Arthropods: Developmental Diversity within a (Super) Phylum
The expression patterns of developmental genes provide new markers that address the homology of body parts and provide clues as to how body plans have evolved. Such markers support the idea that insect wings evolved from limbs but refute the idea that insect and crustacean jaws are fundamentally dif...
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Published in: | Proceedings of the National Academy of Sciences - PNAS Vol. 97; no. 9; pp. 4438 - 4441 |
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Format: | Journal Article |
Language: | English |
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National Academy of Sciences of the United States of America
25-04-2000
National Acad Sciences National Academy of Sciences The National Academy of Sciences |
Series: | Special Feature |
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Abstract | The expression patterns of developmental genes provide new markers that address the homology of body parts and provide clues as to how body plans have evolved. Such markers support the idea that insect wings evolved from limbs but refute the idea that insect and crustacean jaws are fundamentally different in structure. They also confirm that arthropod tagmosis reflects underlying patterns of Hox gene regulation but they do not yet resolve to what extent Hox expression domains may serve to define segment homologies. |
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AbstractList | The expression patterns of developmental genes provide new markers that address the homology of body parts and provide clues as to how body plans have evolved. Such markers support the idea that insect wings evolved from limbs but refute the idea that insect and crustacean jaws are fundamentally different in structure. They also confirm that arthropod tagmosis reflects underlying patterns of Hox gene regulation but they do not yet resolve to what extent Hox expression domains may serve to define segment homologies. The expression patterns of developmental genes provide new markers that address the homology of body parts and provide clues as to how body plans have evolved. Such markers support the idea that insect wings evolved from limbs but refute the idea that insect and crustacean jaws are fundamentally different in structure. They also confirm that arthropod tagmosis reflects underlying patterns of Hox gene regulation but they do not yet resolve to what extent Hox expression domains may serve to define segment homologies. The expression patterns of developmental genes provide new markers that address the homology of body parts and provide clues as to how body plans have evolved. Such markers support the idea that insect wings evolved from limbs but refute the idea that insect and crustacean jaws are fundamentally different in structure. |
Author | Akam, Michael |
AuthorAffiliation | Laboratory for Development and Evolution, University Museum of Zoology, Department of Zoology, Downing Street, Cambridge, CB2 3EJ, United Kingdom |
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BackLink | https://www.ncbi.nlm.nih.gov/pubmed/10781039$$D View this record in MEDLINE/PubMed |
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SubjectTerms | Animals Appendages Arthropods Arthropods - classification Arthropods - genetics Arthropods - growth & development Biological Evolution Body Patterning Crustacea Crustaceans Evolution Exoskeletons Fossils Gene expression Genes Genes, Homeobox Genetic Variation Hox gene Hox protein Insect genetics Insect morphology Insecta Invertebrates Mandible Molecular biology Perspectives Zoology |
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Title | Arthropods: Developmental Diversity within a (Super) Phylum |
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