Quiz: Cellular and Genetic Foundations — 15 questions

Detailed questions and answers

1. What does it mean to describe the cell as the basic structural unit of a living organism?

Living organisms such as humans, animals, and plants are composed of cells
Cells are temporary structures formed when tissues require additional support
Cells provide the basic building material for nonliving structures such as walls
Cells are specialized compartments found exclusively in complex animals

Living organisms such as humans, animals, and plants are composed of cells

Explanation

The cell is the fundamental structural unit from which living organisms are composed. A brick is instead a basic unit of a wall, so it does not define the organization of living organisms.

2. Why are both animal cells and plant cells classified as eukaryotic?

They possess a nucleus that contains the cell's genetic material
They contain a cellulose wall that surrounds their genetic material
They produce ATP through mitochondria located outside the nucleus
They lack a nucleus and organize genetic material in the cytoplasm

They possess a nucleus that contains the cell's genetic material

Explanation

Animal and plant cells are eukaryotic because both possess a nucleus. Cells without a nucleus are not the basis for this classification.

3. Which structure in an animal cell contains the genetic information?

The Golgi apparatus
The mitochondrion
The plasma membrane
The nucleus

The nucleus

Explanation

The nucleus contains the cell's genetic information and is one of the main structures of an animal cell. Mitochondria are associated with ATP production rather than being the structure identified here as containing genetic information.

4. A cell is actively producing ATP and synthesizing proteins at the same time; which pairing correctly identifies the structures involved?

The endoplasmic reticulum produces ATP, while the plasma membrane and mitochondria assemble proteins
Ribosomes produce ATP, while mitochondria, the nucleus, and plasma membrane support protein synthesis
The Golgi apparatus produces ATP, while mitochondria and ribosomes store proteins for later use
Mitochondria produce ATP, while ribosomes, endoplasmic reticulum, and Golgi apparatus support protein synthesis

Mitochondria produce ATP, while ribosomes, endoplasmic reticulum, and Golgi apparatus support protein synthesis

Explanation

Mitochondria participate in ATP production, whereas ribosomes, the endoplasmic reticulum, and the Golgi apparatus participate in protein synthesis. Ribosomes and the endoplasmic reticulum are therefore not ATP-producing organelles.

5. How does a plant cell differ from an animal cell in its main structural components?

It contains chloroplasts instead of mitochondria and lacks an endoplasmic reticulum
It replaces the plasma membrane with a cellulose wall and removes ribosomes
It has the main animal-cell components plus a cellulose wall and chloroplasts
It lacks a nucleus but contains a cellulose wall and additional mitochondria

It has the main animal-cell components plus a cellulose wall and chloroplasts

Explanation

Plant cells share the main components of animal cells and additionally possess a cellulose wall and chloroplasts. They retain structures such as the nucleus, plasma membrane, mitochondria, and ribosomes.

6. What is the relationship between DNA and the cell nucleus?

DNA forms the nucleus, while hereditary information is stored in the cytoplasm
DNA is an energy-producing structure located inside mitochondria and outside the nucleus
DNA provides genetic support for the organism and is located inside the nucleus
The nucleus provides genetic support, while DNA forms the surrounding cell membrane

DNA provides genetic support for the organism and is located inside the nucleus

Explanation

DNA is the genetic support of a living organism and is found inside the cell nucleus. The nucleus is the compartment that contains DNA, not the molecule that carries the hereditary information.

7. Which three components make up a nucleotide?

Phosphoric acid, glucose sugar, and a membrane-associated lipid
Deoxyribose sugar, ATP, and a structural protein chain
Phosphoric acid, deoxyribose sugar, and a nitrogenous base
Amino acid, ribose sugar, and a phosphate-free protein group

Phosphoric acid, deoxyribose sugar, and a nitrogenous base

Explanation

A nucleotide contains phosphoric acid, deoxyribose sugar, and a nitrogenous base. The nitrogenous base varies between nucleotides, while phosphoric acid and deoxyribose are shared components.

