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Insights into social insects from the genome of the honeybee Apis mellifera

生物 基因组 基因 昆虫 进化生物学 蜜蜂 遗传学 转座因子 交配 人口 DNA甲基化 生态学 基因表达 人口学 社会学
作者
George M. Weinstock,Gene E. Robinson,George M. Weinstock,Kim C. Worley,Jay D. Evans,Ryszard Maleszka,Hugh M. Robertson,Daniel Weaver,Martin Beye,Peer Bork,Christine G. Elsik,Klaus Hartfelder,Greg J. Hunt,Evgeny M. Zdobnov,Gro V. Amdam,Márcia Maria Gentile Bitondi,Anita M. Collins,Alexandre S. Cristino,H. Michael G. Lattorff,Carlos Henrique Lobo,Robin F. A. Moritz,Francis de Morais Franco Nunes,Robert E. Page,Zilá Luz Paulino Simões,Diana E. Wheeler,Piero Carninci,Shiro Fukuda,Yoshihide Hayashizaki,Chikatoshi Kai,Jun Kawai,Naoko Sakazume,Daisuke Sasaki,Michihira Tagami,Jaroslav Klaudiny,Geert Baggerman,Kyle T. Beggs,Guy Bloch,Giuseppe Cazzamali,Mira Cohen,Mark D. Drapeau,Dorothea Eisenhardt,Christine Emore,Michael A. Ewing,Susan E. Fahrbach,Sylvain Forêt,Cornelis J. P. Grimmelikhuijzen,Evgeny M. Zdobnov,Amanda B. Hummon,Jurgen Huybrechts,Andrew K. Jones,Tatsuhiko Kadowaki,N. Kaplan,Robert Kucharski,Gérard Leboulle,Michal Linial,J. Troy Littleton,Alison R. Mercer,Timothy A. Richmond,Sandra L. Rodriguez‐Zas,Elad B. Rubin,David B. Sattelle,David I. Schlipalius,Liliane Schoofs,Yair Shemesh,Jonathan V. Sweedler,Rodrigo Velarde,Peter Verleyen,Evy Vierstraete,Michael Williamson,Seth A. Ament,Susan J. Brown,Miguel Corona,Peter K. Dearden,William A. Dunn,Michelle M. Elekonich,Tomoko Fujiyuki,I. Gattermeier,Tanja Gempe,Martin Hasselmann,Eriko Kage,Azusa Kamikouchi,Takeo Kubo,Takekazu Kunieda,Marcé D. Lorenzen,Natalia V. Milshina,Mizue Morioka,Kazuhiko Ohashi,Ross Overbeek,Christian Roß,Morten Schiøtt,Teresa D. Shippy,Hideaki Takeuchi,Amy L. Toth,Judith H. Willis,Megan J. Wilson,Karl Gordon,Ivica Letunić,Kevin J. Hackett,Jane L. Peterson,Adam L. Felsenfeld,David Shteynberg,Michel Solignac,Richa Agarwala,J.M. Cornuet,Monique Monnerot,Florence Mougel,Justin Reese,D. Vautrin,Joseph J. Gillespie,Jamie J. Cannone,Robin R. Gutell,Tamsin E. M. Jones,Michael B. Eisen,Venky N. Iyer,Vivek Iyer,Peter Kosarev,Aaron J. Mackey,Victor Solovyev,Alexandre Souvorov,Katherine A. Aronstein,Katarína Bíliková,Yan Ping Chen,Andrew G. Clark,Laura Decanini,William M Gelbart,Charles Hetru,Dan Hultmark,J.L. Imler,Haobo Jiang,Michael R. Kanost,Kiyoshi Kimura,Brian P. Lazzaro,Dawn Lopez,Jozef Šimúth,Graham Thompson,Zhen Zou,Pieter de Jong,Erica Sodergren,Aleksander Milosavljevic,Sarah Hunt,Kazutoyo Osoegawa,Stephen Richards,Chung Li Shu,Laurent Duret,Eran Elhaik,Dan Graur,Juan Manuel Anzola,Kathryn S. Campbell,Kevin L. Childs,Derek Collinge,Emily Hodges,C. Michael Dickens,C. Michael Dickens,Christina M. Grozinger,Peter Lloyd Jones,Mireia Jordà,Xu Ling,Beverly B. Matthews,Jonathan Miller,Craig A. Mizzen,Miguel A. Peinado,Megan Riddle,Susan M Russo,Andrew J. Schroeder,Andrew J. Schroeder,Pei Li Joe Zhou,Pinglei Zhou,Huaiyang Jiang,Paul Kitts,Barbara J. Ruef,Anand Venkatraman,Lan Zhang,Lan Zhang,Charles W. Whitfield,Susanta K. Behura,Stewart H. Berlocher,Walter S. Sheppard,Deborah R. Smith,Andrew V. Suarez,Neil D. Tsutsui,Xuehong Wei,David A. Wheeler,Paul Havlak,Bingshan Li,Yue Liu,Angela Jovilet,Sandra Lee,Lynne V. Nazareth,Ling Pu,Trent Newman,Viktor Štolc,Thomas C. Newman,Manoj P. Samanta,Waraporn Tongprasit,Charles Claudianos,May R. Berenbaum,Sunita Biswas,Dirk C. de Graaf,René Feyereisen,Reed M. Johnson,John G. Oakeshott,Hilary Ranson,Mary A. Schuler,Donna M. Muzny,Joseph Chacko,Clay Davis,Huyen Dinh,Rachel Gill,Judith Hernandez,Sandra Hines,Freya J. I. Fowkes,Lesley E Jackson,Christie Kovar,Lora Lewis,George K. Miner,Margaret Morgan,Ngoc B. Nguyen,Geoffrey Okwuonu,Heidi Paul,Jireh Santibanez,G. Savery,Jireh Santibanez,Donna Villasana,Rita Wright
出处
期刊:Nature [Nature Portfolio]
卷期号:443 (7114): 931-949 被引量:1787
标识
DOI:10.1038/nature05260
摘要

Here we report the genome sequence of the honeybee Apis mellifera, a key model for social behaviour and essential to global ecology through pollination. Compared with other sequenced insect genomes, the A. mellifera genome has high A+T and CpG contents, lacks major transposon families, evolves more slowly, and is more similar to vertebrates for circadian rhythm, RNA interference and DNA methylation genes, among others. Furthermore, A. mellifera has fewer genes for innate immunity, detoxification enzymes, cuticle-forming proteins and gustatory receptors, more genes for odorant receptors, and novel genes for nectar and pollen utilization, consistent with its ecology and social organization. Compared to Drosophila, genes in early developmental pathways differ in Apis, whereas similarities exist for functions that differ markedly, such as sex determination, brain function and behaviour. Population genetics suggests a novel African origin for the species A. mellifera and insights into whether Africanized bees spread throughout the New World via hybridization or displacement.
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