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genetics
Broader Terms
BT
↑
Biological Sciences
More specific terms
NT2
↓
animal genetics
►
▼
NT3
↓
insect genetics
NT2
↓
cytogenetics
►
▼
NT3
↓
aneuploidy
►
▼
NT4
↓
disomics
NT4
↓
monosomics
NT4
↓
nullisomics
NT4
↓
tetrasomics
NT4
↓
trisomics
NT3
↓
cell cycle
►
▼
NT4
↓
cell division
►
▼
NT5
↓
anaphase
NT5
↓
asynapsis
NT5
↓
chromosome pairing
NT5
↓
chromosome segregation
NT5
↓
cytokinesis
NT5
↓
desynapsis
NT5
↓
meiosis
►
NT5
↓
meiotic drive
►
NT5
↓
metaphase
NT5
↓
mitosis
NT5
↓
prophase
►
NT5
↓
telophase
NT4
↓
interphase
NT3
↓
chimerism
NT3
↓
chromosome aberrations
►
▼
NT4
↓
chromosome addition
NT4
↓
chromosome breakage
NT4
↓
chromosome elimination
NT4
↓
chromosome inversions
►
▼
NT5
↓
paracentric inversion
NT5
↓
pericentric inversion
NT4
↓
chromosome substitution
NT4
↓
chromosome translocation
►
▼
NT5
↓
reciprocal translocation
NT3
↓
chromosome morphology
NT3
↓
chromosome number
NT3
↓
chromosome transmission
NT3
↓
crossing over
NT3
↓
crossover interference
NT3
↓
cytogenetic analysis
►
▼
NT4
↓
karyotyping
NT3
↓
diploidy
NT3
↓
doubled haploids
NT3
↓
haploidy
NT3
↓
heterokaryon
NT3
↓
homokaryon
NT3
↓
mixoploidy
NT3
↓
polyploidy
►
▼
NT4
↓
allopolyploidy
NT4
↓
autopolyploidy
NT4
↓
endopolyploidy
NT4
↓
hexaploidy
NT4
↓
octaploidy
NT4
↓
tetraploidy
NT4
↓
triploidy
NT2
↓
genetic relationships
►
▼
NT3
↓
ancestry
►
▼
NT4
↓
pedigree
NT4
↓
wild relatives
NT3
↓
kinship
NT3
↓
parentage
►
▼
NT4
↓
dams (mothers)
NT4
↓
maternal lineage
NT4
↓
paternity
NT4
↓
sires
NT3
↓
progeny
NT3
↓
siblings
►
▼
NT4
↓
litters (young animals)
NT4
↓
twins
NT2
↓
genetic stability
NT2
↓
genetic vectors
►
▼
NT3
↓
phage vectors
NT3
↓
plasmid vectors
NT3
↓
retroviral vectors
NT2
↓
genomics
NT2
↓
human genetics
NT2
↓
immunogenetics
►
▼
NT3
↓
antigenic variation
NT3
↓
immunoglobulin genes
NT3
↓
major histocompatibility complex
NT2
↓
inheritance (genetics)
►
▼
NT3
↓
allelism
►
▼
NT4
↓
codominance
NT4
↓
dominance (genetics)
NT4
↓
incomplete dominance
NT4
↓
overdominance
NT3
↓
cytoplasmic inheritance
NT3
↓
linkage (genetics)
►
▼
NT4
↓
linkage disequilibrium
NT4
↓
linkage groups
NT4
↓
sex linkage
NT3
↓
Mendelian inheritance
►
▼
NT4
↓
gene segregation
►
▼
NT5
↓
meiotic drive
►
NT3
↓
polygenic inheritance
NT3
↓
transgressive segregation
NT2
↓
maternal effect
NT2
↓
metabolomics
NT2
↓
microbial genetics
►
▼
NT3
↓
conjugation
NT3
↓
genetic transduction
NT3
↓
lysogeny
NT3
↓
SOS response (genetics)
NT3
↓
transfection
NT2
↓
molecular genetics
►
▼
NT3
↓
amino acid sequences
►
▼
NT4
↓
signal peptide
