Javascript must be enabled to continue!
Deepwater Horizon crude oil reduces aerobic capacity of birds
View through CrossRef
ABSTRACT
Crude oil spills can have catastrophic effects on marine and inland ecosystems, yet it is difficult to accurately quantify the extent of ecological damage caused by oil spills. For instance, avian population damage assessments conducted after large oil spills (e.g.,
Deepwater Horizon
spill) often focus on the number of visibly oiled birds. However, birds without visible oiling can exhibit hematological damage from oil ingestion. If such hematological responses limit oxygen deliver to tissues and impair aerobic performance, then energy-mediated effects from oil ingestion may ultimately affect endpoints of demographic significance (e.g., survival and reproduction). We investigated whether oil ingestion affects aerobic performance in birds by orally dosing zebra finches (
Taeniopygia guttata
) with 2 or 6 mL/kg of weathered MC252 crude oil for 28 days. After 14 and 28 days of dosing, we measured hematological indices (oxidative damage, packed cell volume [PCV], hemoglobin, reticulocytes), maximum metabolic rate (MMR), resting metabolic rate (RMR), and short-distance flight performance. Finches exposed to oil exhibited lower hemoglobin and PCV, higher reticulocyte counts, and greater oxidative damage. Shifts in these hematological indices appeared to alter organismal energetics, resulting in reduced MMR, RMR, and aerobic scope. Short-distance burst-flight was not negatively impacted by oil ingestion. Collectively, these results suggest oil ingestion impairs metabolic performance, which may negatively impact a bird’s ability to perform sustained energetically expensive activities (e.g., migration).
Significance
The 2010
Deepwater Horizon
oil spill released an unprecedented volume of crude oil (MC252) into the northern Gulf of Mexico and contaminated 2100 km of shoreline habitat that serves as critical breeding grounds and migratory stop-over sites for birds. Here we describe the impact of oil ingestion on the aerobic capacity of zebra finches, a model songbird. Oil ingestion reduced maximum metabolic rate and aerobic scope, which may be caused in part by hematological damage. These data suggest oil ingestion limits the ability of birds to perform essential energetically demanding activities (e.g., migration, nest incubation), thus quantification of avian injury based on external oiling alone may underestimate the true impact of oil spills on avian populations.
Title: Deepwater Horizon
crude oil reduces aerobic capacity of birds
Description:
ABSTRACT
Crude oil spills can have catastrophic effects on marine and inland ecosystems, yet it is difficult to accurately quantify the extent of ecological damage caused by oil spills.
For instance, avian population damage assessments conducted after large oil spills (e.
g.
,
Deepwater Horizon
spill) often focus on the number of visibly oiled birds.
However, birds without visible oiling can exhibit hematological damage from oil ingestion.
If such hematological responses limit oxygen deliver to tissues and impair aerobic performance, then energy-mediated effects from oil ingestion may ultimately affect endpoints of demographic significance (e.
g.
, survival and reproduction).
We investigated whether oil ingestion affects aerobic performance in birds by orally dosing zebra finches (
Taeniopygia guttata
) with 2 or 6 mL/kg of weathered MC252 crude oil for 28 days.
After 14 and 28 days of dosing, we measured hematological indices (oxidative damage, packed cell volume [PCV], hemoglobin, reticulocytes), maximum metabolic rate (MMR), resting metabolic rate (RMR), and short-distance flight performance.
Finches exposed to oil exhibited lower hemoglobin and PCV, higher reticulocyte counts, and greater oxidative damage.
Shifts in these hematological indices appeared to alter organismal energetics, resulting in reduced MMR, RMR, and aerobic scope.
Short-distance burst-flight was not negatively impacted by oil ingestion.
Collectively, these results suggest oil ingestion impairs metabolic performance, which may negatively impact a bird’s ability to perform sustained energetically expensive activities (e.
g.
, migration).
Significance
The 2010
Deepwater Horizon
oil spill released an unprecedented volume of crude oil (MC252) into the northern Gulf of Mexico and contaminated 2100 km of shoreline habitat that serves as critical breeding grounds and migratory stop-over sites for birds.
Here we describe the impact of oil ingestion on the aerobic capacity of zebra finches, a model songbird.
Oil ingestion reduced maximum metabolic rate and aerobic scope, which may be caused in part by hematological damage.
These data suggest oil ingestion limits the ability of birds to perform essential energetically demanding activities (e.
g.
, migration, nest incubation), thus quantification of avian injury based on external oiling alone may underestimate the true impact of oil spills on avian populations.
Related Results
Crude Oil Characterization For Micellar Enhanced Oil Recovery
Crude Oil Characterization For Micellar Enhanced Oil Recovery
Abstract
Chemically enhanced oil recovery depends on the phase and interfacial properties of the crude phase and interfacial properties of the crude Oil-brine-sur...
The Future of Regulations for the Deepwater GOM
The Future of Regulations for the Deepwater GOM
Abstract
Deepwater oil and gas activities in the U.S. Gulf of Mexico Outer ContinentalShelf (OCS) are regulated by the Minerals Management Service (MMS). The leve...
New Tendon and Riser Technologies Improve TLP Competitiveness in Ultra- Deepwater
New Tendon and Riser Technologies Improve TLP Competitiveness in Ultra- Deepwater
Abstract
The extensive industry experience with design, fabrication, installation, and operation of TLPs in water depths up to 4,000 ft has demonstrated the flexi...
Crude Oil and Crude Oil Derivatives Transactions by Oil and Gas Producers.
Crude Oil and Crude Oil Derivatives Transactions by Oil and Gas Producers.
This study attempts to resolve two important issues. First, it investigates the diversification benefit of crude oil for equities. Second, it examines whether or not crude oil deri...
The After Effect of Crude Oil Spillage on Some Associated Heavy Metals in the Soil
The After Effect of Crude Oil Spillage on Some Associated Heavy Metals in the Soil
Abstract
Crude oil spillage is one major means of environmental pollution in oil and gas exploration and production. Since 1976, about 5334 cases of crude oil spi...
Selecting Seal Materials for Deepwater Completions
Selecting Seal Materials for Deepwater Completions
Abstract
A variety of seal materials have been used in downhole completions since the first cement plug was invented circa 1924. That first plug had a canvas wrap...
Physico-Chemical Properties of Yemeni Crude Oil of Alif –Mareb, Masilla and Jardan -Shabwa Fields
Physico-Chemical Properties of Yemeni Crude Oil of Alif –Mareb, Masilla and Jardan -Shabwa Fields
Given the immense importance of crude oil to contemporary civilization as a raw material for several chemical and petrochemical businesses as well as a source of energy, in this st...
The Deep Star Project: An Overview Of Industry Cooperation
The Deep Star Project: An Overview Of Industry Cooperation
ABSTRACT
Texaco's vision for development of the deepwater in the Gulf of Mexico is closely tied to the concept of cooperation and evolution of a synergistic relat...

