Systems biology - Wikipedia
文章推薦指數: 80 %
Systems biology is the computational and mathematical analysis and modeling of complex biological systems. It is a biology-based interdisciplinary field of ... Systemsbiology FromWikipedia,thefreeencyclopedia Jumptonavigation Jumptosearch Computationalandmathematicalmodelingofcomplexbiologicalsystems Anillustrationofthesystemsapproachtobiology Systemsbiologyisthecomputationalandmathematicalanalysisandmodelingofcomplexbiologicalsystems.Itisabiology-basedinterdisciplinaryfieldofstudythatfocusesoncomplexinteractionswithinbiologicalsystems,usingaholisticapproach(holisminsteadofthemoretraditionalreductionism)tobiologicalresearch.[1] Particularlyfromtheyear2000onwards,theconcepthasbeenusedwidelyinbiologyinavarietyofcontexts.TheHumanGenomeProjectisanexampleofappliedsystemsthinkinginbiologywhichhasledtonew,collaborativewaysofworkingonproblemsinthebiologicalfieldofgenetics.[2]Oneoftheaimsofsystemsbiologyistomodelanddiscoveremergentproperties,propertiesofcells,tissuesandorganismsfunctioningasasystemwhosetheoreticaldescriptionisonlypossibleusingtechniquesofsystemsbiology.[1][3]Thesetypicallyinvolvemetabolicnetworksorcellsignalingnetworks.[1][4] Contents 1Overview 2History 3Associateddisciplines 4Bioinformaticsanddataanalysis 5Creatingbiologicalmodels 6Seealso 7References 8Furtherreading 9Externallinks Overview[edit] Systemsbiologycanbeconsideredfromanumberofdifferentaspects. Asafieldofstudy,particularly,thestudyoftheinteractionsbetweenthecomponentsofbiologicalsystems,andhowtheseinteractionsgiverisetothefunctionandbehaviorofthatsystem(forexample,theenzymesandmetabolitesinametabolicpathwayortheheartbeats).[5][6][7] Asaparadigm,systemsbiologyisusuallydefinedinantithesistotheso-calledreductionistparadigm(biologicalorganisation),althoughitisconsistentwiththescientificmethod.Thedistinctionbetweenthetwoparadigmsisreferredtointhesequotations:"thereductionistapproachhassuccessfullyidentifiedmostofthecomponentsandmanyoftheinteractionsbut,unfortunately,offersnoconvincingconceptsormethodstounderstandhowsystempropertiesemerge ...thepluralismofcausesandeffectsinbiologicalnetworksisbetteraddressedbyobserving,throughquantitativemeasures,multiplecomponentssimultaneouslyandbyrigorousdataintegrationwithmathematicalmodels."(Saueretal.)[8]"Systemsbiology ...isaboutputtingtogetherratherthantakingapart,integrationratherthanreduction.Itrequiresthatwedevelopwaysofthinkingaboutintegrationthatareasrigorousasourreductionistprogrammes,butdifferent. ...Itmeanschangingourphilosophy,inthefullsenseoftheterm."(DenisNoble)[7] Asaseriesofoperationalprotocolsusedforperformingresearch,namelyacyclecomposedoftheory,analyticorcomputationalmodellingtoproposespecifictestablehypothesesaboutabiologicalsystem,experimentalvalidation,andthenusingthenewlyacquiredquantitativedescriptionofcellsorcellprocessestorefinethecomputationalmodelortheory.[9]Sincetheobjectiveisamodeloftheinteractionsinasystem,theexperimentaltechniquesthatmostsuitsystemsbiologyarethosethataresystem-wideandattempttobeascompleteaspossible.Therefore,transcriptomics,metabolomics,proteomicsandhigh-throughputtechniquesareusedtocollectquantitativedatafortheconstructionandvalidationofmodels.[10] Astheapplicationofdynamicalsystemstheorytomolecularbiology.Indeed,thefocusonthedynamicsofthestudiedsystemsisthemainconceptualdifferencebetweensystemsbiologyandbioinformatics.[11] Asasocioscientificphenomenondefinedbythestrategyofpursuingintegrationofcomplexdataabouttheinteractionsinbiologicalsystemsfromdiverseexperimentalsourcesusinginterdisciplinarytoolsandpersonnel.[12] History[edit] Systemsbiologywasbegunasanewfieldofsciencearound2000,whentheInstituteforSystemsBiologywasestablishedinSeattleinanefforttolure"computational"typepeoplewhoitwasfeltwerenotattractedtotheacademicsettingsoftheuniversity.Theinstitutedidnothaveacleardefinitionofwhatthefieldactuallywas:roughlybringingtogetherpeoplefromdiversefieldstousecomputerstoholisticallystudybiologyinnewways.