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MendelianGeneticsAnOverviewPeaplantshaveseveraladvantagesforgenetics.Peaplantsareavailableinmanyvarietieswithdistinctheritablefeatures(characters)withdifferentvariants(traits).AnotheradvantageofpeasisthatMendelhadstrictcontroloverwhichplantsmatedwithwhich.Eachpeaplanthasmale
(stamens)andfemale
(carpal)sexualorgans.Innature,peaplantstypically
self-fertilize,fertilizingova
withtheirownsperm.However,Mendelcouldalso
movepollenfromoneplant
toanothertocross-pollinate
plants.Copyright?2002PearsonEducation,Inc.,publishingasBenjaminCummingsFig.14.1Inatypicalbreedingexperiment,Mendelwouldcross-pollinate(hybridize)twocontrasting,true-breedingpeavarieties.Thetrue-breedingparentsarethePgenerationandtheirhybridoffspringaretheF1generation.MendelwouldthenallowtheF1hybridstoself-pollinatetoproduceanF2generation.ItwasmainlyMendel’squantitativeanalysisofF2plantsthatrevealedthetwofundamentalprinciplesofheredity:thelawofsegregationandthelawofindependentassortment.Copyright?2002PearsonEducation,Inc.,publishingasBenjaminCummingsIftheblendingmodelwerecorrect,theF1hybridsfromacrossbetweenpurple-floweredandwhite-floweredpeaplantswouldhavepalepurpleflowers.Instead,theF1hybrids
allhavepurpleflowers,
justapurpleasthe
purple-flowered
parents.2.Bythelawofsegregation,thetwoallelesforacharactersarepackagedintoseparategametesCopyright?2002PearsonEducation,Inc.,publishingasBenjaminCummingsFig.14.2WhenMendelallowedtheF1plantstoself-fertilize,theF2generationincludedbothpurple-floweredandwhite-floweredplants.Thewhitetrait,absentintheF1,reappearedintheF2.Basedonalarge
samplesize,Mendel
recorded705
purple-floweredF2
plantsand224
white-floweredF2
plantsfromthe
originalcross.Copyright?2002PearsonEducation,Inc.,publishingasBenjaminCummingsFig.14.2VocabularyCharacter–heritablefeatureTrait–eachvariantforacharacterTrue-breeding–plantsthatself-pollinatealloffspringarethesamevarietyMonohybridcross–acrossthattrackstheinheritanceofasinglecharacterPgeneration–(parental)true-breedingF1-(firstfilial)offspringofPgenerationF2–(secondfilial)offspringfromF1crossVocabulary(continued)Allele-alternateversionofageneDominateallele–expressedintheheterozygoteRecessiveallele–notexpressedintheheterozygoteHomozygote–pairofidenticalallelesforacharacterHomozygousdominant-BBHomozygousrecessive-bbHeterozygote–twodifferentallelesforacharacter(Bb)Genotype–geneticmakeupPhenotype–appearanceofanorganismLawofSegregation-thetwoallelesforeachcharactersegregateduringgameteproduction
LawofIndependentAssortment–Eachsetofallelessegregatesindependently
Testcross–designedtorevealthegenotypeofanorganism
MendelianInheritanceandRulesofProbabilityRuleofMultiplication–theprobabilitythattwoeventswilloccursimultaneouslyistheproductoftheirindividualprobabilitiesProbabilitythataneggfromtheF1(Pp)willreceivep=?ProbabilitythatanspermfromtheF1(Pp)willreceivep=?Probabilitythataofoffspringreceivingtworecessiveallelesduringfertilization?x?=?RuleAppliestodihybridCrossesForadihybridcross,YyRrxYyRr,whatistheprobabilityofanF2havingthegenotypeYYRR?Gopage267andwork#9and#10IncompleteDominancePage267andwork#2CodominanceTwoallelesaffectthephenotypeinseparateanddistinguishableways.Neitherallelecanmasktheotherandbothareexpressedintheoffspringandnotinan“intermediate”form.Example:redflowersthatarecrossedwithwhiteflowersthatyieldredandwhiteflowers.1)Incattle,roancoatcolor(mixedredandwhitehairs)occursintheheterozygous(Rr)offspringofred(RR)andwhite(rr)homozygotes.Whentworoancattlearecrossed,thephenotypesoftheprogenyarefoundtobeintheratioof1red:2roan:1white.Whichofthefollowingcrossescouldproducethehighestpercentageofroancattle?A)roanxroanB)redxwhiteC)whitexroanD)redxroanE)Alloftheabovecrosseswouldgivethesamepercentageofroan.MultipleAllelesPage267andwork#6PleiotropyMostgeneshavemultiplephenotypiceffects.Theabilityofagenetoaffectanorganisminmanywaysiscalledpleiotropy.EpistasisEpistasisoccurswhenageneatonelocusaltersorinfluencestheexpressionofageneatasecondloci.Inthisexample,Cisforcolorandthedominateallelemustbepresentforpigment(color)tobeexpressed.PolygeneticInheritanceQualitativevariationusuallyindicatespolygenicinheritance.Thisoccurswhenthereisanadditiveeffectfromtwoormoregenes.Pigmentationinhumansiscontrolledbyatleastthree(3)separatelyinheritedgenes.
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