全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

水体粪便污染的线粒体dna溯源研究

DOI: 10.13232/j.cnki.jnju.2014.04.002

Keywords: 粪便污染溯源,线粒体dna溯源,微生物溯源,聚合酶链式反应,巢式pcr,定量pcr,基因芯片

Full-Text   Cite this paper   Add to My Lib

Abstract:

?畜禽粪便和生活污水是造成水体污染的主要因素之一.快速、准确地确定污染源对于水体污染防治尤为重要.近年来,基于线粒体dna(mtdna)种属特异性的污染物溯源技术已成为国际研究热点.本文综述了水体粪便污染的mtdna溯源技术的理论基础及其应用进展,并通过与微生物溯源技术进行比较,分析了mtdna作为溯源标记物的优势以及存在的问题,从而为实际环境水体中粪便污染的生物溯源工作提供参考.

References

[1]  baldurssons,karanisp.waterbornetransmissionofprotozoanparasites:reviewofworldwideoutbreaks-anupdate2004-2010.waterresearch,2011,45(20):6603~6614.
[2]  prussa.reviewofepidemiologicalstudiesonhealtheffectsfromexposuretorecreationalwater.internationaljournalofepidemiology,1998,27(1):1~9.
[3]  harwoodvj,staleyc,badgleybd,etal.microbialsourcetrackingmarkersfordetectionoffecalcontaminationinenvironmentalwaters:relationshipsbetweenpathogensandhumanhealthoutcomes.femsmicrobiologyreviews,2014,38(1):1~40.
[4]  fieldkg,samadpourm.fecalsourcetracking,theindicatorparadigm,andmanagingwaterquality.waterresearch,2007,41(16):3517~3538.
[5]  nguyet-minhv,villemurr,paymentp,etal.fecalsourcetrackinginwaterusingamitochondrialdnamicroarray.waterresearch,2013,47(1):16~30.
[6]  boorejl.animalmitochondrialgenomes.nucleicacidsresearch,1999,27(8):1767~1780.
[7]  pottencs,schofieldr,lajthalg.comparisonofcellreplacementinbone-marrow,testisand3regionsofsurfaceepithelium.biochimicaetbiophysicaacta,1979,560(2):281~299.
[8]  kamraa,kessieg,chenjh,etal.exfoliatedcolonicepithelialcells:surrogatetargetsforevaluationofbioactivefoodcomponentsincancerprevention.journalofnutrition,2005,135(11):2719~2722.
[9]  gireesht,nairpp,sudhakaranpr.studiesonthebioavailabilityoftheprovitaminacarotenoid,beta-carotene,usinghumanexfoliatedcolonicepithelialcells.britishjournalofnutrition,2004,92(2):241~245.
[10]  guarnerf,malageladajr.gutflorainhealthanddisease.lancet,2003,361(9356):512~519.
[11]  brownwm,georgem,wilsonac.rapidevolutionofanimalmitochondrial-dna.proceedingsofthenationalacademyofsciencesoftheunitedstatesofamerica,1979,76(4):1967~1971.
[12]  moritzc,dowlingte,brownwm.evolutionofanimalmitochondrial-dna-relevanceforpopulationbiologyandsystematics.annualreviewofecologyandsystematics,1987,18:269~292.
[13]  kovachai,litvaitismk,litvaitisja.evaluationoffecalmtdnaanalysisasamethodtodeterminethegeographicdistributionofararelagomorph.wildlifesocietybulletin,2003,31(4):1061~1065.
[14]  alonsoa,martinp,albarranc,etal.real-timepcrdesignstoestimatenuclearandmitochondrialdnacopynumberinforensicandancientdnastudies.forensicscienceinternational,2004,139(2~3):141~149.
[15]  caldwelljm,levinejf.domesticwastewaterinfluentprofilingusingmitochondrialreal-timepcrforsourcetrackinganimalcontamination.journalofmicrobiologicalmethods,2009,77(1):17~22.
[16]  shanksoc,santodomingojw,lamendellar,etal.competitivemetagenomicdnahybridizationidentifieshost-specificmicrobialgeneticmarkersincowfecalsamples.appliedandenvironmentalmicrobiology,2006,72(6):4054~4060.
[17]  roslevp,bukhas.stateoftheartmolecularmarkersforfecalpollutionsourcetrackinginwater.appliedmicrobiologyandbiotechnology,2011,89(5):1341~1355.
[18]  saundersam,kristiansena,lundmb,etal.detectionandpersistenceoffecalbacteroidalesaswaterqualityindicatorsinunchlorinateddrinkingwater.systematicandappliedmicrobiology,2009,32(5):362~370.
[19]  soleckio,jeanneaul,jardee,etal.persistenceofmicrobialandchemicalpigmanuremarkersascomparedtofaecalindicatorbacteriasurvivalinfreshwaterandseawatermicrocosms.waterresearch,2011,45(15):4623~33.
[20]  tambalodd,fremauxb,boat,etal.persistenceofhost-associatedbacteroidalesgenemarkersandtheirquantitativedetectioninanurbanandagriculturalmixedprairiewatershed.waterresearch,2012,46(9):2891~904.
[21]  jeanneaul,soleckio,weryn,etal.relativedecayoffecalindicatorbacteriaandhuman-associatedmarkers:amicrocosmstudysimulatingwastewaterinputintoseawaterandfreshwater.environmentalscience&technology,2012,46(4):2375~82.
[22]  dicklk,stelzerea,bertkeee,etal.relativedecayofbacteroidalesmicrobialsourcetrackingmarkersandcultivatedescherichiacoliinfreshwatermicrocosms.appliedandenvironmentalmicrobiology,2010,76(10):3255~62.
[23]  okabes,okayaman,savichtchevao,etal.quantificationofhost-specificbacteroides-prevotella16srrnageneticmarkersforassessmentoffecalpollutioninfreshwater.appliedmicrobiologyandbiotechnology,2007,74(4):890~901.