[13]ADepartmentofSystemsBiologyatHarvardMedicalSchoolwaslaunchedin2003.[14]In2006itwaspredictedthatthebuzzgeneratedbythe"veryfashionable"newconceptwouldcauseallthemajoruniversitiestoneedasystemsbiologydepartment,thusthattherewouldbecareersavailableforgraduateswithamodicumofabilityincomputerprogrammingandbiology.[13]In2006theNationalScienceFoundationputforwardachallengetobuildamathematicalmodelofthewholecell.[citationneeded]In2012thefirstwhole-cellmodelofMycoplasmagenitaliumwasachievedbytheKarrLaboratoryattheMountSinaiSchoolofMedicineinNewYork.Thewhole-cellmodelisabletopredictviabilityofM.genitaliumcellsinresponsetogeneticmutations.[15] Anearlierprecursorofsystemsbiology,asadistinctdiscipline,mayhavebeenbysystemstheoristMihajloMesarovicin1966withaninternationalsymposiumattheCaseInstituteofTechnologyinCleveland,Ohio,titledSystemsTheoryandBiology.Mesarovicpredictedthatperhapsinthefuturetherewouldbesuchasthingas"systemsbiology".[16][17] AccordingtoRobertRoseninthe1960s,holisticbiologyhadbecomepassébytheearly20thcentury,asmoreempiricalsciencedominatedbymolecularchemistryhadbecomepopular.[17]Echoinghimfortyyearslaterin2006Klingwritesthatthesuccessofmolecularbiologythroughoutthe20thcenturyhadsuppressedholisticcomputationalmethods.[13]By2011theNationalInstitutesofHealthhadmadegrantmoneyavailabletosupportovertensystemsbiologycentersintheUnitedStates,[18]butby2012Hunterwritesthatsystemsbiologyhadnotliveduptothehype,havingpromisedmorethanitachieved,whichhadcausedittobecomeasomewhatminorfieldwithfewpracticalapplications.Nonetheless,proponentshopedthatitmightonceprovemoreusefulinthefuture.[19] Showstrendsinsystemsbiologyresearchbypresentingthenumberofarticlesoutofthetop30citedsystemsbiologypapersduringthattimewhichincludeaspecifictopic[20] AnimportantmilestoneinthedevelopmentofsystemsbiologyhasbecometheinternationalprojectPhysiome.[citationneeded] Associateddisciplines[edit] Overviewofsignaltransductionpathways Accordingtotheinterpretationofsystemsbiologyasusinglargedatasetsusinginterdisciplinarytools,atypicalapplicationismetabolomics,whichisthecompletesetofallthemetabolicproducts,metabolites,inthesystemattheorganism,cell,ortissuelevel.[21] Itemsthatmaybeacomputerdatabaseinclude:phenomics,organismalvariationinphenotypeasitchangesduringitslifespan;genomics,organismaldeoxyribonucleicacid(DNA)sequence,includingintra-organismalcellspecificvariation.(i.e.,telomerelengthvariation);epigenomics/epigenetics,organismalandcorrespondingcellspecifictranscriptomicregulatingfactorsnotempiricallycodedinthegenomicsequence.(i.e.,DNAmethylation,Histoneacetylationanddeacetylation,etc.);transcriptomics,organismal,tissueorwholecellgeneexpressionmeasurementsbyDNAmicroarraysorserialanalysisofgeneexpression;interferomics,organismal,tissue,orcell-leveltranscriptcorrectingfactors(i.e.,RNAinterference),proteomics,organismal,tissue,orcelllevelmeasurementsofproteinsandpeptidesviatwo-dimensionalgelelectrophoresis,massspectrometryormulti-dimensionalproteinidentificationtechniques(advancedHPLCsystemscoupledwithmassspectrometry).Subdisciplinesincludephosphoproteomics,glycoproteomicsandothermethodstodetectchemicallymodifiedproteins;glycomics,organismal,tissue,orcell-levelmeasurementsofcarbohydrates;lipidomics,organismal,tissue,orcelllevelmeasurementsoflipids.[citationneeded] Themolecularinteractionswithinthecellarealsostudied,thisiscalledinteractomics.[22]Adisciplineinthisfieldofstudyisprotein-proteininteractions,althoughinteractomicsincludestheinteractionsofothermolecules.[citationneeded]Neuroelectrodynamics,wherethecomputer'sorabrain'scomputingfunctionasadynamicsystemisstudiedalongwithits(bio)physicalmechanisms;[23]andfluxomics,measurementsoftheratesofmetabolicreactionsinabiologicalsystem(cell,tissue,ororganism).