The fat pods in first-generation offspring occur due to genetic factors inherited from the parents. This trait is likely a dominant gene that is expressed in the first generation. Subsequent generations may show variations in the presence of fat pods as genetic recombination occurs.
In accordance to Medelian's first law,you will receive a F1 (Generation 1) of all the dominant traits (If you G is Green,it will be all green and if you G is yellow,it will be all yellow).It is only when during F2 (Generation 2) as you interbreed them (F1 x F1) will you receive a Phenotypic ratio of 3:1.In this,if your G is green,it will be of a ratio of 3 greens to 1 yellow pea pods. Basically Gg x Gg will give rise to 2 phenotypic classes of progeny,G and g,in a ratio of 3:1 provided that G is Dominant to g.
only green-podded plants. Incorrect^ Letter D on the sheet, about three-quarters green-podded plants and one-quarter yellow-podded plants.
Yes, Tide Pods are designed to be an all-in-one detergent solution that includes detergent, stain remover, and brightener in a convenient pod form. They are effective in cleaning clothes when used as directed.
When a plant self-pollinates and all offspring have the same trait as the parent, it is called homozygous. This means that the offspring have inherited identical alleles for that specific trait from both parent plants.
No, it is not possible to accurately predict all male offspring for a particular mating pair. The sex of offspring is determined by the combination of genetic material from both parents, and it is a random process influenced by chance.
When Mendel crossed pea plants with green pods with those with yellow pods, the offspring all had green pods if the green pod parent was homozygous. If the green pod parent was heterozygous, then half the offspring had green pods and half had yellow pods.
If green pea pods are dominant over yellow pea pods, all offspring from the cross will have green pea pods. This is because the dominant trait (green) will mask the recessive trait (yellow) in the heterozygous offspring. The genotype of the offspring will be heterozygous for the pod color trait.
Green is the dominant trait in this cross. Mendel's results demonstrate that when a dominant allele (for green pods) is present, it masks the effect of the recessive allele (for yellow pods), resulting in all offspring exhibiting the dominant phenotype. Thus, the true yellow podded plant contributes a recessive allele that does not express in the presence of the dominant green allele.
All Cytisus have pods.
All I pods Are Made In China.
The F1 generation will all have yellow pods because yellow is dominant over green. This is because each parent plant is true-breeding and would only contribute the dominant yellow allele to their offspring.
In accordance to Medelian's first law,you will receive a F1 (Generation 1) of all the dominant traits (If you G is Green,it will be all green and if you G is yellow,it will be all yellow).It is only when during F2 (Generation 2) as you interbreed them (F1 x F1) will you receive a Phenotypic ratio of 3:1.In this,if your G is green,it will be of a ratio of 3 greens to 1 yellow pea pods. Basically Gg x Gg will give rise to 2 phenotypic classes of progeny,G and g,in a ratio of 3:1 provided that G is Dominant to g.
It is important to remember that the factors inherited by the first offspring of a cross have no effect at all on other offspring of that cross. For example, there is a 25% probability that offspring of a cross betweet two hybrid bean plants will inherit the factos RR. If one offspring inherits RR, there is still a 25% probability that the next offspring will also inherit RR.
im not sure. But ther is one for the 3rd and 4th gen starters
Question needs more detail..... F1 offspring are the first generation of children from a specific set of parents. Their genotype/phenotype would depend on that of the parents.
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No, not all animals need to mate to have offspring.