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image CHAPTER 17- GENETICS, Cross link: every gametes from parent…
CHAPTER 17- GENETICS
Replication of DNA
replicon
primer RNA
allels
genotype
phenotype
DNA polymerase
semi conservation replication
Replication fork
Mutation
point mutation
deletion
inversion
initial sequence
insertion
causes
mutagens
normal replication
nitrous acid
insertion sequence
transposon
dihybrid inhereitance
#
effects
somatic mutation
DNA repair process
monohybrid Crosses
incomplete dominance
parental generation
first filial generation f1
interbreed
f2 generation
homozygote parents
heterozygote parent
crossing heterozygote
cross within themselves
selfing
punnett square
parental generation
f1 generation
interbreeding members
f2 generation
progeny
parents
gametes
homologous chromosome
prophase I
Metaphase I
telophase I
metaphase II
telophase II
complete dominance
recessive
dominant
genetype
phenotype
test cross
pure breed line
progeny
Multiple alleles
ovule parent
pollent parent
Dihybrid Crosses
Independent assortment
Genes on separate chromosome
metaphase plate
homologous chromosomes
Dihybrid cross
dominant phoenotype
recessive phenotype
dihybrid inheritance
crossing-over
same chromosome
linkage
genes
#
double homozygous
recombinant chromosome
parental
type chromosome
map unit
centimorgan
recombinant type
independent assortment
hemicombinant phenotype
multiple genes
Allel
wild type
aba
abi-3
epistasis
quantitative trait loci
pleiotropic effects
other aspects of inheritance
Maternal Inheritance
Biparental inheritance
uniparental inheritance
maternal inheritance
pollen parent
ovule parent
Variegation
NADH complex
lethal Alleles
heteromorphic generation
diploid sporophyte
haploid gametophyte
megametophyte
deleterious allele
inactive genes
Multiple sets of chromosomes
gene families
polypoid
nondisjunction
paralogs
surplus allele
Cross link: every gametes from parent cell contains genes that determines the genotype
Cross link between independent assortment and mutation is that it can cause dihybrid inheritance of crossing over and linked genes.