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Chapter7
MicrobialGrowthandGrowthcontrol7.1OverviewofCellGrowth7.2PopulationGrowth7.3MeasurementofGrowth7.4ContinuousCulture:TheChemostat7.5EffectofEnvironmentonGrowth7.6GrowthControl7.7ViralControl7.8FungalControl第1頁7.1OverviewofmicrobialgrowthThebacterialcellisasyntheticmachinethatisabletoduplicateitself.Thesyntheticprocessesofbacterialcellgrowthinvolveasmanyas2023chemicalreactionsofawidevarietyoftypes.Someofthesereactionsinvolveenergytransformations.Otherreactionsinvolvebiosynthesisofsmallmolecules-thebuilding,blocksofmacromolecules-aswellasthevariouscofactorsandcoenzymesneededforenzymaticreactions.
第2頁BinaryFission
第3頁6–1.
MicrobialNutritionNutrientrequirementsNutritionaltypesofmicroorganismsUptakeofNutrientsbytheCellCultureMediumIsolationofPureCultures
第4頁Microorganismsrequireabouttenelementsinlargequantities,becausetheyareusedtoconstructcarbohydrates,lipids,proteins,andnucleicacids.Severalotherelementsareneededinverysmallamountsandarepartsofenzymesandcofactors.Concepts:Nutrientrequirements第5頁Macronutrients95%ormoreofcelldryweightismadeupofafewmajorelements:carbon,oxygen,hydrogen,nitrogen,sulfur,phosphorus,potassium,calcium,magnesiumandiron.Thefirstsix(C,H,O,N,PandS)arecomponentsofcarbonhadrates,lipids,proteinsandnucleicacids第6頁TraceElements
Microbesrequireverysmallamountsofothermineralelements,suchasiron,copper,molybdenum,andzinc;thesearereferredtoastraceelements.Mostareessentialforactivityofcertainenzymes,usuallyascofactors.第7頁GrowthFactors
Aminoacidsareneededforproteinsynthesis,purinesandpyrimidinesfornucleicacidsynthesis.Vitaminsaresmallorganicmoleculesthatusuallymakeupallorpartenzymecofactors,andonlyverysmallamountsarerequiredforgrowth.(1)aminoacids,(2)purinesandpyrimidines,(3)vitamins第8頁MajornutritionaltypeSourcesofenergy,hydrogen/electrons,andcarbonRepresentativemicroorganismsPhotoautotroph
(Photolithotroph)Lightenergy,inorganichydrogen/electron(H/e-)donor,CO2carbonsourceAlgae,Purpleandgreenbacteria,CyanobacteriaPhotoheterotroph
(Photoorganotroph)Lightenergy,inorganicH/e-donor,OrganiccarbonsourcePurplenonsulfurbacteria,GreensulfurbacteriaChemoautotroph(Chemolithotroph)Chemicalenergysource(inorganic),InorganicH/e-donor,CO2carbonsourceSulfur-oxdizingbacteria,Hydrogenbacteria,NitrifyingbacteriaChemoheterotroph(Chenoorganotroph)
Chemicalenergysource(organic),OrganicH/e-donor,OrganiccarbonsourceMostbacteria,fungi,protozoaNutritionaltypesofmicroorganisms第9頁Algae,CyanobacteriaCO2+H2O
Light
+Chlorophyll
(CH2O)+O2PurpleandgreenbacteriaCO2+2H2S
Light
+bacteriochlorophyll
(CH2O)+H2O+2SPurplenonsulfurbacteria(Rhodospirillum)CO2+2CH3CHOHCH3Light
+bacteriochlorophyll
(CH2O)+H2O+2CH3COCH3Photoautotroph:Photoheterotroph:第10頁P(yáng)ropertycyanobacteriaGreenandpurplebacteriaPurplenonsulfurbacteriaPhoto-pigmentChlorophyllBcteriochlorophyllBcteriochlorophyllO2productionYesNoNoElectrondonorsH2OH2,H2S,SH2,H2S,SCarbonsourceCO2CO2Organic/CO2Primaryproductsof
energyconversionATP+NADPHATPATPPropertiesofmicrobialphotosyntheticsystems第11頁Chemoautotroph:Nitrifyingbacteria2NH4++3O22NO2-+2H2O+4H++132KcalBacteriaElectrondonorElectronacceptorProductsAlcaligensandPseudomonassp.H2O2H2ONitrobacterNO2-O2NO3-,H2ONitrosomonasNH4+O2NO2-,H2ODesulfovibrioH2SO42-H2O.H2SThiobacillusdenitrificansS0.H2SNO3-SO42-,N2ThiobacillusferrooxidansFe2+O2Fe3+,H2O第12頁areneededtogrowmicroorganismsinthelaboratoryandtocarryoutspecializedprocedureslikemicrobialidentification,waterandfoodanalysis,andtheisolationofparticularmicroorganisms.Awidevarietyofmediaisavailablefortheseandotherpurposes.Culturemedia第13頁canbeobtainedthroughtheuseofspreadplates,streakplates,orpourplatesandarerequiredforthecarefulstudyofanindividualmicrobialspecies.
