Every card in Reproduction and genetics, Year 11: genetic crosses and inherited disorders
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- Different forms of the same gene
Alleles
HintMost people carry two of these for each gene, one from each parent.
WhyA gene controls a characteristic, and it can exist in different forms. Each form is called an allele. An organism has two alleles of each gene, one inherited from each parent, and the pair may be the same or different.
- A mouse inherits one allele for black fur and one allele for brown fur, and its fur is black. What word describes the black-fur allele? (one word)
dominant
HintIt is the allele that shows up whenever it is present.
WhyA dominant allele is always expressed, even when only one copy is present. The brown-fur allele here is recessive: it is expressed only when both copies are the same, with no dominant allele present.
- Having two different alleles of a gene
Heterozygous
HintThe prefix is the Greek for 'other', as opposed to 'same'.
WhyIf the two alleles of a gene are different, as in Bb, the organism is heterozygous for that gene. If they are the same, as in BB or bb, it is homozygous.
- A pea plant has the alleles Tt and is tall. Which of those two facts is its genotype?
Tt — the alleles it has
HintOne fact is what you could see; the other is what is written in its DNA.
WhyThe genotype is the alleles present. The phenotype is the characteristic that those alleles produce, here being tall. Two plants can share a phenotype and have different genotypes: TT and Tt are both tall.
- What must be true of an organism's two alleles for a recessive characteristic to show?
Both must be the recessive allele
HintA single copy is not enough, because the other kind would mask it.
WhyA recessive allele is expressed only if two copies are present, which means that no dominant allele is there. An organism showing a recessive characteristic must therefore be homozygous for it.
- Two pea plants are both heterozygous, Tt, where T (tall) is dominant over t (short). What is the probability that one of their offspring is short? (a fraction in the form a/b)
1/4
HintOnly one of the four boxes in the Punnett square holds two small letters.
WhyEach parent's gametes carry T or t. The four equally likely combinations are TT, Tt, Tt and tt. Only tt is short, so the probability is 1 out of 4.
- A mouse with genotype Bb (black fur) is crossed with a mouse with genotype bb (brown fur). B is dominant over b. What ratio of black to brown offspring is expected?
1 : 1
HintOne parent can only pass on b, so look at what the other parent adds.
WhyThe Bb parent's gametes carry B or b; every gamete from the bb parent carries b. The four boxes of the Punnett square are Bb, Bb, bb and bb: two black to two brown, which simplifies to 1 : 1.
- A cross between two heterozygous tall pea plants is expected to give tall and short offspring in the ratio 3 : 1. Of 120 offspring, how many are expected to be short? (number only)
30
HintShare the total into four equal parts.
WhyA ratio of 3 : 1 has 3 + 1 = 4 parts. One part is 120 ÷ 4 = 30, so 30 are expected to be short and 90 tall. Real results rarely match exactly, because a cross gives probabilities, not certainties.
- Two black mice have a brown baby. The allele for black fur, B, is dominant over the allele for brown fur, b. What must the genotype of each parent be?
Bb
HintThe baby needed a small letter from each of them, yet each of them shows the dominant colour.
WhyA brown mouse must be bb, so it received a b from each parent. Each parent is black, so each also has a B. Both parents are therefore heterozygous, Bb.
- A red-flowered plant with genotype RR is crossed with a white-flowered plant with genotype rr. Two of their offspring are then crossed with each other. What fraction of this second set of offspring is expected to be heterozygous?
1/2
HintFirst work out the one genotype that every plant in the first set of offspring must have.
WhyThe RR parent gives only R and the rr parent only r, so every plant in the first set is Rr. Crossing Rr with Rr gives RR, Rr, Rr and rr. Two of the four are heterozygous, which is 1/2.
- An inherited disorder in which a person has extra fingers or toes
Polydactyly
Hint'Poly' means many; the rest comes from the Greek for finger.
WhyPolydactyly is caused by a dominant allele, so a person needs to inherit only one copy, from one parent, to have it. A parent who has one copy has a 1 in 2 chance of passing it to each child.
- Why can a person not be a 'carrier' of polydactyly without having the condition?
Its allele is dominant, so one copy is always expressed
HintCarriers exist only for conditions that need two copies to show.
