mtDNA depletion syndrome 13 is a rare genetic disorder, in which individuals have fewer mitochondria in the muscles than normal because the organelles are degraded by lysosomes. Would this disorder impact the muscles' ability to perform the Cori Cycle? Yes, it would interfere with lactic acid fermentation. Yes, it would interfere with aerobic gluconeogenesis. Yes, it would interfere with anaerobic glycolysis. No, it would not impact the Cori Cycle.
mtDNA depletion syndrome 13 is a rare genetic disorder, in which individuals have fewer mitochondria in the muscles than normal because the organelles are degraded by lysosomes. Would this disorder impact the muscles' ability to perform the Cori Cycle? Yes, it would interfere with lactic acid fermentation. Yes, it would interfere with aerobic gluconeogenesis. Yes, it would interfere with anaerobic glycolysis. No, it would not impact the Cori Cycle.
Biology: The Dynamic Science (MindTap Course List)
4th Edition
ISBN:9781305389892
Author:Peter J. Russell, Paul E. Hertz, Beverly McMillan
Publisher:Peter J. Russell, Paul E. Hertz, Beverly McMillan
Chapter7: Cellular Respiration: Harvesting Chemical Energy
Section: Chapter Questions
Problem 7TYK
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Question
![mtDNA depletion syndrome 13 is a rare genetic disorder, in which
individuals have fewer mitochondria in the muscles than normal
because the organelles are degraded by lysosomes. Would this disorder
impact the muscles' ability to perform the Cori Cycle?
O Yes, it would interfere with lactic acid fermentation.
O Yes, it would interfere with aerobic gluconeogenesis.
O Yes, it would interfere with anaerobic glycolysis.
O No, it would not impact the Cori Cycle.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F790403c6-3ff1-4e96-a049-b154822a3275%2Fc9010a7a-33ac-436e-8729-f56282edcba1%2F9pgpv9_processed.png&w=3840&q=75)
Transcribed Image Text:mtDNA depletion syndrome 13 is a rare genetic disorder, in which
individuals have fewer mitochondria in the muscles than normal
because the organelles are degraded by lysosomes. Would this disorder
impact the muscles' ability to perform the Cori Cycle?
O Yes, it would interfere with lactic acid fermentation.
O Yes, it would interfere with aerobic gluconeogenesis.
O Yes, it would interfere with anaerobic glycolysis.
O No, it would not impact the Cori Cycle.
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