The possible gametes produced by an individual with the genotype Ww will be W and w.
The gametes could be: DE, De, dE, or de.
All Ww offspring refer to the genetic outcome of a cross between two organisms where one is homozygous dominant (WW) and the other is heterozygous (Ww) for a particular trait. In this scenario, the possible genotypes of the offspring would be either WW or Ww. Thus, all offspring would display the dominant trait associated with the W allele, but 50% would be homozygous (WW) and 50% heterozygous (Ww). Therefore, all offspring would express the dominant phenotype, but their genotypes would vary.
If winged dragons are represented by the dominant allele (W) and wingless dragons by the recessive allele (w), a heterozygous dragon would have the genotype Ww. When a wingless dragon (ww) is crossed with a heterozygous dragon (Ww), the possible genotypes of the offspring are WW, Ww, and ww. This results in a 50% chance of offspring being wingless (ww).
HH and Hh; Hh & Hh;Hh &hh; HH & hh
The process is called meiosis, specifically during the formation of gametes, where alleles segregate. Each gamete receives one of the two possible alleles for a given gene due to the law of segregation, which states that allele pairs separate during gamete formation. This ensures genetic variation in offspring when gametes combine during fertilization.
WW
The gametes could be: DE, De, dE, or de.
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The result of a male gamete fertilizing a female gamete is a zygote.
All Ww offspring refer to the genetic outcome of a cross between two organisms where one is homozygous dominant (WW) and the other is heterozygous (Ww) for a particular trait. In this scenario, the possible genotypes of the offspring would be either WW or Ww. Thus, all offspring would display the dominant trait associated with the W allele, but 50% would be homozygous (WW) and 50% heterozygous (Ww). Therefore, all offspring would express the dominant phenotype, but their genotypes would vary.
The ratio for a genetic cross between two heterozygous individuals (Ww x Ww) follows Mendelian inheritance. The possible genotypes from this cross are 1 WW, 2 Ww, and 1 ww, resulting in a genotypic ratio of 1:2:1. If focusing on the phenotypic ratio, assuming W is dominant over w, the ratio would be 3:1 (with 3 showing the dominant trait and 1 showing the recessive trait).
HH and Hh; Hh & Hh;Hh &hh; HH & hh
The process is called meiosis, specifically during the formation of gametes, where alleles segregate. Each gamete receives one of the two possible alleles for a given gene due to the law of segregation, which states that allele pairs separate during gamete formation. This ensures genetic variation in offspring when gametes combine during fertilization.
This is definitely possible. A WW 1 vet would have been born around 1900 and would put him in his late 50's. There were Vietnam vets this age who served in the Gulf War. This also could mean that it was possible for a Vet to have served in WW 1, WW 2, Korea and Vietnam.
Too Much Sax and Violins
A gamete is a specialized reproductive cell. There one sentence containing the word "gamete."
The difference of these two male gamete's is that the animal gamete has purple micro fibres and the flower gamete has blue micro fibres. I hope this helps