[21] Inapproachingasystemsbiologyproblemtherearetwomainapproaches.Thesearethetopdownandbottomupapproach.Thetopdownapproachtakesasmuchofthesystemintoaccountaspossibleandrelieslargelyonexperimentalresults.TheRNA-Seqtechniqueisanexampleofanexperimentaltopdownapproach.Conversely,thebottomupapproachisusedtocreatedetailedmodelswhilealsoincorporatingexperimentaldata.Anexampleofthebottomupapproachistheuseofcircuitmodelstodescribeasimplegenenetwork.[24] VarioustechnologiesutilizedtocapturedynamicchangesinmRNA,proteins,andpost-translationalmodifications.Mechanobiology,forcesandphysicalpropertiesatallscales,theirinterplaywithotherregulatorymechanisms;[25]biosemiotics,analysisofthesystemofsignrelationsofanorganismorotherbiosystems;Physiomics,asystematicstudyofphysiomeinbiology. Cancersystemsbiologyisanexampleofthesystemsbiologyapproach,whichcanbedistinguishedbythespecificobjectofstudy(tumorigenesisandtreatmentofcancer).Itworkswiththespecificdata(patientsamples,high-throughputdatawithparticularattentiontocharacterizingcancergenomeinpatienttumoursamples)andtools(immortalizedcancercelllines,mousemodelsoftumorigenesis,xenograftmodels,high-throughputsequencingmethods,siRNA-basedgeneknockingdownhigh-throughputscreenings,computationalmodelingoftheconsequencesofsomaticmutationsandgenomeinstability).[26]Thelong-termobjectiveofthesystemsbiologyofcancerisabilitytobetterdiagnosecancer,classifyitandbetterpredicttheoutcomeofasuggestedtreatment,whichisabasisforpersonalizedcancermedicineandvirtualcancerpatientinmoredistantprospective.Significanteffortsincomputationalsystemsbiologyofcancerhavebeenmadeincreatingrealisticmulti-scaleinsilicomodelsofvarioustumours.[27] Thesystemsbiologyapproachofteninvolvesthedevelopmentofmechanisticmodels,suchasthereconstructionofdynamicsystemsfromthequantitativepropertiesoftheirelementarybuildingblocks.[28][29][30][31]Forinstance,acellularnetworkcanbemodelledmathematicallyusingmethodscomingfromchemicalkinetics[32]andcontroltheory.Duetothelargenumberofparameters,variablesandconstraintsincellularnetworks,numericalandcomputationaltechniquesareoftenused(e.g.,fluxbalanceanalysis).[30][32] Bioinformaticsanddataanalysis[edit] Otheraspectsofcomputerscience,informatics,andstatisticsarealsousedinsystemsbiology.Theseincludenewformsofcomputationalmodels,suchastheuseofprocesscalculitomodelbiologicalprocesses(notableapproachesincludestochasticπ-calculus,BioAmbients,BetaBinders,BioPEPA,andBranecalculus)andconstraint-basedmodeling;integrationofinformationfromtheliterature,usingtechniquesofinformationextractionandtextmining;[33]developmentofonlinedatabasesandrepositoriesforsharingdataandmodels,approachestodatabaseintegrationandsoftwareinteroperabilityvialoosecouplingofsoftware,websitesanddatabases,orcommercialsuits;network-basedapproachesforanalyzinghighdimensionalgenomicdatasets.Forexample,weightedcorrelationnetworkanalysisisoftenusedforidentifyingclusters(referredtoasmodules),modelingtherelationshipbetweenclusters,calculatingfuzzymeasuresofcluster(module)membership,identifyingintramodularhubs,andforstudyingclusterpreservationinotherdatasets;pathway-basedmethodsforomicsdataanalysis,e.g.approachestoidentifyandscorepathwayswithdifferentialactivityoftheirgene,protein,ormetabolitemembers.[34]Muchoftheanalysisofgenomicdatasetsalsoincludeidentifyingcorrelations.Additionally,asmuchoftheinformationcomesfromdifferentfields,thedevelopmentofsyntacticallyandsemanticallysoundwaysofrepresentingbiologicalmodelsisneeded.[35] Creatingbiologicalmodels[edit] Asimplethreeproteinnegativefeedbackloopmodeledwithmassactionkineticdifferentialequations.EachproteininteractionisdescribedbyaMichaelis–Mentenreaction.[36] Researchersbeginbychoosingabiologicalpathwayanddiagrammingalloftheproteininteractions.Afterdeterminingalloftheinteractionsoftheproteins,massactionkineticsisutilizedtodescribethespeedofthereactionsinthesystem.Massactionkineticswillprovidedifferentialequationstomodelthebiologicalsystemasamathematicalmodelinwhichexperimentscandeterminetheparametervaluestouseinthedifferentialequations.