Purecultures第14頁Nutrientmoleculesfrequentlycannotcrossselectivelypermeableplasmamembranesthroughpassivediffusionandmustbetransportedbyoneofthreemajormechanismsinvolvingtheuseofmembranecarrierproteins.Uptakeofnutrients
第15頁1,Phagocytosis
–
Protozoa2,Permeabilityabsorption–Mostmicroorganismspassivetransport,simplediffusionfacilitateddiffusionactivetransportgrouptranslocation第16頁Afewsubstances,suchasglycerol,cancrosstheplasmamembranebypassivediffusion.Passivediffusionistheprocessinwhichmoleculesmovefromaregionofhigherconcentrationtooneoflowerconcentrationasaresultofrandomthermalagitation.passivediffusion第17頁Therateofdiffusionacrossselectivelypermeablemembranesisgreatlyincreasedbytheuseofcarrierproteins,sometimescalledpermeases,whichareembeddedintheplasinamembrane.Sincethediffusionprocessisaidedbyacarrier,itiscalledfacilitateddiffusion.TherateoffacilitateddiffusionincreaseswiththeconcentratiotigradientmuchmorerapidlyandatlowerconcentrationsofthediffusingmoleculethanthatofpassivediffusionFacilitateddiffusion第18頁Activetransportisthetransportofsolutemoleculestohigherconcentrations,oragainstaconcentrationgradient,withtheuseofmetabolicenergyinput.
Activetransport第19頁Grouptranslocation第20頁1,Phagocytosis
–
Protozoa2,Permeabilityabsorption–Mostmicroorganismspassivetransport,simplediffusionfacilitateddiffusionactivetransportgrouptranslocation第21頁Afewsubstances,suchasglycerol,cancrosstheplasmamembranebypassivediffusion.Passivediffusionistheprocessinwhichmoleculesmovefromaregionofhigherconcentrationtooneoflowerconcentrationasaresultofrandomthermalagitation.passivediffusion第22頁Therateofdiffusionacrossselectivelypermeablemembranesisgreatlyincreasedbytheuseofcarrierproteins,sometimescalledpermeases,whichareembeddedintheplasinamembrane.Sincethediffusionprocessisaidedbyacarrier,itiscalledfacilitateddiffusion.TherateoffacilitateddiffusionincreaseswiththeconcentrationgradientmuchmorerapidlyandatlowerconcentrationsofthediffusingmoleculethanthatofpassivediffusionFacilitateddiffusion第23頁Themembranecarriercanchangeconformationafterbindinganexternalmoleculeandsubsequentlyreleasethemoleculeonthecellinterior.Itthenreturnstotheoutwardorientedpositionandisreadytobindanothersolutemolecule.
AmodeloffacilitateddiffusionBecausethereisnoenergyinput,moleculeswillcontinuetoenteronlyaslongastheirconcentrationisgreaterontheoutside.第24頁Activetransportisthetransportofsolutemoleculestohigherconcentrations,oragainstaconcentrationgradient,withtheuseofmetabolicenergyinput.
Activetransport第25頁Thebest-knowngrouptranslocationsystemisthephosphoenolpyruvate:
sugarphosphotransferasesystem(PTS),whichtransportsavarietyofsugarsintoprocaryoticcellswhileSimultaneouslyphosphorylatingthemusingphosphoenolpyruvate(PEP)asthephosphatedonor.GrouptranslocationPEP+sugar(outside)pyruvate+sugar-P(inside)第26頁Thephosphoenolpyruvate:sugarphosphotransferasesystemofE.coli.Thefollowingcomponentsareinvolvedinthesystem:phosphoenolpyruvate,PEP;enzyme1,EI;thelowmolecularweightheat-stableprotein,HPr;enzyme11,EII,-andenzymeIII,EIII.第27頁ItemsPassivediffusionFacilitateddiffusionActivetransportGrouptranslocationcarrierproteins
NonYesYesYestransportspeedSlowRapidRapidRapidagainstgradientNonNonYesYestransport
moleculesNospecificity
SpecificitySpecificitySpecificitymetabolicenergyNoneedNeedNeedNeedSolutesmoleculesNotchangedChangedChangedChangedSimplecomparisonoftransportsystems第28頁Modeofactionofantibacterialantibiotics第29頁Symbiosisofpeptidoglycan第30頁6–2.
Microbialgrowth
TheGrowthCurveCelllifecycleMeasurementofMicrobialGrowthMeasurementofCellMassGrowthYieldsandtheEffectsofaLimitingNutrientTheContinuousCultureofMicroorganismsTheChemostatTheInfluenceofEnvironmentalFactorsonGrowthOutline第31頁
Growthisdefinedasanincreaseincellularconstituentsandmayresultinanincreaseinanorganism'ssize,populationnumber,orboth.
