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Respiratory Chain Activity and Prote...
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Alcorn de Feliz, Earsie L.
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Respiratory Chain Activity and Protein Expression in Skeletal Muscles from High and Low Feed Efficient Swine within the Same Genetic Line.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Respiratory Chain Activity and Protein Expression in Skeletal Muscles from High and Low Feed Efficient Swine within the Same Genetic Line./
作者:
Alcorn de Feliz, Earsie L.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2020,
面頁冊數:
129 p.
附註:
Source: Dissertations Abstracts International, Volume: 82-03, Section: B.
Contained By:
Dissertations Abstracts International82-03B.
標題:
Animal sciences. -
電子資源:
https://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=28030124
ISBN:
9798664733167
Respiratory Chain Activity and Protein Expression in Skeletal Muscles from High and Low Feed Efficient Swine within the Same Genetic Line.
Alcorn de Feliz, Earsie L.
Respiratory Chain Activity and Protein Expression in Skeletal Muscles from High and Low Feed Efficient Swine within the Same Genetic Line.
- Ann Arbor : ProQuest Dissertations & Theses, 2020 - 129 p.
Source: Dissertations Abstracts International, Volume: 82-03, Section: B.
Thesis (Ph.D.)--University of Arkansas, 2020.
This item must not be sold to any third party vendors.
Current as well as past studies have provided evidence for a connection between macroeconomic/agricultural and cellular/biochemical basis of feed efficiency (FE; gain:feed) in farm animal production. Our investigation of respiratory chain activity, mitochondrial protein oxidation and protein expression was an expansion to the subcellular/molecular level. In this study we investigated the entire complex (Cx) of the electron transport chain (ETC) for differences in Cx activities in mitochondria isolated from skeletal muscle in high (HFE) and low (LFE) feed efficient swine within the same genetic line. Review of literature provided information for the connection between feed efficiency, mitochondrial function, and muscle type. Using UV spectrophotometry, gel electrophoresis and western blotting methods, we were able to study mitochondria from swine Longissimus (LM) and Spinalis dorsi muscles for differences in respiratory chain complex (I - V) activities, protein oxidation and protein expression of eleven subunits of the five electron transport chain complexes. We observed muscle dependent differences in Cx I and II, protein carbonyls and five subunits of the ETC (Cx I 30, Cor II, Cox IV, alpha and beta ATPase). We concluded after comparing our results with findings in literature, that respiratory chain activity protein oxidation and expression of protein subunits may be both skeletal muscle as well as a species dependent. These differential expressions may be the result of increased incidents of reactive oxygen species causing defects in Cx I or Cx II that may precipitate significant mitochondrial events and cellular pathways that provide links to the phenotypic expression of feed efficiency. Of high interest in relation to the mitochondrial link to FE are apoptotic, mTor and myostatin pathways.
ISBN: 9798664733167Subjects--Topical Terms:
3174829
Animal sciences.
Subjects--Index Terms:
Complex (Cx)
Respiratory Chain Activity and Protein Expression in Skeletal Muscles from High and Low Feed Efficient Swine within the Same Genetic Line.
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Current as well as past studies have provided evidence for a connection between macroeconomic/agricultural and cellular/biochemical basis of feed efficiency (FE; gain:feed) in farm animal production. Our investigation of respiratory chain activity, mitochondrial protein oxidation and protein expression was an expansion to the subcellular/molecular level. In this study we investigated the entire complex (Cx) of the electron transport chain (ETC) for differences in Cx activities in mitochondria isolated from skeletal muscle in high (HFE) and low (LFE) feed efficient swine within the same genetic line. Review of literature provided information for the connection between feed efficiency, mitochondrial function, and muscle type. Using UV spectrophotometry, gel electrophoresis and western blotting methods, we were able to study mitochondria from swine Longissimus (LM) and Spinalis dorsi muscles for differences in respiratory chain complex (I - V) activities, protein oxidation and protein expression of eleven subunits of the five electron transport chain complexes. We observed muscle dependent differences in Cx I and II, protein carbonyls and five subunits of the ETC (Cx I 30, Cor II, Cox IV, alpha and beta ATPase). We concluded after comparing our results with findings in literature, that respiratory chain activity protein oxidation and expression of protein subunits may be both skeletal muscle as well as a species dependent. These differential expressions may be the result of increased incidents of reactive oxygen species causing defects in Cx I or Cx II that may precipitate significant mitochondrial events and cellular pathways that provide links to the phenotypic expression of feed efficiency. Of high interest in relation to the mitochondrial link to FE are apoptotic, mTor and myostatin pathways.
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