OALib Journal期刊
ISSN: 2333-9721
费用:99美元
|
|
|
缺氧嗜甲烷古菌研究进展
DOI: 10.3724/SP.J.1145.2011.00763, PP. 763-766
Keywords: 甲烷,缺氧嗜甲烷古菌,硫酸盐还原菌,缺氧甲烷氧化,产甲烷菌
Abstract:
综述了缺氧嗜甲烷古菌的分布、生态位、形态与代谢特征的新发现,并讨论了其与产甲烷菌的关系.在无氧条件下,缺氧嗜甲烷古菌与硫酸盐还原菌互养,氧化甲烷气体以阻止其进入大气.缺氧嗜甲烷古菌主要分布于深海甲烷渗漏区和冷泉区域,在其他多种缺氧环境中也能发现,由于还未获得纯培养,对这类微生物的生态位知之甚少.其细胞呈球状、杆状,有时聚集成球状集合体或连接形成丝状体.缺氧甲烷氧化可能经过“反甲烷合成”、“甲基合成”等路径.嗜甲烷古菌与产甲烷菌有着较近的亲缘关系,并且存在许多相似点.图1表1参37
References
[1] | 2moranjj,bealej,vrentasjm,orphanvj,freemankh,housech.methylsulfidesasintermediatesintheanaerobicoxidationofmethane.environmicrobiol,2008,10(1):162~173
|
[2] | 3hinrichsku,summonsre,orphanv,sylvasp,hayesjm.molecularandisotopicanalysisofanaerobicmethane-oxidizingcommunitiesinmarinesediments.orggeochem,2000,31(12):1685~1701
|
[3] | 4jinwb(金文标),yaojj(姚建军),chenmj(陈孟晋),gaozr(高哲荣).screeningindicatingbacteriaformicrobiologicalexplorationofnaturalgas.natgasind(天然气工业),2002,22(5):20~22
|
[4] | 5hinrichsku,hayesjm,sylvasp,brewerpg,delongef.methane-consumingarchaebacteriainmarinesediments.nature,1999,398(6730):802~805
|
[5] | 6knittelk,boetiusa.anaerobicoxidationofmethane:progresswithanunknownprocess.annrevmicrobiol,2009,63:311~334
|
[6] | 7boetiusa,hollert,knittelk,feldenj,wenzhoeferf.theseabedasnaturallaboratory:lessonsfromuncultivatedmethanotrophs.uncultivatedmicroorganisms,2009,1:59~82
|
[7] | 8knittelk,losekannt,boetiusa,kortr,amannr.diversityanddistributionofmethanotrophicarchaeaatcoldseeps.appl&environmicrobiol,2005,71(1):467~479
|
[8] | 9martinezrj,millshj,storys,sobeckypa.prokaryoticdiversityandmetabolicallyactivemicrobialpopulationsinsedimentsfromanactivemudvolcanointhegulfofmexico.environmicrobiol,2006,8(10):1783~1796
|
[9] | 10pernthalera,dekasae,brownct,goffredisk,embayet,orphanvj.diversesyntrophicpartnershipsfrom-deep-seamethaneventsrevealedbydirectcellcaptureandmetagenomics.procnatacadsciusa,2008,105(19):7052~7057
|
[10] | 11nauhausk,albrechtm,elvertm,boetiusa,widdelf.invitrocellgrowthofmarinearchaeal-bacterialconsortiaduringanaerobicoxidationofmethanewithsulfate.environmicrobiol,2007,9(1):187~196
|
[11] | 12nauhausk,treudet,boetiusa,krugerm.environmentalregulationoftheanaerobicoxidationofmethane:acomparisonofanme-iandanme-iicommunities.environmicrobiol,2005,7(1):98~106
|
[12] | 21orcuttb,samarkinv,boetiusa,joyes.ontherelationshipbetweenmethaneproductionandoxidationbyanaerobicmethanotrophiccommunitiesfromcoldseepsofthegulfofmexico.environmicrobiol,2008,10(5):1108~1117
|
[13] | 22steinberglm,reganjm.phylogeneticcomparisonofthemethanogeniccommunitiesfromanacidic,oligotrophicfenandananaerobicdigestertreatingmunicipalwastewatersludge.appl&environmicrobiol,2008,74(21):6663~6671
|
[14] | 23cadillo-quirozh,brauers,yashiroe,sunc,yavittj,zinders.verticalprofilesofmethanogenesisandmethanogensintwocontrastingacidicpeatlandsincentralnewyorkstate,usa.environmicrobiol,2006,8(8):1428~1440
|
[15] | 24miyazakij,higar,tokit,ashij,tsunogaiu,nunourat,imachih,takaik.molecularcharacterizationofpotentialnitrogenfixationbyanaerobicmethane-oxidizingarchaeainthemethaneseepsedimentsatthenumber8kumanoknollinthekumanobasin,offshoreofjapan.appl&environmicrobiol,2009,75(22):7153~7162
|
[16] | 25macleanlcw,praytj,onstotttc,brodieel,hazentc,southamg.mineralogical,chemicalandbiologicalcharacterizationofananaerobicbiofilmcollectedfromaboreholeinadeepgoldmineinsouthafrica.geomicrobiolj,2007,24(6):491~504
|
[17] | 26lopez-archillaai,moreirad,velascos,lopez-garciap.archaealandbacterialcommunitycompositionofapristinecoastalaquiferindonananationalpark,spain.aquatmicrobecol,2007,47(2):123~139
|
[18] | 28pancostrd,hopmansec,damstejss,partymss.archaeallipidsinmediterraneancoldseeps:molecularproxiesforanaerobicmethaneoxidation.geochimcosmochimacta,2001,65(10):1611~1627
|
[19] | 29schoutens,wakehamsg,damstejss.evidenceforanaerobicmethaneoxidationbyarchaeaineuxinicwatersoftheblacksea.orggeochem,2001,32(10):1277~1281
|