Whenmicroorganismsaregrowninaclosedsystem,populationgrowthremainsexponentialforonlyafewgenerationsandthenentersastationaryphaseduetofactorslikenutrientlimitationandwasteaccumulation.Ifapopulationisculturedinanopensystemwithcontinualnutrientadditionandwasteremoval,theexponentialphasecanbemaintainedforlongperiods.Concepts第32頁3.Awidevarietyoftechniquescanbeusedtostudymicrobialgrowthbyfollowingchangesinthetotalcellnumber,thepopulationofviablemicroorganisms,orthecellmass.4.Wateravailability,pH,temperature,oxygenconcentration,pressure,radiation,andanumberofotherenvironmentalfactorsinfluencemicrobialgrowth.Yetmanymicroorganisms,andparticularlybacteria,havemanagedtoadaptandflourishunderenvironmentalextremesthatwoulddestroymostorganisms.第33頁Growthmaybegenerallydefinedasasteadyincreaseinallofthechemicalcomponentsofanorganism.GrowthusuallyresultsinanincreaseinthesizeofacellandfrequentlyresultsincelldivisionGrowthdefinition:第34頁G1
Primarygrowthphaseofthecellduringwhichcellenlargementoccurs,agapphaseseparatingcellgrowthfromreplicationofthegenomeS
phaseinwhichreplicationofthegenomeoccursG2
Phaseinwhichthecellpreparesforseparationofthereplicatedgenomes,thisphaseincludessynthesisofmicrotubulesandcondensationofDNAtoformcoherentchromosomes,agapphaseseparatingchromosomereplicationfrommiosis.M
phasecalledmiosisduringwhichthemicrotubularapparatusisassociatedandsubsequentlyusedtopullapartthesisterchromosomes.CelllifecycleinEukaryoticcells
G1SG2MG1RDEukaryoticcell:Prokaryoticcell:第35頁第36頁Mostbacterialcellsreproduceasexuallybybinaryfision,aprocessinwhichacelldividestoproducetwonearlyequal-sizedprogenycells.Binaryfisioninvolvesthreeprocesses:
Increaseincellsize(cellelongation),DNAreplicationCelldivisionBinaryfision第37頁GrowthcurveofbacteriaLagPhase
ExponentialPhase
StationaryPhaseDeathPhase
第38頁GrowthcurveofbacteriaLagPhase
ExponentialPhase
StationaryPhaseDeathPhase
第39頁(a)
Lagphase:cellsbegintosynthesizeinducibleenzymesandusestoredfoodreserves.(b)
Logarithmicgrowthphase:therateofmultiplicationisconstant.(c)
Stationaryphase:deathrateisequaltorateofincrease.(d)Deathphase:cellsbegintodieatamorerapidratethanthatofreproduction.
LagPhaseStationaryPhaseDeathPhaseLogarithmicgrowthphase第40頁Thetimerequiredforacelltodivide(anditspopulationtodouble)iscalledthegenerationtime.
generationtimeSupposethatabacterialpopulationincreasesfrom103cellsto109cellsin10hours.Calculatethegenerationtime.NumberofcellsTimeNt=Nox2nNo=numberofbacteriaatbeginningoftimeinterval.Nt=numberofbacteriaatendofanyintervaloftime(t).G=generationtimeT=time,usuallyexpressedinminutesn=numberofgenerationG=tlog2/logNt–logNo第41頁Chemostatusedforcontinuouscultures.Rateofgrowthcanbecontrolledeitherbycontrollingtherateatwhichnewmediumentersthegrowthchamberorbylimitingarequiredgrowthfactorinthemedium.ContinuouscultureofmicroorganismsChemostat第42頁Bacteriagrowoverarangeoftemperatures;theydonotreproducebelowtheminimumgrowthtemperattirenorabovethemaximumgrowthtemperature.Withinthetemperaturegrowthrangethereisanoptimumgrowthtemperatureatwhichbacterialreproductionisfastest.
Effectoftemperatureonbacterialgrowthrate第43頁EnzymesexhibitaQ10sothatwithinasuitabletemperaturerangetherateofenzymeactivitydoublesforevery10'Criseintemperature.第44頁Microorganismsareclassifiedaspsychrophiles,mesophiles.thermophiles,andextremethemophilesbasedontheiroptimalgrowthtemperature.第45頁Effectofoxygenconcentration–reductionpotentialEffectofoxygenconcentrationonthegrowthofvariousbacteriain
tubesofsolidmedium
第46頁(a)Obligateaerobes-growthoccursonlyintheshortdistancetowhichtheoxygendiffusesintothemedium.(b)Facultativeanaerobesgrowthisbestnearthesurface,whereoxygenisavailable,butoccursthroughoutthetube.(c)Obligateanaerobes-oxygenistoxic,andthereisnogrowthnearthesurface.(d)Aerotolerantanaerobes-growthoccurs
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