C-value paradox
nonconspecific
unknome
homozygote
clanistics
pseudogenome
grade
genomics
oligogenic
polygenome
horotely
paramutant
cisgenic
nonallele
macrosynteny
concatesome
omnigenic
biocode
genome
metatranscriptome
pessimum
genewise
homologous
homoclonal
demogenetics
mosaicism
pessimal
nonclone
homologic
polygene
epistasis
pseudoread
hypostasis
inorganic
homological
panregulon
generich
recessive
Hardy-Weinberg principle
phasome
phenocopy
ultraconservation
gene
homozygous
nucleotype
central dogma
physiome
nonbilaterian
symbiosis
cophylogeny
parsimony principle
mutagenetic
biotype
accordingly
anamorphic
analogous
dominant
homogeny
autarchic
non-SPEC
chronogenesis
heterogeneic
genomic equivalence
ignorome
mutualist
epibiosis
lifespan
free-living
subgene
annidation
reverse genetics
metatranscription
transgenic
symbiotic
heptamutant
genetic material
synteny
life
multicopy
isomorphic
philogenitiveness
genomically
multi-organismic
neofunctionalization
social relation
ectocommensalism
microgenomics
conservation
heteroploid
polygenomic
mesosynteny
ribotype
complementation
supragenic
cophylogenetic
functional genomics
physiology

English words for 'The observation that the C-value of an organism is not dependent on its complexity (presumed number of genes)'

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