[20] | 30boetiusa,ravenschlagk,schubertcj,rickertd,widdelf,giesekea,amannr,jorgensenbb,witteu,pfannkucheo.amarinemicrobialconsortiumapparentlymediatinganaerobicoxidationofmethane.nature,2000,407(6804):623~626
|
[21] | 31orphanvj,housech,hinrichsku,mckeegankd,delongef.methane-consumingarchaearevealedbydirectlycoupledisotopicandphylogeneticanalysis.science,2001,293(5529):484~487
|
[22] | 32hoehlertm,alperinmj,albertdb,martenscs.fieldandlaboratorystudiesofmethaneoxidationinananoxicmarinesediment-evidenceforamethanogen-sulfatereducerconsortium.globalbiogeochemcycles,1994,8(4):451~463
|
[23] | 33hallamsj,putnamn,prestoncm,detterjc,rokhsard,richardsonpm,delongef.reversemethanogenesis:testingthehypothesiswithenvironmentalgenomics.science,2004,305(5689):1457~1462
|
[24] | 34moranjj,housech,freemankh,ferryjg.tracemethaneoxidationstudiedinseveraleuryarchaeotaunderdiverseconditions.archaea,2005,1(5):303~309
|
[25] | 35valentinedl,blantondc,reeburghws.hydrogenproductionbymethanogensunderlow-hydrogenconditions.archmicrobiol,2000,174(6):415~421
|
[26] | 36nauhausk,boetiusa,krugerm,widdelf.invitrodemonstrationofanaerobicoxidationofmethanecoupledtosulphatereductioninsedimentfromamarinegashydratearea.environmicrobiol,2002,4(5):296~305
|
[27] | 37bidleka,kastnerm,bartlettdh.aphylogeneticanalysisofmicrobialcommunitiesassociatedwithmethanehydratecontainingmarinefluidsandsedimentsinthecascadiamargin(odpsite892b).femsmicrobiollett,1999,177(1):101~108
|
[28] | 1simpsonij,blakedr,rowlandfs,chenty.implicationsoftherecentfluctuationsinthegrowthrateoftroposphericmethane.geophysreslett,2002,29(10):1479
|
[29] | 13niemannh,losekannt,debeerd,elvertm,nadaligt,knittelk,amannr,sauterej,schluterm,klagesm,foucherjp,boetiusa.novelmicrobialcommunitiesofthehaakonmosbymudvolcanoandtheirroleasamethanesink.nature,2006,443(7113):854~858
|
[30] | 14teskea,hinrichsku,edgcombv,gomezad,kyselad,sylvasp,soginml,jannaschhw.microbialdiversityofhydrothermalsedimentsintheguaymasbasin:evidenceforanaerobicmethanotrophiccommunities.appl&environmicrobiol,2002,68(4):1994~2007
|
[31] | 15inagakif,kuypersmmm,tsunogaiu,ishibashij,nakamurak,treudet,ohkubos,nakaseamam,genak,chibah,hirayamah,nunourat,takaik,jorgensenbb,horikoshik,boetiusa.microbialcommunityinasediment-hostedco2lakeofthesouthernokinawatroughhydrothermalsystem.procnatacadsciusa,2006,103(38):14164~14169
|
[32] | 16zhengyanping(郑燕平).studyofmicrobialcommunitystructureinvolvedinmethaneandnitrogencyclesandrelationshipbetweenmicrobesandenvironmentalongsedimentcorefromqi’aoislandofpearlriverestuary:[masterdegreedissertation].xiamen,china:xiamenuniversity(厦门:厦门大学),2009
|
[33] | 17zhanglinbao(张林宝).studyonthediversityofarchaealretrievedfromtheokhotskseagashydrateandmudwedgesedimentsintheeastchinaseainnershelf:[masterdegreedissertation].qingdao,china:instituteofoceanology,chineseacademyofsciences(中国科学院海洋研究所),2009
|
[34] | 18lih,yangsz,mubz.phylogeneticdiversityofthearchaealcommunityinacontinentalhigh-temperature,water-floodedpetroleumreservoir.currmicrobiol,2007,55:382~388
|
[35] | 19jianghc,donghl,yubs,yeq,shenj,roweh,zhangcl.dominanceofputativemarinebenthicarchaeainqinghailake,north-westernchina.environmicrobiol,2008,10(9):2355~2367
|
[36] | 20miyashitaa,mochimaruh,kazamah,ohashia,yamaguchit,nunourat,horikoshik,takaik,imachih.developmentof16srrnagene-targetedprimersfordetectionofarchaealanaerobicmethanotrophs(anmes).femsmicrobiollett,2009,297(1):31~37
|
[37] | 27raghoebarsingaa,pola,vandepas-schoonenkt,smoldersajp,ettwigkf,rijpstrawic,schoutens,damstejss,opdencamphjm,jettenmsm,strousm.amicrobialconsortiumcouplesanaerobicmethaneoxidationtodenitrification.nature,2006,440(7086):918~921
|
[38] | 38moranjj,housech,vrentasjm,freemankh.methylsulfideproductionbyanovelcarbonmonoxidemetabolisminmethanosarcinaacetivorans.appl&environmicrobiol,2008,74(2):540~542
|
Full-Text
|
|
Contact Us
service@oalib.com QQ:3279437679 
WhatsApp +8615387084133
|
|