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ryzh [129]
2 years ago
4

As you may remember from basic biology, the human A/B/O blood type system is controlled by one gene for which 3 variants ("allel

es") are common in the human population – unsurprisingly called A, B, and O. As with most genes, everyone has 2 copies of this gene, one inherited from the mother and the other from the father, and everyone passes a randomly selected copy to each of their children (probability 1/2 for each copy, independently for each child). Focusing only on A and O, people with AA or AO gene pairs have type A blood; those with OO have type O blood. (A is "dominant", O is "recessive".) Suppose Apple and both of her parents have type A blood, but her sister Olive has type O. Give exact answers as simplified fractions. (a) What is the probability that Apple carries an O gene, given that she has blood type A? (b) Apple marries Oscar, who has type O blood. What is the probability that their first child will have type O blood? (c) If Apple and Oscar’s first child had type A blood, what is the probability that Apple carries an O gene? (d) If Apple and Oscar’s first child had type A blood, what is the probability that their second child will as well?
Biology
1 answer:
Kipish [7]2 years ago
5 0

Answer:  

(a) 1/2  

(b) 1/2

(c) 1/2

(d) 1/2 or 1

Explanation:  

A is a dominant gene and O is a recessive gene, this means that for someone to be type A, the gene pairing could either be AA or AO, while a type O blood gene pairing would be OO  

For Apple and her parents to have a type A blood, this means that they have either an AA or AO gene pair.  

Since Apple's sister is a type O (which is an OO gene pair), this means that each of their parents must have an O gene in their pairs. Therefore, their parents must have the AO gene pair. This way, it is possible for Apple to have a type A blood and her sister to have a type O blood.  

(a) Probability that Apple carries an O gene  

Parents AO AO  

Possible gene pairs of children AA AO AO OO  

Since Apple is a type A, we have to consider all the possibilities where Apple carries an O gene while being a type A. These are the AO pairs

This is 2/4 =1/2

therefore, the probability is 1/2.

(b) Since Oscar is a type O, this means that his gene pair is OO

We have to consider two scenarios where Apple is either an AO or an AA

(i) Where Apple carries the AO gene pair

Parents                                               AO      OO

Possible gene pairs of children    AO AO OO OO  

Possibility of type O blood = 2/4 = 1/2

therefore, the probability is 1/2 if Apple carries the AO gene pair.

(ii) Where Apple carries the AA gene pair

Parents                                              AA        OO

Possible gene pairs of children    AO AO AO AO  

Possibility of type O blood = 0

therefore, the probability is 0 if Apple carries the AA gene pair.

Therefore, adding both probabilities = 1/2 + 0 = 1/2

(c) Considering both scenarios illustrated above, we have to look out for the possibilities where Oscar's first child would have a type A blood while Apple carries an O gene.

This can be found only in the first scenario where Apple carries the AO gene pair. Here, the probability that Apple carries an O gene 1/2.

In the second scenario where Apple carries an AA gene pair, the probability that Apple carries an O gene is 0.

Hence, the probability that Apple carries an O gene is 1/2 + 0 = 1/2

(d) The probability of gene pairing is the same for every pregnancy.

In the first scenario, the probability of having a type A child is 2/4 = 1/2

In the second scenario, the probability of having a type A child is 4/4 = 1

Therefore, the probability of having a second child who is type A is either 1/2 or 1

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Answer:

50%

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DNA replication is a semi-conservative process. It means that after DNA replication, the newly formed DNA molecules have one parental strand and one newly formed strand. The cells in the experiment have DNA with 15N. After one round of DNA replication, each DNA molecule would have one parental DNA strand with 15N and one newly formed DNA strand with 14N.

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Answer:

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In a similar manner, stability is legitimately relative to entropy. Therefore, more entropy, more is the stability and the other way around.

<u>S.No      Scenarios                Entropy                  Stability </u>

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3 0
2 years ago
In eastern gray squirrels, Sciurus carolinensis, the allele for black fur (B) is dominant to the allele for gray fur (b). In a p
anastassius [24]

Answer:

The correct answer is "The frequency of the B allele increased due to the selective pressures of the environment".

Explanation:

The missing part of the question is "Which of the following could best explain the increase in the frequency of the B allele in the population after five years?" at which the answer is "The frequency of the B allele increased due to the selective pressures of the environment".

In this study, the allelic frequency for black fur (B) in eastern gray squirrels Sciurus carolinensis changed from B=0.4 to B=0.6 within a lapse of five years. This increase is explained by the effect of selective pressures of the environment. For instance, is likely that new predators were more likely to detect squirrels with gray fur over black fur, or changes in the landscape benefited the black fur squirrels camouflage.

5 0
2 years ago
A fly has two alleles for the color of its eyes. The green allele is recessive, and is represented by q. The blue allele is domi
murzikaleks [220]

Answer:

p = 0.34

Explanation:

The green allele is recessive, meaning two copies of q (qq) are required to be green. Conversely, animals that are either pp or pq will be blue.

If 44 organisms are green, that means 44 are qq.

For genotype frequencies, the equation is:

homozygous dominant genotype + heterozygous + homozygous recessive = 100%

Which is denoted as

p² + 2pq + q² = 1

We know that q² = 44/100 = 0.44

To work out q, we can do \sqrt{0.44} = 0.66

For allele frequencies, the total must add up to 100%, so

p + q =1

We know that q= 0.66

So p = 0.34, because 0.66 + 0.34 = 1

7 0
2 years ago
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