[37]Theseparametervalueswillbethereactionratesofeachproteinsinteractioninthesystem.Thismodeldeterminesthebehaviorofcertainproteinsinbiologicalsystemsandbringnewinsighttothespecificactivitiesofindividualproteins.Sometimesitisnotpossibletogatherallreactionratesofasystem.Unknownreactionratesaredeterminedbysimulatingthemodelofknownparametersandtargetbehaviorwhichprovidespossibleparametervalues.[38][36] Theuseofconstraint-basedreconstructionandanalysis(COBRA)methodshasbecomepopularamongsystemsbiologiststosimulateandpredictthemetabolicphenotypes,usinggenome-scalemodels.Oneofthemethodsisthefluxbalanceanalysis(FBA)approach,bywhichonecanstudythebiochemicalnetworksandanalyzetheflowofmetabolitesthroughaparticularmetabolicnetwork,bymaximizingtheobjectofinterest.[39] PlotofConcentrationsvstimeforthesimplethreeproteinnegativefeedbackloop.Allparametersaresettoeither0or1forinitialconditions.Thereactionisallowedtoproceeduntilithitsequilibrium.Thisplotisofthechangeineachproteinovertime. Seealso[edit] Systemsscienceportal Biologyportal Evolutionarybiologyportal Biologicalcomputation BioSystems(journal) Computationalbiology Exposome Interactome Listofomicstopicsinbiology Metabolicnetworkmodelling Modellingbiologicalsystems Molecularpathologicalepidemiology Networkbiology Networkmedicine Noogenesis Syntheticbiology Systemsbiomedicine Systemsimmunology Systemsmedicine TIARA(database) livingsystems References[edit] ^abcTavassoly,Iman;Goldfarb,Joseph;Iyengar,Ravi(2018-10-04)."Systemsbiologyprimer:thebasicmethodsandapproaches".EssaysinBiochemistry.62(4):487–500.doi:10.1042/EBC20180003.ISSN 0071-1365.PMID 30287586.S2CID 52922135. ^Zewail,Ahmed(2008).PhysicalBiology:FromAtomstoMedicine.ImperialCollegePress.p. 339. ^Longo,Giuseppe;Montévil,Maël(2014).PerspectivesonOrganisms-Springer.LectureNotesinMorphogenesis.doi:10.1007/978-3-642-35938-5.ISBN 978-3-642-35937-8.S2CID 27653540. ^BuZ,CallawayDJ(2011)."ProteinsMOVE!Proteindynamicsandlong-rangeallosteryincellsignaling".ProteinStructureandDiseases.AdvancesinProteinChemistryandStructuralBiology.Vol. 83.pp. 163–221.doi:10.1016/B978-0-12-381262-9.00005-7.ISBN 978-0-123-81262-9.PMID 21570668. ^Snoep,JackyL;Westerhoff,HansV(2005)."Fromisolationtointegration,asystemsbiologyapproachforbuildingtheSiliconCell".InAlberghina,Lilia;Westerhoff,HansV(eds.).SystemsBiology:DefinitionsandPerspectives.TopicsinCurrentGenetics.Vol. 13.Berlin:Springer-Verlag.pp. 13–30.doi:10.1007/b106456.ISBN 978-3-540-22968-1. ^"SystemsBiology:the21stCenturyScience".InstituteforSystemsBiology.Retrieved15June2011. ^abNoble,Denis(2006).Themusicoflife:Biologybeyondthegenome.Oxford:OxfordUniversityPress.p. 176.ISBN 978-0-19-929573-9. ^Sauer,Uwe;Heinemann,Matthias;Zamboni,Nicola(27April2007)."Genetics:GettingClosertotheWholePicture".Science.316(5824):550–551.doi:10.1126/science.1142502.PMID 17463274.S2CID 42448991. ^Kholodenko,BorisN;Sauro,HerbertM(2005)."Mechanisticandmodularapproachestomodelingandinferenceofcellularregulatorynetworks".InAlberghina,Lilia;Westerhoff,HansV(eds.).SystemsBiology:DefinitionsandPerspectives.TopicsinCurrentGenetics.Vol. 13.Berlin:Springer-Verlag.pp. 357–451.doi:10.1007/b136809.ISBN 978-3-540-22968-1. ^ChiaraRomualdi;GerolamoLanfranchi(2009)."StatisticalToolsforGeneExpressionAnalysisandSystemsBiologyandRelatedWebResources".InStephenKrawetz(ed.).BioinformaticsforSystemsBiology(2nd ed.).HumanaPress.pp. 181–205.doi:10.1007/978-1-59745-440-7_11.ISBN 978-1-59745-440-7. ^Voit,Eberhard(2012).AFirstCourseinSystemsBiology.GarlandScience.ISBN 9780815344674. ^Baitaluk,M.(2009)."SystemBiologyofGeneRegulation".BiomedicalInformatics.MethodsinMolecularBiology.Vol. 569.pp. 55–87.doi:10.1007/978-1-59745-524-4_4.ISBN 978-1-934115-63-3.PMID 19623486. ^abcKling,Jim(3March2006)."WorkingtheSystems".Science.Retrieved15June2011. ^"HMSlaunchesnewdepartmenttostudysystemsbiology".HarvardGazette.September23,2003. ^Karr,JonathanR.;Sanghvi,JayoditaC.;Macklin,DerekN.;Gutschow,MiriamV.;Jacobs,JaredM.;Bolival,Benjamin;Assad-Garcia,Nacyra;Glass,JohnI.;Covert,MarkusW.