WhyA carrier has one copy of an allele for a disorder but does not have the disorder. That can only happen when the allele is recessive and is masked by a dominant one. A dominant allele is never masked.
- Cystic fibrosis is caused by a recessive allele, f. Both parents are carriers with genotype Ff. What is the probability that their child is also a carrier, with genotype Ff? (a percentage, number only)
50
HintFill in the four boxes and count those holding one of each letter.
WhyEach parent's gametes carry F or f. The four equally likely combinations are FF, Ff, Ff and ff. Two of the four are Ff, so the chance of a carrier is 2 in 4, or 50%. The chance of a child with cystic fibrosis (ff) is 1 in 4.
- A child has cystic fibrosis, but neither parent has it. How is this possible?
Both parents are carriers: each has one recessive allele and passed it on
HintMum and Dad are healthy, yet something is masked in the two of them.
WhyCystic fibrosis, a disorder of cell membranes, is caused by a recessive allele, so a person has it only with two copies. A parent with one copy is healthy, because the dominant allele masks it, but can still pass the recessive allele to a child.
- Embryo screening tests embryos for alleles that cause inherited disorders. Give one argument made in favour of it and one concern raised about it.
For: it can prevent the suffering caused by a serious disorder. Concern: embryos that are not chosen may be destroyed (others include the cost, and where the choosing of characteristics should stop).
HintOne side looks at a child's future health; the opposite side asks what happens to those left unselected.
WhyGCSE asks you to weigh economic, social and ethical points, using the information you are given. Economic points include the cost of screening set against the cost of lifelong treatment. Social and ethical points include reducing suffering, the fate of unused embryos, and how people living with a disorder may feel they are regarded.
- Which two sex chromosomes are found in the body cells of a human male? (two letters, no spaces)
XY
HintA female has two of the same; a male has one of each.
WhyOne of the 23 pairs of human chromosomes carries the genes that determine sex. Females have two X chromosomes and males have one X and one Y.
- Of the 23 pairs of chromosomes in a human body cell, how many pairs control characteristics only and play no part in determining sex? (number only)
22
HintTake away the single pair that differs between males and females.
WhyOrdinary human body cells have 23 pairs of chromosomes. One pair carries the genes that determine sex, which leaves 23 − 1 = 22 pairs that control other characteristics only.
- Which parent's gamete decides the sex of a baby, and why?
The father's: a sperm carries either an X or a Y, while every egg carries an X
HintAsk which gamete can come in two different kinds.
WhyA female is XX, so all her eggs carry an X. A male is XY, so half his sperm carry an X and half carry a Y. An X sperm gives XX, a girl; a Y sperm gives XY, a boy.
- A couple already have three daughters. What is the probability that their next child is a boy?
1/2 (50%)
HintEach fertilisation is a fresh event with no memory of earlier ones.
WhyThe cross XX × XY gives XX, XY, XX and XY: two girls to two boys, a ratio of 1 : 1. This is the chance at every fertilisation, whatever the sexes of the children born before.
- Every human egg cell carries one sex chromosome, and it is always an ____ chromosome.
X
HintA female's body cells hold two that are alike.
WhyFemales are XX. Meiosis puts one chromosome from each pair into each gamete, so every egg receives an X. Sperm come from XY cells, so they carry either an X or a Y.
1★ GCSE-BIOL-REP-0032
2★ GCSE-BIOL-REP-0033
3★ GCSE-BIOL-REP-0034
4★ GCSE-BIOL-REP-0035
5★ GCSE-BIOL-REP-0036
6★ GCSE-BIOL-REP-0037
7★ GCSE-BIOL-REP-0038
8★ GCSE-BIOL-REP-0039
9★ GCSE-BIOL-REP-0040
10★ GCSE-BIOL-REP-0041
11★ GCSE-BIOL-REP-0042
12★ GCSE-BIOL-REP-0043
13★ GCSE-BIOL-REP-0044
14★ GCSE-BIOL-REP-0045
15★ GCSE-BIOL-REP-0046
16★ GCSE-BIOL-REP-0047
17★ GCSE-BIOL-REP-0048
18★ GCSE-BIOL-REP-0049
19★ GCSE-BIOL-REP-0050
20★ GCSE-BIOL-REP-0051
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