Unit 4: Linkage, Chromosome Mapping and Bacterial Genetics - Practice Quiz

BTY551 — Genetics 60 Questions
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1 Linkage refers to the tendency of genes located on the same chromosome to:

Linkage and Crossing Over: Definition Easy
A. Assort independently
B. Be inherited together
C. Undergo mutation frequently
D. Separate during mitosis only

2 The term 'linkage' was first coined by:

Linkage and Crossing Over: Definition Easy
A. Morgan and Castle
B. Beadle and Tatum
C. Mendel and Correns
D. Watson and Crick

3 Complete linkage occurs when linked genes:

Complete and Incomplete Linkage Easy
A. Are located on different chromosomes
B. Assort independently
C. Always cross over
D. Show no crossing over

4 Incomplete linkage results in the formation of:

Complete and Incomplete Linkage Easy
A. No gametes
B. Identical clones
C. Recombinant types
D. Only parental types

5 Complete linkage was first demonstrated in male:

Complete and Incomplete Linkage Easy
A. Maize
B. Pea plant
C. E. coli
D. Drosophila

6 Crossing over involves the exchange of segments between:

molecular mechanism of crossing over Easy
A. Non-sister chromatids of homologous chromosomes
B. Non-homologous chromosomes
C. Two different genes on the same chromatid
D. Sister chromatids of the same chromosome

7 The X-shaped structure formed at the site of crossing over is called a:

molecular mechanism of crossing over Easy
A. Chiasma
B. Centriole
C. Kinetochore
D. Centromere

8 Crossing over takes place during which stage of meiosis?

molecular mechanism of crossing over Easy
A. Telophase II
B. Metaphase II
C. Pachytene of prophase I
D. Anaphase I

9 The enzyme responsible for joining exchanged DNA segments during crossing over is:

molecular mechanism of crossing over Easy
A. DNA ligase
B. Helicase
C. DNA polymerase
D. Primase

10 One map unit (centimorgan) is equal to:

Chromosome Mapping: Two and three factor crosses Easy
A. 100% recombination frequency
B. 1% recombination frequency
C. 10% recombination frequency
D. 0.1% recombination frequency

11 The distance between two genes on a chromosome map is measured by:

Chromosome Mapping: Two and three factor crosses Easy
A. Recombination frequency
B. Number of chromosomes
C. Amount of DNA
D. Gene size

12 A three-point test cross is used to determine the:

Chromosome Mapping: Two and three factor crosses Easy
A. Mutation rate
B. Total number of genes
C. Chromosome number
D. Gene order and map distances

13 In a three-point cross, the least frequent progeny classes represent:

Chromosome Mapping: Two and three factor crosses Easy
A. Double crossovers
B. Single crossovers
C. Parental types
D. Non-recombinants

14 Tetrad analysis is commonly performed using:

tetrad analysis Easy
A. Bacteria
B. Human cells
C. Fruit flies
D. Fungi such as Neurospora

15 The four haploid products of a single meiosis in fungi are collectively called a:

tetrad analysis Easy
A. Tetrad
B. Diploid
C. Gamete
D. Zygote

16 Bacterial transformation involves the uptake of:

Bacterial Genetics: Transformation and mapping Easy
A. An entire plasmid organelle
B. A whole bacterial cell
C. A bacteriophage
D. Free DNA from the environment

17 Transformation was first demonstrated in bacteria by:

Bacterial Genetics: Transformation and mapping Easy
A. Gregor Mendel
B. Frederick Griffith
C. Barbara McClintock
D. Thomas Morgan

18 In transduction, bacterial genes are transferred from one cell to another by a:

Transduction and mapping Easy
A. Free DNA fragment
B. Pilus
C. Ribosome
D. Bacteriophage

19 Bacterial conjugation requires direct contact between cells through a:

Conjugation and mapping Easy
A. Bacteriophage
B. Sex pilus
C. Cell wall pore
D. Flagellum

20 In conjugation, the donor bacterium carrying the fertility factor is called:

Conjugation and mapping Easy
A. F- cell
B. Lysogenic cell
C. Competent cell
D. F+ cell

21 Two genes located map units apart on the same chromosome will produce recombinant and parental gametes in what approximate ratio?

