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Lecture (光合作用Zhang: :1ChloroPhotophosphorylation(光合磷酸化Photorespiration(光呼吸2IntroductiontoTurningsunlightintoreduced1molATP≈Ananabolic,endergonic,CO2requiringprocessthatuseslightenergyandH2Otoproduceorganicmacromolecules(glucose)4Start5 purplepurple
CO2+2H2O→(CH2O)+O2CO2+2H2S→(CH2O)+2S1931C.B.VanNiel:overallequationfor HistoryofDoestheincreaseinmassofa ntcomefromtheair?Thesoil?TheWater?EarlyresearchfocusedontheoverallLaterresearchersinvestigatedthedetailedchemical 7VanHelmont’sExperiment ntedaseedintoapremeasuredamountofsoilandwateredfor5yearsWeighednt&ntwas75kg,SoiltheConcludedmasscamefrom8Priestley’sExperimentBurnedcandleinbelljaruntilitwentcedsprigofmintinbelljarforafewCandlecouldberelitand ntsreleasedsubstance(O2)necessaryforburning.Ingenhousz’sExperimentShowedthatPriestley’sresultsonlyoccurredinthepresenceofLightwasnecessaryfornttoproducethe“burninggas”orRepeatedpriestlyexperimentwithandwithoutJuliusRobertMayerProposedthatntcanconvertlightenergyintochemicalenergySamuelRuben&MartinKamenUsedisotopestodeterminethattheoxygenliberatedinphotosynthesiscomesfromMelvinCalvinFirsttotracethepaththatCO2takesinformingglucoseDoesNOTrequireCalledtheCalvinCycleorlightindependentreactionAlsoknownasthedarkRudolphMarcus(1992StudiedthelightindependentreactionsFirsttodescribetheelectrontransportchainWheredoesphotosynthesis mesophyllChlorost(葉綠體Organellewherephotosynthesistakes類囊基質(zhì)片基kk(類 stPigmeChlorophyllChlorophyllThelightreactionsofphotosynthesis---directlydependentontheabsorptionoflight,theresultingphotochemistrytakeselectronsfromH2Oanddrivesthemthroughaseriesofmembrane-boundcarriers,producingNADPHandATP.(lightdependentreaction)TheThecarbon-assimilationreactionsofreduceCO2withelectronsfromNADPHandenergyfromATP.(darkreaction,lightindependentreaction)Lightreactionsareassociatedwiththethylakoid(類囊體)Light-independentreactionsareassociatedwiththestroma(基質(zhì)>200chlorophyllamoleculesLittlechlorophyllb (類胡蘿卜素)pigmentwithApair specialchlorophylla PrimaryelectronacceptormoleculecalledPhotosystemChlorophylla?-carotenepigmentsattachedtoproteinSmallamountofchlorophyllbApairofspecialchlorophyllacalledPrimaryelectronacceptormoleculecalledAModeloftheOrientationoftheMajorEnergyComplexesWithintheThylakoid藍(lán)TheStuctureof醌褐藻天線蛋白( 合體放氧initiatesanoxidation-reductionPSⅡ的WatersplittingcomplexTheStuctureof藍(lán)葉綠素葉綠GeneratesreducedThroughNADP eitreducesNADP+to
鐵氧化還原蛋nt“z-scheme”photosystemsIandADP+ Non-cyclic&cyclicThemechanismisverysimilartothatofoxidativeHowtheLightReactionsGenerateATPandNoncyclicPhotophosphorylation(非環(huán)式光合磷酸化PhotoexcitationofPSIandPSIIleadsQ→H2OsplittingbyPSIIandoxidationofQH2bythecytb6fleadstoH+gradientacrossthemembranewhichdrivesATPsynthesismediatedbyChemiosmosispowersATPsynthesisinthelightCyclicPhotophosphorylation(環(huán)式光合磷酸化CarbondioxideAlsocalledcarbondioxideassimilation(CO2同化Light-independentreaction/CalvinInC3nts,allprocessesoccurinthemesophyll(RuBP)IstheCO2AcceptorCO2carboxylationphase羧化階段or Ribulose-1,5-Bisphosphate(8L+8Sreductionphase還原階段PGA(3-磷酸甘油酸 GAP(甘油醛-3-磷酸regenerationphase(再生階段 見下頁轉(zhuǎn)醛酶轉(zhuǎn)酮酶反應(yīng)
StoichiometryofCO2assimilationintheCalvinForeverythreeCO2moleculesfixed,onemoleculeoftriose(glyceraldehyde3-phosphate)isproducedand9ATPand6NADPHarealternativefatesofthefixedcarbonofThemostisrecycledtoribulose1,5-glyceraldehyde3-glyceraldehyde3-AsAsasourceofBeconvertedtosucrose(蔗糖)forBestoredinthestasPhotorespiration(光呼吸mitochondrialrespiration,theoxidationofsubstratestoCO2andtheconversionofO2toH2O.photorespiration likeMitrespiration,consumesO2andproducesCO2likephotosynthesis,isdrivenbylight.--Reason:WhenRubiscocatalyzesthereactionbetweenribulose-1,5-bisphosphatewithO2insteadofCO2OccursunderthefollowingIntenseLight(highO2HighPhotorespirationisestimatedtoreducephotosyntheticefficiencyby25%protectagainstreactiveO2byconsumingO2andreleasingribulose1,5-bisphosphatecarboxylase/oxygenase(RubiscocanaddO2toRuBP,whichleadstolossofRuBP,theessentialCO2acceptorduringCO2fixationsalvagingthecarbonsfrom2-phosphoglycolate(2-磷酸乙醇酸乙醇 乙醛甘油
過氧化物酶甘氨光呼吸中的CO2Theoxygenasereationofrubisco-乙醇酸途徑C4*BothconvertCO2intoa4carbon ntshavedevelopedwaystolimittheamountofphotorespirationC4CAMCarbonassimilation(碳同化)inC4manynts,growinthetropics,suchasmaize玉米,sugarcane甘蔗,andsorghum高粱mesophyllcells(葉肉細(xì)胞bundle-sheathcells(維管束鞘細(xì)胞C4nts,CO2FixationandRubiscoActivityAreSpatiallymesophyllcell(葉肉細(xì)胞ATP驅(qū)動(dòng)的CO2BSC(維管束鞘細(xì)胞HowdoestheC4PathwayBundlesheathcellsarefarfromthesurface–lessO2PEPCarboxylasedoesn’thaveanaffinityforO2→allowsnttocollectalotofCO2andconcentrateitinthebundlesheathcells(whereCrassulaceanacidCrassulaceanacidmetabolism(CAM)劍 龍?zhí)m
落地 蘆根 曇丹
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