NT3
↓
consensus sequence
NT3
↓
conserved sequences
NT3
↓
DNA conformation
NT3
↓
DNA fragmentation
NT3
↓
DNA libraries
►
▼
NT4
↓
cDNA libraries
NT4
↓
expressed sequence tags
NT4
↓
genomic libraries
NT3
↓
DNA probes
►
▼
NT4
↓
DNA primers
NT3
↓
DNA repair
NT3
↓
DNA replication
NT3
↓
DNA-binding domains
►
▼
NT4
↓
leucine zipper
NT4
↓
zinc finger motif
NT3
↓
epigenetics
►
▼
NT4
↓
genomic imprinting
NT3
↓
gene conversion
NT3
↓
gene duplication
NT3
↓
gene expression
►
▼
NT4
↓
gene overexpression
NT3
↓
gene expression regulation
►
▼
NT4
↓
autoregulation
NT4
↓
gene activation
NT4
↓
gene amplification
NT4
↓
gene induction
NT4
↓
gene silencing
►
▼
NT5
↓
RNA interference
NT4
↓
nucleocytoplasmic interaction
NT4
↓
RNA editing
NT4
↓
RNA splicing
►
▼
NT5
↓
alternative splicing
NT4
↓
transcriptional activation
NT3
↓
gene interaction
►
▼
NT4
↓
epistasis
NT3
↓
gene-for-gene relationship
NT3
↓
genes
►
▼
NT4
↓
alleles
NT4
↓
complementary genes
NT4
↓
dominant genes
NT4
↓
duplicate genes
NT4
↓
homeotic genes
NT4
↓
immunoglobulin genes
NT4
↓
lethal genes
NT4
↓
major genes
NT4
↓
major histocompatibility complex
NT4
↓
modifiers (genes)
NT4
↓
multigene family
NT4
↓
oncogenes
►
▼
NT5
↓
proto-oncogenes
NT4
↓
operon
NT4
↓
pseudogenes
NT4
↓
recessive genes
NT4
↓
regulator genes
NT4
↓
reporter genes
NT4
↓
structural genes
NT4
↓
suppressor genes
NT4
↓
synthetic genes
NT4
↓
transgenes
NT3
↓
genetic code
NT3
↓
genetic complementation
NT3
↓
genetic engineering
►
▼
NT4
↓
nuclear transplantation
NT4
↓
protein engineering
►
▼
NT5
↓
site-directed mutagenesis
NT4
↓
sex preselection
NT3
↓
genetic recombination
►
▼
NT4
↓
crossing over
NT4
↓
genetic transformation
►
▼
NT5
↓
genetic transduction
NT5
↓
transfection
NT4
↓
homologous recombination
►
▼
NT5
↓
intragenic recombination
NT4
↓
mitotic recombination
NT3
↓
genetic techniques and protocols
►
▼
NT4
↓
chromosome banding
NT4
↓
chromosome mapping
►
▼
NT5
↓
chromosome walking
NT5
↓
physical chromosome mapping
►
NT4
↓
cytogenetic analysis
►
▼
NT5
↓
karyotyping
NT4
↓
diallel analysis
NT4
↓
direct DNA uptake
NT4
↓
DNA footprinting
NT4
↓
DNA profiling
NT4
↓
electroporation
NT4
↓
gene targeting
NT4
↓
gene transfer
►
▼
NT5
↓
biolistics
NT5
↓
transfection
NT4
↓
genetic complementation test
NT4
↓
genetic markers
NT4
↓
in situ hybridization
►
▼
NT5
↓
fluorescence in situ hybridization
NT4
↓
microarray technology
NT4
↓
molecular cloning
►
▼
NT5
↓
gene fusion
NT5
↓
two hybrid system techniques
NT4
↓
Northern blotting
NT4
↓
nucleic acid hybridization
NT4
↓
plasmid curing
NT4
↓
polymerase chain reaction