Linkage and Crossing Over: Definition Medium
A. recombinant to parental
B. recombinant to parental
C. (behaving as if unlinked)
D. recombinant to parental

22 In Drosophila, why is complete linkage observed only in males and not in females?

Complete and Incomplete Linkage Medium
A. Males have fewer chromosomes than females
B. Crossing over is absent in male Drosophila
C. Male gametes cannot undergo meiosis
D. Females possess only one linkage group

23 According to the Holliday model, the exchange of genetic material between homologous chromosomes involves an intermediate structure known as the:

Molecular mechanism of crossing over Medium
A. Holliday junction (cross-strand exchange)
B. Replication bubble
C. Synaptonemal complex only
D. Kinetochore microtubule bridge

24 In a two-point testcross, parental and recombinant offspring are obtained out of total. What is the map distance between the two genes?

Chromosome Mapping: Two and three factor crosses Medium
A. map units
B. map units
C. map units
D. map units

25 In a three-point testcross, the double crossover progeny are identified because they occur in which frequency class?

Chromosome Mapping: Two and three factor crosses Medium
A. Exactly of all progeny
B. The same frequency as single crossovers
C. The most frequent phenotypic classes
D. The least frequent phenotypic classes

26 If single crossover frequencies between A–B and B–C are and , and observed double crossovers are , what is the coefficient of coincidence?

Chromosome Mapping: Two and three factor crosses Medium
A.
B.
C.
D.

27 Interference of in a three-point cross indicates that:

Chromosome Mapping: Two and three factor crosses Medium
A. of expected double crossovers actually occur
B. No double crossovers are possible
C. Crossovers occur completely independently
D. of expected double crossovers actually occur

28 In Neurospora, second-division segregation patterns in an ordered tetrad indicate that:

tetrad analysis Medium
A. Both genes are unlinked
B. A crossover occurred between the gene and the centromere
C. No crossing over took place
D. The gene is located at the centromere

29 In tetrad analysis, if the number of parental ditype (PD) tetrads greatly exceeds nonparental ditype (NPD) tetrads, the two genes are:

tetrad analysis Medium
A. Linked on the same chromosome
B. Always unlinked
C. Both at the centromere
D. Located on different chromosomes

30 Using tetrad data, the map distance formula is expressed as: map distance

tetrad analysis Medium
A.
B.
C.
D.

31 In bacterial transformation mapping, two genes are considered closely linked if they are:

Bacterial Genetics: Transformation and mapping Medium
A. Transferred only via a sex pilus
B. Located on separate plasmids
C. Frequently co-transformed on the same DNA fragment
D. Never taken up by the recipient cell

32 In a transformation experiment, genes A and B are co-transformed at high frequency while B and C are rarely co-transformed. This suggests:

Bacterial Genetics: Transformation and mapping Medium
A. A and C are the most tightly linked
B. A and B are closer together than B and C
C. C is closest to A
D. All three genes are equidistant

33 In generalized transduction, co-transduction frequency between two genes is used to map them. A higher co-transduction frequency indicates the genes are:

Transduction and mapping Medium
A. Farther apart on the chromosome
B. Physically closer on the chromosome
C. Located on the phage genome
D. On different bacterial cells

34 Which type of transduction is characterized by a phage picking up only specific bacterial genes located adjacent to its integration site?

