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This process does not affect the genetics of gametic cells within the same body.
Is also the gametic line where the gamete formation takes place.
The gametic phase of the remaining sites was determined by statistical inference.
Also known as parthenogenically formed from a gamete without gametic fusion.
Most often other processes occurring in plants and animals keep gametic isolation and species distinction.
Exceptions are animals and some protists, who undergo gametic meiosis immediately followed by fertilization.
The sporic life cycle can be considered a fusion of the gametic and zygotic life cycles.
In a diploid individual, the gametic phase represents the original allelic combinations that an individual received from its parents.
Therefore, zygotic and gametic meiosis are collectively term haplobiontic (single mitosis per phase).
Gametic phase was determined by genotyping one offspring from each adult (when available), reducing the number of phase-unknown sites by 65%.
Like animals, but not like most true Fungi, meiosis is gametic, and somatic nuclei are diploid.
The cause of this anomaly is the presence of symbiotic bacteria living within the gametic cells of the female lady beetles.
The diploid multicellular individual is a diplont, hence a gametic meiosis is also called a diplontic life cycle.
It is also referred to as gametic phase disequilibrium, or simply gametic disequilibrium.
They differ from most others in that the mature cell is diploid and its nucleus does not show a dinokaryotic organization; also they show gametic meiosis.
Quantitative genetic analyses are heavily dependant on appropriate population Mating Systems, allowing zygotic frequencies to be specified appropriately from the gametic frequencies giving rise to them.
The viability of produced gametes can differ, while intragenomic conflicts such as meiotic drive between the haploid gametes can result in gametic or "genic selection".
For individuals heterozygous at both loci, the gametic phase is ambiguous - in these cases, you don't know which haplotype you have, e.g., TA vs AT.
These include genes responsible for mate recognition, uniparental inheritance of chloroplast DNA, and gametic differentiation, allowing them to study their function and their evolution during speciation.
In the gametic life cycle or " diplontic life cycle", of which humans are a part, the organism is diploid, grown from a diploid cell called the zygote.
They have cloned genes in the mating-type (mt) locus and genes regulated by mt that control the transition between vegetative growth and gametic differentiation and zygote development.
Bickham et al. (1993) performed a small-scale cytological survey on the ploidy levels (number of sets of chromosomes) for somatic and gametic cells on a few specimens in Suriname.