►
▼
NT5
↓
amplified fragment length polymorphism
NT5
↓
random amplified polymorphic DNA technique
NT5
↓
reverse transcriptase polymerase chain reaction
NT5
↓
simple sequence length polymorphism
NT4
↓
sequence alignment
NT4
↓
sequence analysis
NT4
↓
sexing
NT4
↓
Southern blotting
NT4
↓
virus curing
NT3
↓
genetically modified organisms
►
▼
NT4
↓
genetically engineered microorganisms
NT4
↓
transgenic animals
►
▼
NT5
↓
transgenic insects
NT4
↓
transgenic plants
NT3
↓
molecular mimicry
NT3
↓
mutation
►
▼
NT4
↓
amino acid substitution
NT4
↓
base pair mismatch
NT4
↓
DNA damage
NT4
↓
frameshift mutation
NT4
↓
gene deletion
NT4
↓
genetic polymorphism
►
▼
NT5
↓
inversion polymorphism
NT5
↓
restriction fragment length polymorphism
NT5
↓
single nucleotide polymorphism
NT5
↓
single-stranded conformational polymorphism
NT4
↓
missense mutation
NT4
↓
mutagenesis
►
▼
NT5
↓
insertional mutagenesis
NT5
↓
site-directed mutagenesis
NT4
↓
nonsense mutation
NT4
↓
point mutation
NT4
↓
somatic mutation
NT3
↓
nuclear-cytoplasmic interactions
NT3
↓
nucleic acids
►
▼
NT4
↓
DNA
►
▼
NT5
↓
A-DNA
NT5
↓
antisense DNA
NT5
↓
circular DNA
►
NT5
↓
complementary DNA
NT5
↓
DNA adducts
NT5
↓
mitochondrial DNA
NT5
↓
plastid DNA
►
NT5
↓
recombinant DNA
NT5
↓
ribosomal DNA
NT5
↓
single-stranded DNA
NT5
↓
transfer DNA
NT5
↓
Z-DNA
NT4
↓
RNA
►
▼
NT5
↓
antisense RNA
►
NT5
↓
double-stranded RNA
NT5
↓
messenger RNA
►
NT5
↓
ribosomal RNA
NT5
↓
satellite RNA
NT5
↓
small nuclear RNA
NT5
↓
transfer RNA
NT3
↓
nucleotide sequences
►
▼
NT4
↓
codons
►
▼
NT5
↓
start codon
NT5
↓
stop codon
NT4
↓
exons
NT4
↓
internal transcribed spacers
NT4
↓
introns
NT4
↓
open reading frames
NT4
↓
regulatory sequences
►
▼
NT5
↓
3' untranslated regions
NT5
↓
5' untranslated regions
NT5
↓
enhancer elements
NT5
↓
operator regions
NT5
↓
promoter regions
►
NT5
↓
response elements
NT5
↓
terminator regions
NT4
↓
repetitive sequences
►
▼
NT5
↓
microsatellite repeats
NT5
↓
minisatellite repeats
NT5
↓
retrotransposons
NT5
↓
satellite DNA
NT5
↓
tandem repeat sequences
NT5
↓
terminal repeat sequences
NT5
↓
transposons
NT4
↓
replicon
►
▼
NT5
↓
replication origin
NT4
↓
satellite RNA
NT3
↓
oligonucleotide probes
NT3
↓
pleiotropy
NT3
↓
position effect (genetics)
NT3
↓
proliferating cell nuclear antigen
NT3
↓
protein synthesis
►
▼
NT4
↓
fractional synthesis rate
NT4
↓
post-translational modification
NT3
↓
reverse transcription
NT3
↓
RNA probes
NT3
↓
sequence homology
NT3
↓
transcription (genetics)
NT3
↓
transcription factors
►
▼
NT4
↓
sigma factors
NT3
↓
translation (genetics)
NT3
↓