8. Which description correctly characterizes the structure of a DNA molecule?

Two antiparallel polynucleotide strands form a helix and are joined by hydrogen bonds between bases
One linear polynucleotide strand folds into a helix and is joined by peptide bonds between sugars
Two parallel protein strands form a ring and are joined by ionic bonds between phosphoric acids
Four separate nucleotide strands form a flat sheet and are joined by covalent bonds between bases

Two antiparallel polynucleotide strands form a helix and are joined by hydrogen bonds between bases

Explanation

DNA consists of two antiparallel polynucleotide strands arranged in a helical structure and joined by hydrogen bonds between nitrogenous bases. Peptide bonds and protein strands describe a different type of molecular organization.

9. Why does a DNA molecule with a greater proportion of cytosine–guanine pairs generally have greater cohesion?

Cytosine–guanine pairs form three hydrogen bonds, compared with two for adenine–thymine pairs
Cytosine–guanine pairs connect the two DNA strands through covalent bonds rather than hydrogen bonds
Cytosine–guanine pairs contain larger sugars, which create stronger bonds than adenine–thymine pairs
Adenine–thymine pairs lack hydrogen bonds, allowing cytosine–guanine pairs to stabilize the helix

Cytosine–guanine pairs form three hydrogen bonds, compared with two for adenine–thymine pairs

Explanation

Cytosine–guanine pairs form three hydrogen bonds, whereas adenine–thymine pairs form two, giving DNA with more cytosine–guanine pairs greater cohesion. The strands are joined by hydrogen bonds in both pairing types, not by covalent bonds.

10. How do histone proteins contribute to chromosome formation during some stages of cell division?

They copy DNA into two genetically different molecules
They replace DNA with proteins that store hereditary information
They wrap and condense DNA into chromosome structures
They separate paired chromosomes into individual cells

They wrap and condense DNA into chromosome structures

Explanation

Histone proteins wrap DNA and condense it, producing the chromosome form seen during some stages of cell division. Uncondensed DNA is not itself equivalent to a chromosome, because chromosome formation involves this protein-assisted condensation.

11. How many chromosome pairs are found in a typical human cell?

22 pairs
46 pairs
23 pairs
92 pairs

23 pairs

Explanation

A typical human cell contains 46 chromosomes arranged into 23 pairs. The number 46 refers to individual chromosomes, not chromosome pairs.

12. Why are the two chromosomes in each human pair similar?

They developed independently but contain genes for entirely unrelated traits
One came from each parent and they carry the same genes in corresponding regions
One came from each parent and they carry different genes in corresponding regions
Both were copied from the father's chromosome and carry identical genetic information

One came from each parent and they carry the same genes in corresponding regions

Explanation

The paired chromosomes are similar because one is inherited from the father and the other from the mother, with the same genes located in corresponding regions. Similarity in gene location does not require the chromosomes to have identical inherited versions of every gene.

13. What is a gene?

A particular version of a hereditary unit associated with a trait
A protein that condenses DNA during cell division
A complete pair of chromosomes inherited from both parents
A hereditary unit on a chromosome associated with a trait

A hereditary unit on a chromosome associated with a trait

Explanation

A gene is a hereditary unit located on a chromosome and associated with a trait such as eye colour or hair colour. A particular version of that unit is called an allele, not a gene itself.

14. What does an allele represent?

A histone protein that packages a gene during cell division
A chromosome pair that carries genes for several related traits
A particular version of a gene that produces a form of a trait
A hereditary unit that defines a trait in general terms

A particular version of a gene that produces a form of a trait

Explanation

An allele is a specific version of a gene and determines a particular form of a trait. The broader hereditary unit associated with the trait is the gene, so treating the two terms as interchangeable is incorrect.

15. How can homologous chromosomes differ while still carrying the same genes?

They can contain different alleles of those genes inherited from each parent
They can lack corresponding regions because homologous chromosomes have separate functions
They can contain identical alleles because both chromosomes come from one parent
They can contain different genes because each chromosome controls unrelated traits

They can contain different alleles of those genes inherited from each parent

Explanation

Homologous chromosomes have the same genes in corresponding regions, but the alleles in those regions may differ because the chromosomes were inherited from different parents. Thus, shared genes do not imply identical versions of those genes.

Review with flashcards

Memorize the answers with 28 flashcards on Cellular and Genetic Foundations.

What is the basic structural unit of a living organism?

The cell.

Which organisms are composed of cells?

Humans, animals, and plants.

What two types of cells does the course distinguish?

Animal cells and plant cells.

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