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Transcriptomic and epigenomic characterization of the developing bat wing
by
Schlebusch, Stephen A
, Nishizaki, Sierra
, Mason, Mandy K
, Gill, Zoe
, Carbone, Lucia
, Ahituv, Nadav
, Friedrich, Tara
, Booker, Betty M
, Parker, Ash V
, VanderMeer, Julia E
, Nevonen, Kimberly A
, Terhune, Elizabeth
, Illing, Nicola
, Muswamba-Nday, Christiane
, Eckalbar, Walter L
, Makki, Nadja
, Pollard, Katherine S
, Wall, Jeff D
in
45/15
/ 45/23
/ 45/90
/ 45/91
/ 631/136/2060
/ 631/208/200
/ Agriculture
/ Animal Genetics and Genomics
/ Animals
/ Bats
/ Biomedicine
/ Cancer Research
/ Chiroptera - embryology
/ Chiroptera - genetics
/ Deoxyribonucleic acid
/ DNA
/ Embryonic Development - genetics
/ Epigenesis, Genetic
/ Experiments
/ Gene expression
/ Gene Expression Profiling
/ Gene Function
/ Genetic aspects
/ Genetic transcription
/ Genome
/ Genomes
/ Genomics
/ Genotype
/ Growth
/ Human Genetics
/ Male
/ Miniopterus
/ Morphogenesis
/ Morphology
/ Observations
/ Properties
/ Regulatory Sequences, Nucleic Acid
/ RNA, Long Noncoding
/ Rodents
/ Sequence Analysis, RNA
/ Transcriptome
/ Wings (Animal)
/ Wings, Animal - embryology
2016
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Transcriptomic and epigenomic characterization of the developing bat wing
by
Schlebusch, Stephen A
, Nishizaki, Sierra
, Mason, Mandy K
, Gill, Zoe
, Carbone, Lucia
, Ahituv, Nadav
, Friedrich, Tara
, Booker, Betty M
, Parker, Ash V
, VanderMeer, Julia E
, Nevonen, Kimberly A
, Terhune, Elizabeth
, Illing, Nicola
, Muswamba-Nday, Christiane
, Eckalbar, Walter L
, Makki, Nadja
, Pollard, Katherine S
, Wall, Jeff D
in
45/15
/ 45/23
/ 45/90
/ 45/91
/ 631/136/2060
/ 631/208/200
/ Agriculture
/ Animal Genetics and Genomics
/ Animals
/ Bats
/ Biomedicine
/ Cancer Research
/ Chiroptera - embryology
/ Chiroptera - genetics
/ Deoxyribonucleic acid
/ DNA
/ Embryonic Development - genetics
/ Epigenesis, Genetic
/ Experiments
/ Gene expression
/ Gene Expression Profiling
/ Gene Function
/ Genetic aspects
/ Genetic transcription
/ Genome
/ Genomes
/ Genomics
/ Genotype
/ Growth
/ Human Genetics
/ Male
/ Miniopterus
/ Morphogenesis
/ Morphology
/ Observations
/ Properties
/ Regulatory Sequences, Nucleic Acid
/ RNA, Long Noncoding
/ Rodents
/ Sequence Analysis, RNA
/ Transcriptome
/ Wings (Animal)
/ Wings, Animal - embryology
2016
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Transcriptomic and epigenomic characterization of the developing bat wing
by
Schlebusch, Stephen A
, Nishizaki, Sierra
, Mason, Mandy K
, Gill, Zoe
, Carbone, Lucia
, Ahituv, Nadav
, Friedrich, Tara
, Booker, Betty M
, Parker, Ash V
, VanderMeer, Julia E
, Nevonen, Kimberly A
, Terhune, Elizabeth
, Illing, Nicola
, Muswamba-Nday, Christiane
, Eckalbar, Walter L
, Makki, Nadja
, Pollard, Katherine S
, Wall, Jeff D
in
45/15
/ 45/23
/ 45/90
/ 45/91
/ 631/136/2060
/ 631/208/200
/ Agriculture
/ Animal Genetics and Genomics
/ Animals
/ Bats
/ Biomedicine
/ Cancer Research
/ Chiroptera - embryology
/ Chiroptera - genetics
/ Deoxyribonucleic acid
/ DNA
/ Embryonic Development - genetics
/ Epigenesis, Genetic
/ Experiments
/ Gene expression
/ Gene Expression Profiling
/ Gene Function
/ Genetic aspects
/ Genetic transcription
/ Genome
/ Genomes
/ Genomics
/ Genotype
/ Growth
/ Human Genetics
/ Male
/ Miniopterus
/ Morphogenesis
/ Morphology
/ Observations
/ Properties
/ Regulatory Sequences, Nucleic Acid
/ RNA, Long Noncoding
/ Rodents
/ Sequence Analysis, RNA
/ Transcriptome
/ Wings (Animal)
/ Wings, Animal - embryology
2016
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Transcriptomic and epigenomic characterization of the developing bat wing
Journal Article
Transcriptomic and epigenomic characterization of the developing bat wing
2016
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Overview
Nadav Ahituv, Nicola Illing, Jeff Wall and colleagues sequence the genome of the bat
Miniopterus natalensis
and perform RNA-seq and ChIP-seq (H3K27ac and H3K27me3) analyses on its developing forelimb and hindlimb autopods at sequential embryonic stages. Their analyses identify genomic regions that may contribute to bat wing formation.
Bats are the only mammals capable of powered flight, but little is known about the genetic determinants that shape their wings. Here we generated a genome for
Miniopterus natalensis
and performed RNA-seq and ChIP-seq (H3K27ac and H3K27me3) analyses on its developing forelimb and hindlimb autopods at sequential embryonic stages to decipher the molecular events that underlie bat wing development. Over 7,000 genes and several long noncoding RNAs, including Tbx5-as1 and Hottip, were differentially expressed between forelimb and hindlimb, and across different stages. ChIP-seq analysis identified thousands of regions that are differentially modified in forelimb and hindlimb. Comparative genomics found 2,796 bat-accelerated regions within H3K27ac peaks, several of which cluster near limb-associated genes. Pathway analyses highlighted multiple ribosomal proteins and known limb patterning signaling pathways as differentially regulated and implicated increased forelimb mesenchymal condensation in differential growth. In combination, our work outlines multiple genetic components that likely contribute to bat wing formation, providing insights into this morphological innovation.
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