(July2012)."AWhole-CellComputationalModelPredictsPhenotypefromGenotype".Cell.150(2):389–401.doi:10.1016/j.cell.2012.05.044.PMC 3413483.PMID 22817898. ^Mesarovic,MihajloD.(1968).SystemsTheoryandBiology.Berlin:Springer-Verlag. ^abRosen,Robert(5July1968)."AMeansTowardaNewHolism".Science.161(3836):34–35.Bibcode:1968Sci...161...34M.doi:10.1126/science.161.3836.34.JSTOR 1724368. ^"SystemsBiology-NationalInstituteofGeneralMedicalSciences".Archivedfromtheoriginalon19October2013.Retrieved12December2012. ^Hunter,Philip(May2012)."BackdowntoEarth:Evenifithasnotyetliveduptoitspromises,systemsbiologyhasnowmaturedandisabouttodeliveritsfirstresults".EMBOReports.13(5):408–411.doi:10.1038/embor.2012.49.PMC 3343359.PMID 22491028. ^Zou,Yawen;Laubichler,ManfredD.(2018-07-25)."Fromsystemstobiology:Acomputationalanalysisoftheresearcharticlesonsystemsbiologyfrom1992to2013".PLOSONE.13(7):e0200929.Bibcode:2018PLoSO..1300929Z.doi:10.1371/journal.pone.0200929.ISSN 1932-6203.PMC 6059489.PMID 30044828. ^abCascante,Marta;Marin,Silvia(2008-09-30)."Metabolomicsandfluxomicsapproaches".EssaysinBiochemistry.45:67–82.doi:10.1042/bse0450067.ISSN 0071-1365.PMID 18793124. ^Cusick,MichaelE.;Klitgord,Niels;Vidal,Marc;Hill,DavidE.(2005-10-15)."Interactome:gatewayintosystemsbiology".HumanMolecularGenetics.14(suppl_2):R171–R181.doi:10.1093/hmg/ddi335.ISSN 0964-6906.PMID 16162640. ^Aur,Dorian(2012)."FromNeuroelectrodynamicstoThinkingMachines".CognitiveComputation.4(1):4–12.doi:10.1007/s12559-011-9106-3.ISSN 1866-9956.S2CID 12355069. ^Loor,KhuramShahzadandJuanJ.(2012-07-31)."ApplicationofTop-DownandBottom-upSystemsApproachesinRuminantPhysiologyandMetabolism".CurrentGenomics.13(5):379–394.doi:10.2174/138920212801619269.PMC 3401895.PMID 23372424. ^Spill,Fabian;Bakal,Chris;Mak,Michael(2018)."MechanicalandSystemsBiologyofCancer".ComputationalandStructuralBiotechnologyJournal.16:237–245.arXiv:1807.08990.Bibcode:2018arXiv180708990S.doi:10.1016/j.csbj.2018.07.002.PMC 6077126.PMID 30105089. ^Barillot,Emmanuel;Calzone,Laurence;Hupe,Philippe;Vert,Jean-Philippe;Zinovyev,Andrei(2012).ComputationalSystemsBiologyofCancer.Chapman&Hall/CRCMathematical&ComputationalBiology.p. 461.ISBN 978-1439831441. ^ Byrne,HelenM.(2010)."Dissectingcancerthroughmathematics:fromthecelltotheanimalmodel".NatureReviewsCancer.10(3):221–230.doi:10.1038/nrc2808.PMID 20179714.S2CID 24616792. ^Gardner,Timothy.S;diBernardo,Diego;Lorenz,David;Collins,JamesJ.(4July2003)."InferringGeneticNetworksandIdentifyingCompoundModeofActionviaExpressionProfiling".Science.301(5629):102–105.Bibcode:2003Sci...301..102G.doi:10.1126/science.1081900.PMID 12843395.S2CID 8356492. ^diBernardo,Diego;Thompson,MichaelJ.;Gardner,TimothyS.;Chobot,SarahE.;Eastwood,ErinL.;Wojtovich,AndrewP.;Elliott,SeanJ.;Schaus,ScottE.;Collins,JamesJ.(March2005)."Chemogenomicprofilingonagenome-widescaleusingreverse-engineeredgenenetworks".NatureBiotechnology.23(3):377–383.doi:10.1038/nbt1075.PMID 15765094.S2CID 16270018. ^abTavassoly,Iman(2015).DynamicsofCellFateDecisionMediatedbytheInterplayofAutophagyandApoptosisinCancerCells.SpringerTheses.SpringerInternationalPublishing.doi:10.1007/978-3-319-14962-2.ISBN 978-3-319-14961-5.S2CID 89307028. ^Korkut,A;Wang,W;Demir,E;Aksoy,BA;Jing,X;Molinelli,EJ;Babur,Ö;Bemis,DL;OnurSumer,S;Solit,DB;Pratilas,CA;Sander,C(18August2015)."Perturbationbiologynominatesupstream-downstreamdrugcombinationsinRAFinhibitorresistantmelanomacells".eLife.4.doi:10.7554/eLife.04640.PMC 4539601.PMID 26284497. ^abGupta,Ankur;Rawlings,JamesB.