2022年油菜基因组序列文件 .pdf
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1、DOI: 10.1126/science.1253435, 950 (2014);345Science et al.Boulos Chalhouboilseed genomeBrassica napusEarly allopolyploid evolution in the post-Neolithic This copy is for your personal, non-commercial use only.clicking here.colleagues, clients, or customers by , you can order high-quality copies for
2、yourIf you wish to distribute this article to othershere.following the guidelines can be obtained byPermission to republish or repurpose articles or portions of articles):August 22, 2014www.sciencemag.org (this information is current as ofThe following resources related to this article are available
3、 online athttp:/www.sciencemag.org/content/345/6199/950.full.htmlversion of this article at: including high-resolution figures, can be found in the onlineUpdated information and services, http:/www.sciencemag.org/content/suppl/2014/08/20/345.6199.950.DC1.html can be found at: Supporting Online Mater
4、ial http:/www.sciencemag.org/content/345/6199/950.full.html#ref-list-1, 51 of which can be accessed free:cites 138 articlesThis article http:/www.sciencemag.org/cgi/collection/geneticsGeneticshttp:/www.sciencemag.org/cgi/collection/botanyBotanysubject collections:This article appears in the followin
5、g registered trademark of AAAS. is aScience2014 by the American Association for the Advancement of Science; all rights reserved. The title CopyrightAmerican Association for the Advancement of Science, 1200 New York Avenue NW, Washington, DC 20005. (print ISSN 0036-8075; online ISSN 1095-9203) is pub
6、lished weekly, except the last week in December, by theScience onAugust22,2014www.sciencemag.orgDownloadedfrom名师资料总结 - - -精品资料欢迎下载 - - - - - - - - - - - - - - - - - - 名师精心整理 - - - - - - - 第 1 页,共 5 页 - - - - - - - - - PLANTGENETICSEarly allopolyploid evolution in thepost-Neolithic Brassica napusoils
7、eed genomeBoulosChalhoub,1* ? FranceDenoeud,2,3,4* ShengyiLiu,5* IsobelA. P. Parkin,6?HaibaoTang,7,8XiyinWang,9,10JulienChiquet,11HarryBelcram,1ChaoboTong,5BirgitSamans,12MargotCorr a,2CorinneDa Silva,2Jr myJust,1CyrilFalentin,13Chu ShinKoh,14IsabelleLe Clainche,1MariaBernard,2PascalBento,2BenjaminN
8、oel,2KarineLabadie,2AdrianaAlberti,2MathieuCharles,15DominiqueArnaud,1HuiGuo,9ChristianDaviaud,16SalmanAlamery,17KamelJabbari,1,18MeixiaZhao,19PatrickP. Edger,20HoudaChelaifa,1DavidTack,21GillesLassalle,13ImenMestiri,1NicolasSchnel,13Marie-ChristineLe Paslier,15GuangyiFan,22VictorRenault,23PhilippeE
9、. Bayer,17AgnieszkaA. Golicz,17SahanaManoli,17Tae-HoLee,9VinhHa DinhThi,1SmahaneChalabi,1QiongHu,5ChuchuanFan,24Reece Tollenaere,17YunhaiLu,1ChristopheBattail,2JinxiongShen,24ChristineH. D. Sidebottom,14XinfaWang,5Aurlie Canaguier,1Aurlie Chauveau,15Aurlie Brard,15Gwena?lleDeniot,13MeiGuan,25Zhongso
10、ngLiu,25FengmingSun,22YongPyo Lim,26EricLyons,27ChristopherD. Town,7IanBancroft,28XiaowuWang,29JinlingMeng,24JianxinMa,19J. ChrisPires,30GrahamJ. King,31DominiqueBrunel,15Rgine Delourme,13MichelRenard,13Jean-MarcAury,2KeithL.Adams,21JacquelineBatley,17,32Rod J. Snowdon,12JorgTost,16DavidEdwards,17,3
11、2? YongmingZhou,24? WeiHua,5?AndrewG. Sharpe,14? AndrewH. Paterson,9? ChunyunGuan,25? PatrickWincker2,3,4?Oilseedrape(BrassicanapusL.) was formed7500years ago by hybridizationbetweenB. rapa and B. oleracea , followedby chromosomedoubling,a processknownas allopolyploidy.Togetherwithmoreancientpolyplo
12、idizations,thisconferredan aggregate72 genomemultiplicationsincethe originof angiospermsand high gene content.We examinedtheB. napus genomeand the consequencesof its recentduplication.The constituentAnand Cnsubgenomesare engagedin subtlestructural,functional,and epigeneticcross-talk,withabundanthome