transposition (genetics)
NT2
↓
nutrigenomics
NT2
↓
paternal effect
NT2
↓
phenotype
►
▼
NT3
↓
albino
NT3
↓
blood groups
NT3
↓
gender
►
▼
NT4
↓
females
►
▼
NT5
↓
cows
►
NT5
↓
ewes
NT5
↓
gilts
NT5
↓
gravid females
NT5
↓
heifers
NT5
↓
hens
►
NT5
↓
mares
NT5
↓
nannygoats
NT5
↓
pullets
NT5
↓
sows
NT5
↓
virgin females
NT4
↓
gender differences
NT4
↓
males
►
▼
NT5
↓
boars
NT5
↓
bucks
NT5
↓
bullocks
NT5
↓
bulls
►
NT5
↓
cockerels
NT5
↓
drakes
NT5
↓
ganders
NT5
↓
rams
NT5
↓
roosters
NT5
↓
stags
NT5
↓
stallions
NT2
↓
plant genetics
►
▼
NT3
↓
forest genetics
NT3
↓
ideotypes
NT2
↓
population genetics
►
▼
NT3
↓
founder effect
NT3
↓
gene flow
NT3
↓
gene frequency
NT3
↓
genetic distance
NT3
↓
genetic drift
NT3
↓
genetic polymorphism
►
▼
NT4
↓
inversion polymorphism
NT4
↓
restriction fragment length polymorphism
NT4
↓
single nucleotide polymorphism
NT4
↓
single-stranded conformational polymorphism
NT3
↓
mating systems
►
▼
NT4
↓
assortative mating
NT4
↓
inbreeding
NT4
↓
natural mating
NT4
↓
outbreeding
NT4
↓
random mating
NT3
↓
reproductive isolation
NT3
↓
sex ratio
NT3
↓
synthetic populations
NT2
↓
proteomics
NT2
↓
quantitative genetics
►
▼
NT3
↓
additive gene effects
NT3
↓
breeding value
NT3
↓
correlated responses
NT3
↓
gene frequency
NT3
↓
general combining ability
NT3
↓
genetic correlation
NT3
↓
genetic covariance
NT3
↓
genetic distance
NT3
↓
genetic improvement
NT3
↓
genetic merit
NT3
↓
genetic trend
NT3
↓
genetic variance
NT3
↓
genetic variation
►
▼
NT4
↓
antigenic variation
NT4
↓
clonal variation
NT4
↓
genetic heterogeneity
NT4
↓
somaclonal variation
NT3
↓
genotype-environment interaction
NT3
↓
heritability
NT3
↓
heterosis
NT3
↓
inbreeding coefficient
NT3
↓
inbreeding depression
NT3
↓
outbreeding depression
NT3
↓
penetrance
NT3
↓
phenotypic correlation
NT3
↓
phenotypic variation
►
▼
NT4
↓
phenotypic plasticity
NT3
↓
quantitative trait loci
NT3
↓
quantitative traits
NT3
↓
selection intensity
NT3
↓
selection response
NT3
↓
specific combining ability
NT2
↓
sex determination
NT2
↓
traits
►
▼
NT3
↓
agronomic traits
►
▼
NT4
↓
maturity groups
NT3
↓
double muscling
NT3
↓
growth traits
NT3
↓
polled trait
NT3
↓
quantitative traits
NT3
↓
reproductive traits
NT2
↓
transcriptomics
Related terms
RT
⇆
biotechnology
RT
⇆
breeders
RT
⇆
genetic resources
RT
⇆
geneticists
Español
genética
Date of creation
13-Jan-2011
Accepted term
13-Jan-2011
Descendant terms
343
ARK
ark:/99152/t3gmyred5mpd2l
More specific terms
23
Alternative terms
0
Related terms
4
Notes
0
Metadata
BS8723-5
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