(April2014)."ComparisonofParameterEstimationMethodsinStochasticChemicalKineticModels:ExamplesinSystemsBiology".AIChEJournal.60(4):1253–1268.doi:10.1002/aic.14409.ISSN 0001-1541.PMC 4946376.PMID 27429455. ^Ananadou,Sophia;Kell,Douglas;Tsujii,Jun-ichi(December2006)."Textmininganditspotentialapplicationsinsystemsbiology".TrendsinBiotechnology.24(12):571–579.doi:10.1016/j.tibtech.2006.10.002.PMID 17045684. ^Glaab,Enrico;Schneider,Reinhard(2012)."PathVar:analysisofgeneandproteinexpressionvarianceincellularpathwaysusingmicroarraydata".Bioinformatics.28(3):446–447.doi:10.1093/bioinformatics/btr656.PMC 3268235.PMID 22123829. ^Bardini,R.;Politano,G.;Benso,A.;DiCarlo,S.(2017-01-01)."Multi-levelandhybridmodellingapproachesforsystemsbiology".ComputationalandStructuralBiotechnologyJournal.15:396–402.doi:10.1016/j.csbj.2017.07.005.ISSN 2001-0370.PMC 5565741.PMID 28855977. ^abTranstrum,MarkK.;Qiu,Peng(2016-05-17)."BridgingMechanisticandPhenomenologicalModelsofComplexBiologicalSystems".PLOSComputationalBiology.12(5):e1004915.arXiv:1509.06278.Bibcode:2016PLSCB..12E4915T.doi:10.1371/journal.pcbi.1004915.ISSN 1553-7358.PMC 4871498.PMID 27187545. ^Chellaboina,V.;Bhat,S.P.;Haddad,W.M.;Bernstein,D.S.(August2009)."Modelingandanalysisofmass-actionkinetics".IEEEControlSystemsMagazine.29(4):60–78.doi:10.1109/MCS.2009.932926.ISSN 1941-000X.S2CID 12122032. ^Brown,KevinS.;Sethna,JamesP.(2003-08-12)."Statisticalmechanicalapproachestomodelswithmanypoorlyknownparameters".PhysicalReviewE.68(2):021904.Bibcode:2003PhRvE..68b1904B.doi:10.1103/physreve.68.021904.ISSN 1063-651X.PMID 14525003. ^Orth,JeffreyD;Thiele,Ines;Palsson,BernhardØ(March2010)."Whatisfluxbalanceanalysis?".NatureBiotechnology.28(3):245–248.doi:10.1038/nbt.1614.ISSN 1087-0156.PMC 3108565.PMID 20212490. Furtherreading[edit] Klipp,Edda;Liebermeister,Wolfram;Wierling,Christoph;Kowald,Axel(2016).SystemsBiology-ATextbook,2ndedition.Wiley.ISBN 978-3-527-33636-4. AsfarS.Azmi,ed.(2012).SystemsBiologyinCancerResearchandDrugDiscovery.ISBN 978-94-007-4819-4. Kitano,Hiroaki(15October2001).FoundationsofSystemsBiology.MITPress.ISBN 978-0-262-11266-6. Werner,Eric(29March2007)."Allsystemsgo".Nature.446(7135):493–494.Bibcode:2007Natur.446..493W.doi:10.1038/446493a.providesacomparativereviewofthreebooks: Alon,Uri(7July2006).AnIntroductiontoSystemsBiology:DesignPrinciplesofBiologicalCircuits.Chapman&Hall.ISBN 978-1-58488-642-6. Kaneko,Kunihiko(15September2006).Life:AnIntroductiontoComplexSystemsBiology.Springer-Verlag.Bibcode:2006lics.book.....K.ISBN 978-3-540-32666-3. Palsson,BernhardO.(16January2006).SystemsBiology:PropertiesofReconstructedNetworks.CambridgeUniversityPress.ISBN 978-0-521-85903-5. WernerDubitzky;OlafWolkenhauer;HirokiYokota;Kwan-HyunCho,eds.(13August2013).EncyclopediaofSystemsBiology.Springer-Verlag.ISBN 978-1-4419-9864-4. Externallinks[edit] LookupsystemsbiologyinWiktionary,thefreedictionary. BiologicalSystemsinbio-physics-wiki vteBiology Introduction(Genetics,Evolution) Outline History Timeline Index FundamentalsOverview Science Life Properties(Adaptation, Energyprocessing, Growth, Order, Regulation, Reproduction, Responsetoenvironment) Hierarchyoflife(Atom> Molecule> Organelle> Cell> Tissue> Organ> Organsystem> Organism> Population> Community> Ecosystem> Biosphere) Reductionistic Emergentproperty Mechanistic Scientificmethod Theory Law Peerreview Biologyjournals Chemicalbasis Atoms Aminoacids Carbohydrates Chemicalbond Chemicalelement Lipids Matter Molecules Monomer Nucleicacids Organiccompounds pH Polymer Proteins Water Cells ATP Cellcycle Celltheory Cellsignaling Cellularrespiration Energytransformation Enzyme Eukaryote Fermentation Metabolism Meiosis Mitosis Photosynthesis Prokaryote Genetics DNA Epigenetics Evolutionarydevelopmentalbiology Geneexpression Generegulation Genomes Mendelianinheritance Post-transcriptionalmodification Evolution Adaptation Earliestknownlifeforms Function Geneticdrift Geneflow Historyoflife Macroevolution Microevolution Mutation Naturalselection Phylogenetics Speciation Taxonomy Diversity