13、ologousexchanges.Incipientgene loss and expressiondivergencehave begun.Selectionin B. napusoilseedtypeshas acceleratedthe loss of glucosinolategenes, whilepreservingexpansionof oil biosynthesisgenes. These processesprovideinsightsintoallopolyploidevolutionand its relationshipwithcropdomesticationand
14、 improvement.The Brassicaceaeare alargeeudicotfamily(1)and includethe modelplantArabi-dopsis thaliana.Brassicashaveapropen-sity for genomeduplications(Fig.1) andgenomemergers(2).Theyare majorcon-tributorstothe humandiet and wereamongthe earliestcultigens(3).B. napus(genomeAnAnCnCn)was formedbyrecent
15、allopolyploidybetweenancestorsofB.oleracea(Mediterraneancabbage,genomeCoCo)andB. rapa(Asiancabbageorturnip,genomeArAr)and is polyphyletic(2,4), withspontaneousformationregardedby Darwinas an exampleofunconsciousselection(5).CultivationbeganinEuropeduringthe MiddleAgesand spreadworld-wide.Diversifyin
16、gselectiongaverise to oilseedrape(canola),rutabaga,fodder rape,andkale mor-photypesgrownfor oil, fodder,and food (4,6).Thehomozygous B. napusgenomeof Euro-peanwinteroilseedcultivarDarmor-bzh wasassembledwith long-read700basepairs(bp)454 GS-FLX+Titanium(Roche,Basel,Switzerland)and Sangersequence(tabl
17、esS1 to S5 and figs.S1 toS3) (7).Correctionand gap fillingused79 Gb ofIllumina(SanDiego,CA)HiSeq sequence.Afinalassemblyof 849.7Mb was obtainedwith SOAP(8)and Newbler(Roche),with 89%nongappedse-quence(tablesS2 and S3).Uniquemappingof5 nonassembled454 sequencesfromB.rapa(Chiifu)orB. oleracea(TO1000)a
18、ssignedmostof the 20,702B. napusscaffoldsto eitherthe An(8294)or the Cn(9984)subgenomes(tablesS4 andS5 and fig. S3).The assemblycovers79%of the1130-Mbgenomeand includes95.6%ofBrassicaex-pressedsequencetags(ESTs)(7). A single-nucleotidepolymorphism(SNP)map (tablesS6 toS9 andfigs.S4 to S8) genetically
19、anchored712.3Mb (84%)of the genomeassembly,yieldingpseudomoleculesforthe19 chromosomes(tableS10).The assembledCnsubgenome(525.8Mb) islargerthan the Ansubgenome(314.2Mb), con-sistentwith the relativesizesof the assembledCogenomeofB. oleracea(540 Mb, 85%of the630-Mbgenome)andtheArgenomeofB. rapa(312Mb
20、, 59%of the 530-Mbgenome)(911). TheB. napusassemblycontains34.8%transposableelements(TEs),lessthan the 40%estimatedfromraw reads(tablesS11to S14)(7),with asymmetricdistributioninthe Anand Cnsubgenomes(tableS12)as in the progenitorgenomes(911). A smallTEfractionhas proliferatedsinceB. napusseparatedf
21、romits progenitors(7), at lowerratesin theB.napussubgenomesthan the correspondingprogenitorgenomes(tableS14and figs. S9 andS10).TheB. napusgenomecontains101,040genemodelsestimatedfrom35.5Gb of RNAsequencing(RNA-seq)data (tablesS15and S16)incombina-tion with ab initiogeneprediction,proteinand ESTalig
22、nments,and transposonmasking(7). Of these,91,167wereconfirmedby matcheswithB. rapaand/orB.oleraceapredictedproteomes.Genesareabundantindistaleuchromatinbut sparsenearcentromericheterochromatin(Fig. 2). RNA-seqdatarevealedalternativesplicingin 48%of genes,with frequentintronretention(62%)and rare exo
23、nskipping(3%)(tablesS17and S18and fig. S11).TheB.napusAnand Cnsubgenomesare largelycolineartothe correspondingdiploidArand Co95022 AUGUST2014? VOL345ISSUE6199sciencemag.orgSCIENCE1Institut NationaldeRechercheAgronomique(INRA)/UniversitdEvryVal d Essone,Unit de RechercheenG nomiqueVgtale, UMR1165, Or
24、ganizationand Evolutionof Plant Genomes,2 rue GastonCrmieux, 91057Evry,France.2Commissariat lEnergieAtomique(CEA),Institutde G nomique(IG), Genoscope,BP5706,91057Evry,France.3UniversitdEvry Vald Essone,UMR8030, CP5706,Evry,France.4CentreNationalde RechercheScientifique(CNRS),UMR8030, CP5706,Evry,Fra
25、nce.5KeyLaboratoryofBiology and GeneticImprovementof OilCrops,Ministry ofAgriculture of People s Republicof China,Oil CropsResearchInstitute, ChineseAcademyof Agricultural Sciences,Wuhan430062, China.6Agriculture and Agri-FoodCanada,107SciencePlace,Saskatoon,SKS7N0X2, Canada.7J. CraigVenterInstitute
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