Transduction and mapping Medium
A. Abortive transduction
B. Conjugative transduction
C. Generalized transduction
D. Specialized transduction

35 If genes X and Y show a co-transduction frequency of and genes Y and Z show , which pair is more closely linked?

Transduction and mapping Medium
A. Y and Z
B. All pairs are equally linked
C. X and Y
D. X and Z

36 In an interrupted mating experiment using an Hfr strain, the order of gene transfer is determined by:

Conjugation and mapping Medium
A. The alphabetical order of the genes
B. The size of the F plasmid
C. The time at which each gene first appears in recipients
D. The number of recombinants for each gene

37 An Hfr strain is formed when:

Conjugation and mapping Medium
A. The F plasmid integrates into the bacterial chromosome
B. The F plasmid is lost from the cell
C. A phage integrates into the F plasmid
D. Two F cells fuse together

38 In interrupted mating, genes A, B, and C enter the recipient at , , and minutes respectively. Which gene is closest to the origin of transfer?

Conjugation and mapping Medium
A. Genes A and C equally
B. Gene B
C. Gene A
D. Gene C

39 In incomplete linkage, the appearance of recombinant offspring in a testcross is directly due to:

Complete and Incomplete Linkage Medium
A. Crossing over between the linked genes
B. Independent assortment of chromosomes
C. Non-disjunction in meiosis
D. Mutation during gamete formation

40 During meiotic recombination, the enzyme that initiates crossing over by creating double-strand breaks in DNA is:

Molecular mechanism of crossing over Medium
A. DNA ligase
B. Primase
C. Helicase
D. Spo11

41 In a three-point testcross involving genes , , and , the parental classes are the most frequent and the double-crossover (DCO) classes show that the gene allele is exchanged relative to parentals. If parentals are and , and the DCOs are and , which gene is located in the middle?

Chromosome Mapping: Two and three factor crosses Hard
A. Gene
B. Cannot be determined without map distances
C. Gene
D. Gene

42 A three-point testcross yields the following DCO frequency of , and single crossover frequencies between the flanking regions of and . What is the coefficient of coincidence?

Chromosome Mapping: Two and three factor crosses Hard
A.
B.
C.
D.

43 In a three-point cross, map distances calculated between the outer markers are often smaller than the true physical distance. What is the primary reason for this underestimation?

Chromosome Mapping: Two and three factor crosses Hard
A. Interference increases recombination in the interval
B. Double crossovers go undetected as recombinants between the outer markers
C. Gene conversion inflates parental counts
D. Chromatid interference reduces single crossovers

44 In an ordered tetrad analysis of two linked genes, a cross yields Parental Ditype (PD) , Non-Parental Ditype (NPD) , and Tetratype (TT) . What is the map distance between the two genes (in map units)?

tetrad analysis Hard
A. m.u.
B. m.u.
C. m.u.
D. m.u.

45 In ordered tetrads of Neurospora, second-division segregation (MII) patterns arise from crossovers between a gene and its centromere. If MII asci frequency is , what is the gene-to-centromere distance?

tetrad analysis Hard
A. m.u.
B. m.u.
C. m.u.
D. m.u.

46 When two genes are unlinked, tetrad analysis predicts a specific relationship among tetrad types. Which condition confirms independent assortment?

tetrad analysis Hard
A.
B.
C.
D. significantly

47 In the double-strand break repair (DSBR) model of recombination, resolution of the double Holliday junction can yield crossover or non-crossover products. What determines whether a crossover results?

molecular mechanism of crossing over Hard
A. Whether branch migration occurs before cleavage
B. The orientation in which the two Holliday junctions are cleaved by resolvases
C. The presence of mismatch repair proteins
D. The length of the heteroduplex DNA formed

48 Gene conversion, a non-reciprocal transfer of genetic information, is best explained by which molecular event during recombination?

molecular mechanism of crossing over Hard
A. Unequal crossing over between repeated sequences
B. Slippage of DNA polymerase at repeats
C. Chromatid interference during meiosis
D. Mismatch repair of heteroduplex DNA in the recombination intermediate

49 In Drosophila, complete linkage is observed only in one specific situation. Which of the following explains why crossing over is absent in males?