Archaea Animals Bacteria Biodiversity Fungus Invertebrates Plants Protists Vertebrates Viruses Plantformandfunction Epidermis(botany) Flower Groundtissue Leaf Phloem Plantstem Root Shoot Vascularplant Vasculartissue Xylem Animalformandfunction Breathing Circulatorysystem Endocrinesystem Digestivesystem Homeostasis Immunesystem Internalenvironment Muscularsystem Nervoussystem Reproductivesystem Respiratorysystem Ecology Biogeochemicalcycle Biologicalinteraction Biomass Biomes Biosphere Climate Climatechange Community Conservation Ecosystem Habitat niche Microbiome Populationdynamics Resources ResearchmethodsLaboratorytechniques Geneticengineering Transformation Gelelectrophoresis Chromatography Centrifugation Cellculture DNAsequencing DNAmicroarray Greenfluorescentprotein vector Enzymeassay Proteinpurification Westernblot Northernblot Southernblot Restrictionenzyme Polymerasechainreaction Two-hybridscreening invivo invitro insilico Fieldtechniques Belttransect markandrecapture speciesdiscoverycurve Branches Anatomy Biochemistry Biogeography Biomechanics Biophysics Bioinformatics Biosemiotics Biostatistics Biotechnology Botany Cellbiology Cellularmicrobiology Chronobiology Cognitivebiology Computationalbiology Conservationbiology Developmentalbiology Ecology Epidemiology Epigenetics Evolutionarybiology Evolutionarydevelopmentalbiology Genetics Genomics Histology Humanbiology Immunology Lipidology Marinebiology Mathematicalbiology Microbiology Molecularbiology Mycology Neuroscience Paleontology Parasitology Pathology Pharmacology Phycology Physiology Reproductivebiology Sociobiology Structuralbiology Syntheticbiology Systematics Systemsbiology Virology Zoology Glossaries Biology Botanicalterms Ecologicalterms Plantmorphologyterms Biologyportal Category Commons WikiProject vteBranchesofbiology Abiogenesis Aerobiology Agrostology Anatomy Astrobiology Bacteriology Biochemistry Biogeography Biogeology Biohistory Bioinformatics Biologicalengineering Biomechanics Biophysics Biosemiotics Biostatistics Biotechnology Botany Cellbiology Cellularmicrobiology Chemicalbiology Chronobiology Cognitivebiology Computationalbiology Conservationbiology Cryobiology Cytogenetics Dendrology Developmentalbiology Ecologicalgenetics Ecology Embryology Epidemiology Epigenetics Evolutionarybiology Freshwaterbiology Genetics Genomics Geobiology Gerontology Herpetology Histology Humanbiology Ichthyology Immunology Lipidology Mammalogy Marinebiology Mathematicalbiology Microbiology Molecularbiology Mycology Neontology Neuroscience Nutrition Ornithology Osteology Paleontology Parasitology Pathology Pharmacology Photobiology Phycology Phylogenetics Physiology Pomology Primatology Proteomics Protistology Quantumbiology Reproductivebiology Sociobiology Structuralbiology Syntheticbiology Systematics Systemsbiology Taxonomy Teratology Toxicology Virology Virophysics Xenobiology Zoology Seealso Historyofbiology NobelPrizeinPhysiologyorMedicine Timelineofbiologyandorganicchemistry vteOmicsGenomics Cognitivegenomics Computationalgenomics Comparativegenomics Functionalgenomics Genomeproject HumanGenomeProject Metagenomics Pangenomics Personalgenomics Populationgenomics Socialgenomics Structuralgenomics Bioinformatics Biochip Cheminformatics Chemogenomics Connectomics HumanConnectomeProject Epigenomics HumanEpigenomeProject Glycomics Immunomics Lipidomics Metabolomics Microbiomics Nutrigenomics Paleopolyploidy Pharmacogenetics Pharmacogenomics Systemsbiology Toxicogenomics Transcriptomics Structuralbiology Proteomics Humanproteomeproject Call-mapproteomics Structure-baseddrugdesign Expressionproteomics Researchtools 2-Delectrophoresis Massspectrometer Electrosprayionization Matrix-assistedlaserdesorptionionization Matrix-assistedlaserdesorptionionization-timeofflightmassspectrometer Microfluidic-basedtools Isotopeaffinitytags Chromosomeconformationcapture