The vitelline membranes ofAedes aegyptiandDrosophila melanogaster:A comparative review
Marten J. Edwards
Abstract
Marten J. Edwards
Abstract
Summary The insect eggshell provides a model system for the study of gene regulation because several proteins are synthesized in an ordered spatial and temporal pattern within a single tissue, the follicular epithelium. Progress is being made towards an understanding of Aedes aegypti and Drosophila melanogaster vitelline membrane formation. The vitelline membrane is the innermost layer of the eggshells of A. aegypti and D. melanogaster. Genes encoding three A. aegypti and four D. melanogaster vitelline membrane proteins have been cloned and sequenced. Significant similarity is observed between the A. aegypti and D. melanogaster vitelline membrane genes. Both families contain highly conserved regions of 34 and 38 amino acids in A. aegypti and D. melanogaster respectively. The protein composition of the two families are both rich in proline and alanine, but differ in their serine and histidine compositions. The regulation of vitelline membrane gene expression in A. aegypti and D. melanogaster is compared.
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Summary The insect eggshell provides a model system for the study of gene regulation because several proteins are synthesized in an ordered spatial and temporal pattern within a single tissue, the follicular epithelium. Progress is being made towards an understanding of Aedes aegypti and Drosophila melanogaster vitelline membrane formation. The vitelline membrane is the innermost layer of the eggshells of A. aegypti and D. melanogaster. Genes encoding three A. aegypti and four D. melanogaster vitelline membrane proteins have been cloned and sequenced. Significant similarity is observed between the A. aegypti and D. melanogaster vitelline membrane genes. Both families contain highly conserved regions of 34 and 38 amino acids in A. aegypti and D. melanogaster respectively. The protein composition of the two families are both rich in proline and alanine, but differ in their serine and histidine compositions. The regulation of vitelline membrane gene expression in A. aegypti and D. melanogaster is compared.
Key concepts: Aedes aegypti, Drosophila melanogaster, Vitelline membrane, Biology, Melanogaster, Cell biology, Gene, Genetics