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spelling sg-nus-scholar.10635-1616792024-04-03T09:35:42Z Wings, horns, and butterfly eyespots:How do complex traits evolve? Monteiro A. Podlaha O. BIOLOGICAL SCIENCES beta galactosidase decapentaplegic protein DNA Drosophila protein transcription factor Six3 butterfly development developmental genetics Drosophila melanogaster evolutionary adaptation forelimb gene expression gene interaction gene mapping gene mutation gene structure genetic trait horn insect morphogenesis morphological trait nonhuman pleiotropy regulatory DNA sequence regulatory mechanism regulatory sequence reproduction review survival Xenopus adaptation animal article butterfly forelimb gene expression regulation gene regulatory network genetic variability genetics histology horn molecular evolution physiology Adaptation, Physiological Animals Body Patterning Butterflies Evolution, Molecular Gene Expression Regulation, Developmental Gene Regulatory Networks Genetic Variation Horns Morphogenesis Wing 10.1371/journal.pbio.1000037 PLoS Biology 7 2 209-216 2019-11-06T09:36:42Z 2019-11-06T09:36:42Z 2009 Review Monteiro A., Podlaha O. (2009). Wings, horns, and butterfly eyespots:How do complex traits evolve?. PLoS Biology 7 (2) : 209-216. ScholarBank@NUS Repository. https://doi.org/10.1371/journal.pbio.1000037 15449173 https://scholarbank.nus.edu.sg/handle/10635/161679 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20191101
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic beta galactosidase
decapentaplegic protein
DNA
Drosophila protein
transcription factor Six3
butterfly
development
developmental genetics
Drosophila melanogaster
evolutionary adaptation
forelimb
gene expression
gene interaction
gene mapping
gene mutation
gene structure
genetic trait
horn
insect
morphogenesis
morphological trait
nonhuman
pleiotropy
regulatory DNA sequence
regulatory mechanism
regulatory sequence
reproduction
review
survival
Xenopus
adaptation
animal
article
butterfly
forelimb
gene expression regulation
gene regulatory network
genetic variability
genetics
histology
horn
molecular evolution
physiology
Adaptation, Physiological
Animals
Body Patterning
Butterflies
Evolution, Molecular
Gene Expression Regulation, Developmental
Gene Regulatory Networks
Genetic Variation
Horns
Morphogenesis
Wing
spellingShingle beta galactosidase
decapentaplegic protein
DNA
Drosophila protein
transcription factor Six3
butterfly
development
developmental genetics
Drosophila melanogaster
evolutionary adaptation
forelimb
gene expression
gene interaction
gene mapping
gene mutation
gene structure
genetic trait
horn
insect
morphogenesis
morphological trait
nonhuman
pleiotropy
regulatory DNA sequence
regulatory mechanism
regulatory sequence
reproduction
review
survival
Xenopus
adaptation
animal
article
butterfly
forelimb
gene expression regulation
gene regulatory network
genetic variability
genetics
histology
horn
molecular evolution
physiology
Adaptation, Physiological
Animals
Body Patterning
Butterflies
Evolution, Molecular
Gene Expression Regulation, Developmental
Gene Regulatory Networks
Genetic Variation
Horns
Morphogenesis
Wing
Monteiro A.
Podlaha O.
Wings, horns, and butterfly eyespots:How do complex traits evolve?
description 10.1371/journal.pbio.1000037
author2 BIOLOGICAL SCIENCES
author_facet BIOLOGICAL SCIENCES
Monteiro A.
Podlaha O.
format Review
author Monteiro A.
Podlaha O.
author_sort Monteiro A.
title Wings, horns, and butterfly eyespots:How do complex traits evolve?
title_short Wings, horns, and butterfly eyespots:How do complex traits evolve?
title_full Wings, horns, and butterfly eyespots:How do complex traits evolve?
title_fullStr Wings, horns, and butterfly eyespots:How do complex traits evolve?
title_full_unstemmed Wings, horns, and butterfly eyespots:How do complex traits evolve?
title_sort wings, horns, and butterfly eyespots:how do complex traits evolve?
publishDate 2019
url https://scholarbank.nus.edu.sg/handle/10635/161679
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