Organizations DNADataBankofJapan(JP) EuropeanMolecularBiologyLaboratory(EU) NationalInstitutesofHealth(USA) WellcomeSangerInstitute(UK) List Category vteSystemsscienceSystemtypes Anatomical Art Biological Complex Complexadaptive Conceptual Coupledhuman–environment Database Dynamical Ecological Economic Energy Formal Holarchic Information Legal Measurement Metric Multi-agent Nervous Nonlinear Operating Planetary Political Sensory Social Star Writing Concepts Doublingtime Leveragepoints Limitingfactor Negativefeedback Positivefeedback Theoreticalfields Chaostheory Complexsystems Controltheory Cybernetics Earthsystemscience Livingsystems Sociotechnicalsystem Systemics Urbanmetabolism World-systemstheory Analysis Biology Dynamics Ecology Engineering Neuroscience Pharmacology Psychology Theory(Systemsthinking) Scientists AlexanderBogdanov RussellL.Ackoff WilliamRossAshby RuzenaBajcsy BélaH.Bánáthy GregoryBateson AnthonyStaffordBeer RichardE.Bellman LudwigvonBertalanffy MargaretBoden KennethE.Boulding MurrayBowen KathleenCarley MaryCartwright C.WestChurchman ManfredClynes GeorgeDantzig EdsgerW.Dijkstra FredEmery HeinzvonFoerster StephanieForrest JayWrightForrester BarbaraGrosz CharlesA. S.Hall MikeJackson LydiaKavraki JamesJ.Kay FainaM.Kirillova GeorgeKlir AllennaLeonard EdwardNortonLorenz NiklasLuhmann HumbertoMaturana MargaretMead DonellaMeadows MihajloD.Mesarovic JamesGrierMiller RadhikaNagpal HowardT.Odum TalcottParsons IlyaPrigogine QianXuesen AnatolRapoport JohnSeddon PeterSenge ClaudeShannon KatiaSycara EricTrist FranciscoVarela ManuelaM.Veloso KevinWarwick NorbertWiener JenniferWilby AnthonyWilden Applications Systemstheoryinanthropology Systemstheoryinarchaeology Systemstheoryinpoliticalscience Organizations List PrincipiaCybernetica Category Portal Commons Authoritycontrol:Nationallibraries France(data) Germany Israel UnitedStates Retrievedfrom"https://en.wikipedia.org/w/index.php?title=Systems_biology&oldid=1073459168" Categories:SystemsbiologyBioinformaticsComputationalfieldsofstudyHiddencategories:ArticleswithshortdescriptionShortdescriptionmatchesWikidataAllarticleswithunsourcedstatementsArticleswithunsourcedstatementsfromOctober2019ArticleswithunsourcedstatementsfromDecember2020ArticleswithBNFidentifiersArticleswithGNDidentifiersArticleswithJ9UidentifiersArticleswithLCCNidentifiers Navigationmenu Personaltools NotloggedinTalkContributionsCreateaccountLogin Namespaces ArticleTalk English Views ReadEditViewhistory More Search Navigation MainpageContentsCurrenteventsRandomarticleAboutWikipediaContactusDonate Contribute HelpLearntoeditCommunityportalRecentchangesUploadfile Tools WhatlinkshereRelatedchangesUploadfileSpecialpagesPermanentlinkPageinformationCitethispageWikidataitem Print/export DownloadasPDFPrintableversion Inotherprojects WikimediaCommons Languages العربيةAzərbaycancaবাংলাBân-lâm-gúБългарскиCatalàČeštinaDeutschEestiΕλληνικάEspañolEuskaraفارسیFrançaisGalego한국어हिन्दीBahasaIndonesiaItalianoעבריתMagyarМакедонскиNederlands日本語PolskiPortuguêsRomânăРусскийSlovenčinaСрпски/srpskiSrpskohrvatski/српскохрватскиSuomiSvenskaதமிழ்ไทยTürkçeУкраїнськаTiếngViệt中文 Editlinks
延伸文章資訊
- 1What Is Systems Biology · Institute for Systems Biology
Systems biology is based on the understanding that the whole is greater than the sum of the parts...
- 2systems biology - Encyclopedia Britannica
systems biology, the study of the interactions and behaviour of the components of biological enti...
- 3Systems biology - Wikipedia
Systems biology is the computational and mathematical analysis and modeling of complex biological...
- 4Systems Biology of the Cell - Nature
In the words of Marc Kirschner (2005), "Systems biology is the study of the behavior of complex b...
- 5What is systems biology? | Physiology - Frontiers
Systems biology is an experimental science, and many definitions of systems biology include repea...