Serveur d'exploration SRAS

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Comparative analysis of bat genomes provides insight into the evolution of flight and immunity.

Identifieur interne : 001972 ( Main/Exploration ); précédent : 001971; suivant : 001973

Comparative analysis of bat genomes provides insight into the evolution of flight and immunity.

Auteurs : Guojie Zhang [République populaire de Chine] ; Christopher Cowled ; Zhengli Shi ; Zhiyong Huang ; Kimberly A. Bishop-Lilly ; Xiaodong Fang ; James W. Wynne ; Zhiqiang Xiong ; Michelle L. Baker ; Wei Zhao ; Mary Tachedjian ; Yabing Zhu ; Peng Zhou ; Xuanting Jiang ; Justin Ng ; Lan Yang ; Lijun Wu ; Jin Xiao ; Yue Feng ; Yuanxin Chen ; Xiaoqing Sun ; Yong Zhang ; Glenn A. Marsh ; Gary Crameri ; Christopher C. Broder ; Kenneth G. Frey ; Lin-Fa Wang ; Jun Wang

Source :

RBID : pubmed:23258410

Descripteurs français

English descriptors

Abstract

Bats are the only mammals capable of sustained flight and are notorious reservoir hosts for some of the world's most highly pathogenic viruses, including Nipah, Hendra, Ebola, and severe acute respiratory syndrome (SARS). To identify genetic changes associated with the development of bat-specific traits, we performed whole-genome sequencing and comparative analyses of two distantly related species, fruit bat Pteropus alecto and insectivorous bat Myotis davidii. We discovered an unexpected concentration of positively selected genes in the DNA damage checkpoint and nuclear factor κB pathways that may be related to the origin of flight, as well as expansion and contraction of important gene families. Comparison of bat genomes with other mammalian species has provided new insights into bat biology and evolution.

DOI: 10.1126/science.1230835
PubMed: 23258410


Affiliations:


Links toward previous steps (curation, corpus...)


Le document en format XML

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<name sortKey="Fang, Xiaodong" sort="Fang, Xiaodong" uniqKey="Fang X" first="Xiaodong" last="Fang">Xiaodong Fang</name>
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<name sortKey="Baker, Michelle L" sort="Baker, Michelle L" uniqKey="Baker M" first="Michelle L" last="Baker">Michelle L. Baker</name>
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<name sortKey="Zhao, Wei" sort="Zhao, Wei" uniqKey="Zhao W" first="Wei" last="Zhao">Wei Zhao</name>
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<name sortKey="Zhou, Peng" sort="Zhou, Peng" uniqKey="Zhou P" first="Peng" last="Zhou">Peng Zhou</name>
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<name sortKey="Ng, Justin" sort="Ng, Justin" uniqKey="Ng J" first="Justin" last="Ng">Justin Ng</name>
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<name sortKey="Zhang, Yong" sort="Zhang, Yong" uniqKey="Zhang Y" first="Yong" last="Zhang">Yong Zhang</name>
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<term>Biological Evolution</term>
<term>Chiroptera (genetics)</term>
<term>Chiroptera (immunology)</term>
<term>Chiroptera (physiology)</term>
<term>DNA Damage (genetics)</term>
<term>DNA Repair (genetics)</term>
<term>Echolocation</term>
<term>Evolution, Molecular</term>
<term>Flight, Animal</term>
<term>Genetic Speciation</term>
<term>Genome</term>
<term>Hibernation (genetics)</term>
<term>High-Throughput Nucleotide Sequencing</term>
<term>Immunity, Innate (genetics)</term>
<term>Male</term>
<term>Molecular Sequence Data</term>
<term>Phylogeny</term>
<term>Reactive Oxygen Species (metabolism)</term>
<term>Selection, Genetic</term>
<term>Sequence Analysis, DNA</term>
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<term>Altération de l'ADN (génétique)</term>
<term>Analyse de séquence d'ADN</term>
<term>Animaux</term>
<term>Chiroptera (génétique)</term>
<term>Chiroptera (immunologie)</term>
<term>Chiroptera (physiologie)</term>
<term>Données de séquences moléculaires</term>
<term>Espèces réactives de l'oxygène (métabolisme)</term>
<term>Génome</term>
<term>Hibernation (génétique)</term>
<term>Immunité innée (génétique)</term>
<term>Mâle</term>
<term>Phylogénie</term>
<term>Réparation de l'ADN (génétique)</term>
<term>Spéciation génétique</term>
<term>Spécificité d'espèce</term>
<term>Sélection génétique</term>
<term>Séquence d'acides aminés</term>
<term>Séquençage nucléotidique à haut débit</term>
<term>Vol animal</term>
<term>Écholocation</term>
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<term>DNA Damage</term>
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<term>Amino Acid Sequence</term>
<term>Animals</term>
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<term>Genetic Speciation</term>
<term>Genome</term>
<term>High-Throughput Nucleotide Sequencing</term>
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<term>Molecular Sequence Data</term>
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<term>Mâle</term>
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<term>Séquençage nucléotidique à haut débit</term>
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<front>
<div type="abstract" xml:lang="en">Bats are the only mammals capable of sustained flight and are notorious reservoir hosts for some of the world's most highly pathogenic viruses, including Nipah, Hendra, Ebola, and severe acute respiratory syndrome (SARS). To identify genetic changes associated with the development of bat-specific traits, we performed whole-genome sequencing and comparative analyses of two distantly related species, fruit bat Pteropus alecto and insectivorous bat Myotis davidii. We discovered an unexpected concentration of positively selected genes in the DNA damage checkpoint and nuclear factor κB pathways that may be related to the origin of flight, as well as expansion and contraction of important gene families. Comparison of bat genomes with other mammalian species has provided new insights into bat biology and evolution.</div>
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HfdIndexSelect -h $EXPLOR_AREA/Data/Main/Exploration/RBID.i   -Sk "pubmed:23258410" \
       | HfdSelect -Kh $EXPLOR_AREA/Data/Main/Exploration/biblio.hfd   \
       | NlmPubMed2Wicri -a SrasV1 

Wicri

This area was generated with Dilib version V0.6.33.
Data generation: Tue Apr 28 14:49:16 2020. Site generation: Sat Mar 27 22:06:49 2021