, including thermoregulation and oxygen consumption, likely exacerbated her already poor condition. These findings improve our understanding of illness in free-ranging air-breathing marine megafauna, demonstrate the vulnerability of individuals at critical points in their life-history, highlight the importance of considering individual health when interpreting biologging data, and could help differentiate between malnutrition and other causes of at-sea mortality from transmitted data.

Notes

The body composition and morphometric data provided are in CSV format.  Files included:

  • DiseaseAtSea_ForagingSuccess_PB2004-2020.csv - includes all foraging success metrics for post-breeding adult female elephant seals from 2004 to 2020 included in this paper (Mass Gain, Mass Gain Rate, % Mass Gain, Energy Gain, Energy Gain Rate, Departure %Adipose, Arrival %Adipose, Trip Duration; Table 2, Fig. 1).
  • DiseaseAtSea_LengthMass_PB2013-2020.csv - includes the standard length and mass, measured in the field at deployment for all post-breeding females from 2013-2020. These data were used to produce S1. 
  • DiseaseAtSea_AllMorphs_PB2017.csv - includes all morphometric measurements collected at deployment and recovery for post-breeding 2017 animals.  These metrics were used to calculate surface-area-to-volume ratios.
  • DiseaseAtSea_PB2017_SAV_V3.csv - contains the surface area and volume calculations completed using the script "DiseaseAtSea_SA_V_calc.R" and the data from DiseaseAtSea_AllMorphs_PB2017.csv.  These values were used to produce Fig. 8.

All code is available at  https://doi.org/10.5281/zenodo.7864665

Funding provided by: Office of Naval Research
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000006
Award Number: N00014-18-1-2822

Funding provided by: Office of Naval Research
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000006
Award Number: N000014-13-1-0134

Funding provided by: Strategic Environmental Research and Development Program
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100013316
Award Number: RC20-C2-1284

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DiseaseAtSea_AllMorphs_PB2017.csv

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Additional details

Related works

Is derived from
10.5281/zenodo.7864665 (DOI)