Biochemical variability between two Egyptian Stenodactylus species (Reptilia: Gekkonidae) inhabiting North Sinai

Polyacrylamide gel electrophoreses for malate dehydrogenase (Mdh) and beta-esterase ( beta -Est) isoenzymes were conducted for biochemical differentiation between two Stenodactylus gekkonid species inhabiting North Sinai of Egypt. Total lipids and proteins of liver and muscle tissues in both species...

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Published inAdvances in bioscience and biotechnology Vol. 4; no. 11; pp. 974 - 978
Main Authors Kadry, Mohamed A. M., Amer, Sayed A. M.
Format Journal Article
LanguageEnglish
Published 01.11.2013
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Abstract Polyacrylamide gel electrophoreses for malate dehydrogenase (Mdh) and beta-esterase ( beta -Est) isoenzymes were conducted for biochemical differentiation between two Stenodactylus gekkonid species inhabiting North Sinai of Egypt. Total lipids and proteins of liver and muscle tissues in both species were also analyzed. A total of three Mdh isoforms were recorded in the analysis, in which the activity of Mdh-2 and Mdh-3 seemed to be higher in S. petrii than in S. sthenodactylus. This high activity could be supported by the significant increase in the total lipids and proteins in liver and muscle tissues of the species. It may thus be reasonable to suppose that S. petrii is more active, energetic and adaptable in the desert habitat than S. sthenodactylus. beta -Est showed six fractions in S. petrii and only one fraction in S. sthenodactylus. It is therefore noticeable that beta -Est is more highly expressed in S. petrii than in S. sthenodactylus.
AbstractList Polyacrylamide gel electrophoreses for malate dehydrogenase (Mdh) and beta-esterase ( beta -Est) isoenzymes were conducted for biochemical differentiation between two Stenodactylus gekkonid species inhabiting North Sinai of Egypt. Total lipids and proteins of liver and muscle tissues in both species were also analyzed. A total of three Mdh isoforms were recorded in the analysis, in which the activity of Mdh-2 and Mdh-3 seemed to be higher in S. petrii than in S. sthenodactylus. This high activity could be supported by the significant increase in the total lipids and proteins in liver and muscle tissues of the species. It may thus be reasonable to suppose that S. petrii is more active, energetic and adaptable in the desert habitat than S. sthenodactylus. beta -Est showed six fractions in S. petrii and only one fraction in S. sthenodactylus. It is therefore noticeable that beta -Est is more highly expressed in S. petrii than in S. sthenodactylus.
Author Kadry, Mohamed A. M.
Amer, Sayed A. M.
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Snippet Polyacrylamide gel electrophoreses for malate dehydrogenase (Mdh) and beta-esterase ( beta -Est) isoenzymes were conducted for biochemical differentiation...
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SubjectTerms Deserts
Gekkonidae
Title Biochemical variability between two Egyptian Stenodactylus species (Reptilia: Gekkonidae) inhabiting North Sinai
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