Join thousands of students who trust us to help them ace their exams!Watch the first video
Multiple Choice
During hibernation in cold environments, what adaptation is most likely to occur in the phospholipid composition of a polar bear's cell membranes?
A
A decrease in cholesterol content to make the membrane more rigid.
B
An increase in the proportion of unsaturated fatty acids to maintain membrane fluidity.
C
A replacement of phospholipids with triglycerides to store more energy.
D
An increase in the proportion of saturated fatty acids to enhance membrane stability.
Verified step by step guidance
1
Understand the role of phospholipids in cell membranes: Phospholipids are critical for maintaining the fluidity and functionality of cell membranes. Their composition can change in response to environmental conditions to ensure proper membrane function.
Recognize the impact of temperature on membrane fluidity: In cold environments, cell membranes tend to become more rigid due to reduced molecular movement. To counteract this, organisms adapt their phospholipid composition to maintain fluidity.
Analyze the role of unsaturated fatty acids: Unsaturated fatty acids contain one or more double bonds, which create kinks in their structure. These kinks prevent tight packing of phospholipids, increasing membrane fluidity, especially in cold conditions.
Evaluate the incorrect options: Decreasing cholesterol content would make the membrane less fluid, which is counterproductive in cold environments. Replacing phospholipids with triglycerides is not relevant to membrane fluidity, as triglycerides are primarily used for energy storage. Increasing saturated fatty acids would make the membrane more rigid, which is also counterproductive in cold conditions.
Conclude the correct adaptation: To maintain membrane fluidity during hibernation in cold environments, polar bears are likely to increase the proportion of unsaturated fatty acids in their cell membranes.