[24]  walterssp,fieldkg.survivalandpersistenceofhumanandruminant-specificfaecalbacteroidalesinfreshwatermicrocosms.environmentalmicrobiology,2009,11(6):1410~1421.
[25]  mieszkins,furetjp,corthierg,etal.estimationofpigfecalcontaminationinarivercatchmentbyreal-timepcrusingtwopig-specificbacteroidales16srrnageneticmarkers.appliedandenvironmentalmicrobiology,2009,75(10):3045~3054.
[26]  wolfs,hewittj,greeningge.viralmultiplexquantitativepcrassaysfortrackingsourcesoffecalcontamination.appliedandenvironmentalmicrobiology,2010,76(5):1388~1394.
[27]  lujr,domingojs,shanksoc.identificationofchicken-specificfecalmicrobialsequencesusingametagenomicapproach.waterresearch,2007,41(16):3561~3574.
[28]  whitmanrl,przybyla-kellyk,shivelyda,etal.incidenceoftheenterococcalsurfaceprotein(esp)geneinhumanandanimalfecalsources.environmentalscience&technology,2007,41(17):6090~6095.
[29]  scotttm,jenkinstm,lukasikj,etal.potentialuseofahostassociatedmolecularmarkerinenterococcusfaeciumasanindexofhumanfecalpollution.environmentalscience&technology,2005,39(1):283~287.
[30]  kapoorv,smithc,santodomingojw,etal.correlativeassessmentoffecalindicatorsusinghumanmitochondrialdnaasadirectmarker.environmentalscience&technology,2013,47(18):10485~93.
[31]  blanchar,belanche-munozl,bonjochx,etal.integratedanalysisofestablishedandnovelmicrobialandchemicalmethodsformicrobialsourcetracking.appliedandenvironmentalmicrobiology,2006,72(9):5915~5926.
[32]  caldwellj,paymentp,villemurr.mitochondrialdnaassourcetrackingmarkersoffecalcontamination,2011,229~250.
[33]  martellinia,paymentp,villemurr.useofeukaryoticmitochondrialdnatodifferentiatehuman,bovine,porcineandovinesourcesinfecallycontaminatedsurfacewater.waterresearch,2005,39(4):541~548.
[34]  caldwelljm,raleyme,levinejf.mitochondrialmultiplexreal-timepcrasasourcetrackingmethodinfecal-contaminatedeffluents.environmentalscience&technology,2007,41(9):3277~3283.
[35]  harrisonrg.animalmitochondrial-dnaasagenetic-markerinpopulationandevolutionarybiology.trendsinecology&evolution,1989,4(1):6~11.
[36]  bairk,perngcl,hsuch,etal.quantitativepcranalysisofmitochondrialdnacontentinpatientswithmitochondrialdisease.inmitochondrialpathogenesis:fromgenesandapoptosistoaginganddisease,leehk,dimauros,tanakametal.eds,2004,304~309.
[37]  schillwb,mathesmv.real-timepcrdetectionandquantificationofminepotentialsourcesoffecalcontaminationbyanalysisofmitochondrialcytochromebtargets.environmentalscience&technology,2008,42(14):5229~5234.
[38]  kortbaouir,locasa,imbeaum,etal.universalmitochondrialpcrcombinedwithspecies-specificdot-blotassayasasource-trackingmethodofhuman,bovine,chicken,ovine,andporcineinfecal-contaminatedsurfacewater.waterresearch,2009,43(7):2002~2010.
[39]  baker-austinc,morrisj,lowtherja,etal.rapididentificationanddifferentiationofagriculturalfaecalcontaminationsourcesusingmultiplexpcr.lettersinappliedmicrobiology,2009,49(4):529~532.
[40]  stoeckeldm,harwoodvj.performance,design,andanalysisinmicrobialsourcetrackingstudies.appliedandenvironmentalmicrobiology,2007,73(8):2405~2415.
[41]  shanksoc,keltyca,sivaganesanm,etal.quantitativepcrforgeneticmarkersofhumanfecalpollution.appliedandenvironmentalmicrobiology,2009,75(17):5507~5513.
[42]  tambalodd,boat,liljebjelkek,etal.evaluationoftwoquantitativepcrassaysusingbacteroidalesandmitochondrialdnamarkersfortrackingdogfecalcontaminationinwaterbodies.journalofmicrobiologicalmethods,2012,91(3):459~467.
[43]  baes,wuertzs.rapiddecayofhost-specificfecalbacteroidalescellsinseawaterasmeasuredbyquantitativepcrwithpropidiummonoazide.waterresearch,2009,43(19):4850~4859.
[44]  andersonkl,whitlockje,harwoodvj.persistenceanddifferentialsurvivaloffecalindicatorbacteriainsubtropicalwatersandsediments.appliedandenvironmentalmicrobiology,2005,71(6):3041~8.
[45]  okabes,shimazuy.persistenceofhost-specificbacteroides-prevotella16srrnageneticmarkersinenvironmentalwaters:effectsoftemperatureandsalinity.appliedandenvironmentalmicrobiology,2007,76(4):935~44.
[46]  baker-austinc,rangdaler,lowtherj,etal.applicationofmitochondrialdnaanalysisformicrobialsourcetrackingpurposesinshellfishharvestingwaters.waterscienceandtechnology,2010,61(1):1~7.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133