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BIOL 1107 Exam 3 Genetics and Molecular Biology Practice Questions and Answers (200+ Q&A) | DNA Replication, Mendelian Genetics, Gene Regulation, Biotechnology & Cancer Biology

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This comprehensive BIOL 1107 Exam 3 study guide contains more than 200 carefully structured practice questions and verified answers covering advanced topics in Genetics, Molecular Biology, DNA Replication, Biotechnology, Gene Regulation, and Cancer Biology. The material is presented in a detailed question-and-answer format designed to support active recall learning, rapid revision, concept reinforcement, and high-level university biology exam preparation. Core concepts covered in this resource include DNA structure, complementary base pairing, semiconservative replication, DNA polymerases, replication forks, Okazaki fragments, telomeres, DNA repair mechanisms, Mendelian genetics, inheritance patterns, Punnett squares, monohybrid and dihybrid crosses, independent assortment, codominance, incomplete dominance, polygenic inheritance, epigenetics, recombinant DNA technology, PCR, CRISPR genome editing, stem cells, gene therapy, operons, transcriptional regulation, RNA interference, and cancer genomics. The document provides extensive coverage of both classical and modern genetics, including foundational principles established by Gregor Mendel and advanced molecular mechanisms involved in DNA replication, mutation repair, chromosomal inheritance, and gene expression. It also explores major biotechnology techniques such as agarose gel electrophoresis, restriction enzymes, recombinant DNA formation, cloning vectors, reverse transcriptase PCR, transgenic organisms, genome editing systems, and DNA fingerprinting. In addition, the guide examines modern concepts in cancer biology including oncogenes, tumor suppressor genes, metastasis, driver mutations, and hereditary versus sporadic cancers, making it highly valuable for students studying molecular medicine and biomedical sciences. This resource is highly relevant for undergraduate biology students, genetics students, molecular biology students, pre-medical students, nursing students, biotechnology majors, biomedical science learners, health science students, laboratory science students, and anyone preparing for university-level genetics or molecular biology examinations. It is especially useful for students enrolled in BIOL 1107 courses, introductory genetics classes, cell and molecular biology courses, and pre-health science programs requiring strong understanding of DNA technologies, inheritance, and gene regulation. The study material aligns closely with major academic references including Campbell Biology by Lisa A. Urry, Michael L. Cain, Steven A. Wasserman, Peter V. Minorsky, and Rebecca B. Orr (12th Edition, Pearson); Molecular Biology of the Cell by Bruce Alberts et al.; Genetics: Analysis and Principles by Robert J. Brooker; and Molecular Cell Biology by Lodish et al. The concepts and terminology included in this guide reflect foundational topics widely taught in undergraduate biology, genetics, biotechnology, and biomedical science curricula at colleges and universities worldwide. Keywords BIOL 1107, Biology Exam 3, Genetics, Molecular Biology, DNA Replication, DNA Structure, Complementary Base Pairing, Semiconservative Replication, DNA Polymerase, Okazaki Fragments, Telomeres, DNA Repair, Mutation Repair, Mendelian Genetics, Punnett Square, Monohybrid Cross, Dihybrid Cross, Independent Assortment, Dominant Alleles, Recessive Alleles, Codominance, Incomplete Dominance, Polygenic Inheritance, Chromosome Theory of Inheritance, Biotechnology, Recombinant DNA, PCR, Polymerase Chain Reaction, Gel Electrophoresis, Restriction Enzymes, Cloning Vectors, CRISPR, Genome Editing, Gene Therapy, Stem Cells, Transgenic Organisms, Genetic Engineering, DNA Fingerprinting, Gene Regulation, Operons, Lac Operon, Transcriptional Regulation, Epigenetics, RNA Interference, miRNA, siRNA, Histone Modification, DNA Methylation, Cancer Biology, Oncogenes, Tumor Suppressor Genes, Cancer Genomics, Metastasis, Cell Division, Biomedical Science, University Biology, Molecular Genetics, Cell Biology, Pre Med Biology, Nursing Biology, Biotechnology Notes, Biology Practice Questions, Biology Study Guide, College Biology Exam Preparation

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BIOL 1107 Exam 3 2026 Exam
Questions and Correct
Answers | New Update



deoxyribonucleic acid (dna) - ANSWER ✔✔a double-stranded, helical

nucleic acid molecule capable of replicating and determining the

inherited structure of a cell's proteins.


adenine - ANSWER ✔✔purine; the base that pairs with Thymine in

DNA


guanine - ANSWER ✔✔purine; base that pairs with cytosine


thymine - ANSWER ✔✔pyrimidine; base that pairs with adenine

,cytosine - ANSWER ✔✔pyrimidine; base that pairs with guanine


chargaff's rule - ANSWER ✔✔A = T and G = C


phosphodiester bonds - ANSWER ✔✔bonds between phosphate

group and pentose sugar in nucleic acids


x-ray diffraction - ANSWER ✔✔an analytical method in which X-rays

change direction on contact with matter, resulting in changes in radiation

intensity, that is used to determine the three-dimensional arrangement of

atoms


double-helix model - ANSWER ✔✔explains Chargaff's rule of base

pairing and how the two strands of DNA are held together


complementary base pairing - ANSWER ✔✔-wherever an A occurs in

one strand, a T must be opposite it in the other strand




-wherever a G occurs in one strand, a C must be opposite


semiconservative replication - ANSWER ✔✔each new DNA molecule

consists of one new strand and one old strand

, conservative replication model - ANSWER ✔✔the two strands of the

original molecule serve as templates for the two strands of a new DNA

molecule, then rewind into all "old" molecule


dispersive replication model - ANSWER ✔✔neither parental strand is

conserved and both chains of each replicated molecule contain old and

new segments


DNA polymerase - ANSWER ✔✔enzyme involved in DNA replication

that joins individual nucleotides to produce a DNA molecule


sliding DNA clamp - ANSWER ✔✔protein that encircles DNA and

attaches to the rear of DNA polymerase


DNA helicase - ANSWER ✔✔unwinds the DNA strands, producing a

Y-shaped replication fork


single-stranded binding proteins (ssbs) - ANSWER ✔✔coat the

exposed single-stranded DNA segments, keeping them from pairing


primer - ANSWER ✔✔a new strand begins with a short chain of RNA


okazaki fragments - ANSWER ✔✔short fragments of DNA that are a

result of the synthesis of the lagging strand during DNA replication




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