Complete and Incomplete Linkage Hard
A. Male meiosis skips the pachytene stage entirely
B. The Y chromosome suppresses recombination
C. Male Drosophila lack chiasma formation and recombination during meiosis
D. Males have only one copy of each autosome

50 Two genes are map units apart on the same chromosome. What recombination frequency and genetic behavior would you expect to observe in a testcross?

Linkage and Crossing Over: Definition Hard
A. recombinants, showing tight linkage
B. recombinants due to interference
C. recombinants, behaving as if unlinked
D. recombinants due to complete linkage

51 In an interrupted mating experiment with an Hfr strain, the time of entry of a gene into the recipient is used for mapping. If gene enters at min and gene enters at min, what does this indicate?

Conjugation and mapping Hard
A. is transferred as a plasmid
B. is closer to the origin of transfer than
C. and are map units apart by recombination frequency
D. is closer to the origin of transfer than

52 Different Hfr strains transfer chromosomal markers in different orders and directions. This observation is best explained by which feature of the bacterial chromosome?

Conjugation and mapping Hard
A. Each Hfr strain has a linear chromosome with different ends
B. Recombination frequency varies between strains
C. The recipient chromosome rearranges during transfer
D. The F factor integrates at different sites and orientations in the circular chromosome

53 In a generalized transduction cotransduction experiment, two genes are cotransduced at a frequency of . Using the Wu formula, cotransduction frequency where is the length of transducing DNA. What does a high cotransduction frequency indicate?

Transduction and mapping Hard
A. The genes recombine independently
B. The phage packages the entire genome
C. The two genes are physically close on the chromosome
D. The two genes are on separate replicons

54 Specialized transduction differs from generalized transduction in a fundamental way. Which statement correctly describes specialized transduction?

Transduction and mapping Hard
A. It requires a lytic phage that fragments host DNA randomly
B. It transfers plasmids rather than chromosomal DNA
C. Any chromosomal gene can be packaged with equal probability
D. Only genes adjacent to the prophage integration site are transferred, due to aberrant excision

55 In bacterial transformation mapping, two markers are cotransformed at high frequency. What must be true for two genes to be cotransformed?

Transformation and mapping Hard
A. They must lie close enough to be carried on the same fragment of donor DNA
B. They must be transcribed as one operon
C. They must recombine at separate sites
D. They must be on the same plasmid only

56 In a transformation experiment, genes and show cotransformation, and and show cotransformation, but and are never cotransformed. What is the most likely gene order?

Transformation and mapping Hard
A.
B.
C.
D.

57 Given a two-point testcross with progeny where recombinants total , but you suspect undetected double crossovers, how would the true map distance compare to the calculated m.u.?

Chromosome Mapping: Two and three factor crosses Hard
A. The true distance is greater than m.u.
B. The true distance equals exactly m.u.
C. The true distance is less than m.u.
D. The true distance cannot exceed m.u.

58 A dihybrid (cis configuration, genes linked) is testcrossed. If linkage is incomplete with recombination, what proportion of offspring will be recombinant type ?

Complete and Incomplete Linkage Hard
A.
B.
C.
D.

59 Chiasmata observed cytologically during diplotene are physical manifestations of crossing over. Which statement about the relationship between chiasma frequency and recombination is correct?

molecular mechanism of crossing over Hard
A. Each chiasma produces four recombinant chromatids
B. One chiasma corresponds to recombination
C. One chiasma corresponds to a recombination frequency for the involved region
D. Chiasmata are unrelated to recombination frequency

60 In an F F cross, why are chromosomal genes transferred at very low frequency compared to an Hfr F cross?

Conjugation and mapping Hard
A. The F recipient degrades incoming DNA
B. Chromosomal genes cannot recombine in F crosses
C. F cells lack a functional pilus
D. The F factor in F cells rarely integrates into the chromosome to mobilize it