Coding vs Template Strand Flashcards: Transcription Practice

Practice 46 original English cards on coding and template DNA strands: four RNA-conversion cases, strand choice, two reverse mappings, repairs, and evidence limits.

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Practice coding vs template strand decisions with 46 original English flashcards for introductory biology. Each sequence exercise states the strand’s role for a gene and labels its 5′ and 3′ ends. Report the initial, unprocessed RNA segment before processing, written 5′ → 3′.

The deck includes 20 DNA-to-RNA exercises: five coding strands displayed 5′ → 3′, five coding strands displayed 3′ → 5′, five template strands displayed 3′ → 5′, and five template strands displayed 5′ → 3′. Eight complementary two-strand displays ask which strand is the template from RNA polymerase’s stated movement, with four cases in each movement direction. Two reverse exercises start from an initial RNA segment and request its corresponding coding or template DNA segment, both explicitly written 5′ → 3′. Eight repairs address wrong rules or proposed answers, and four evidence checks identify missing role, orientation, processing information, or transcription evidence.

Four foundation cards introduce the template role, RNA synthesis direction, antiparallel alignment, and RNA alphabet. The fixed order starts with the basic coding and template cases, then mixes orientations, strand choices, repairs, reverse mappings, and limits. Repeated conversion-operation families are separated by at least three intervening cards, including related repairs and reverse mappings. The review scheduler handles later spacing. Answers give the result first and a short reason; every card carries the transcription-strands tag.

All short base sequences are invented practice segments, not identified genes. Mature-mRNA prediction is excluded because processing information is not supplied; one card asks you to recognize that limit. Translation, codon tables, reading frames, mutations, promoter inference, species-specific mechanisms, and complete-course or exam alignment are outside the scope. Additional reverse-orientation permutations and arbitrary sequence-generation prompts are omitted to keep the retrieval tasks focused. For a longer explanation, read the coding vs template strand lesson.

The questions, answers, artificial sequences, organization, and metadata were written independently with AI assistance and checked against common reference facts. Factual references are NHGRI’s Finding Genes and RNA fact sheet. No competitor cards, textbook examples, examination questions, source prose, diagrams, or logos were copied. Reference materials retain their own rights; facts are not claimed as proprietary.

Original material, including the AI-generated decorative cover, is dedicated under CC0 1.0 to the extent applicable rights exist. The cover is an abstract illustration, not a molecular diagram. This is independent study material; NHGRI and other institutions do not endorse it.

Targetes d'aquesta baralla

  1. Targeta 1

    Pregunta

    For a gene, which DNA strand does RNA polymerase use as its base-pairing guide?

    Resposta

    The template strand. Its bases determine the complementary RNA bases.

  2. Targeta 2

    Pregunta

    In which direction does RNA polymerase build a new RNA strand?

    Resposta

    5′ → 3′. New nucleotides are added at the growing RNA strand’s 3′ end.

  3. Targeta 3

    Pregunta

    How do the directions of an RNA segment and its paired DNA template align?

    Resposta

    They are antiparallel: an RNA segment runs 5′ → 3′ alongside a template segment running 3′ → 5′.

  4. Targeta 4

    Pregunta

    Which four base letters belong in an ordinary RNA sequence?

    Resposta

    A, U, C, and G. RNA uses U (uracil) where the corresponding coding DNA has T (thymine).

  5. Targeta 5

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 5′-GTACCTGA-3′
    

    Resposta

    RNA: 5′-GUACCUGA-3′
    

    Keep the coding strand’s order and replace T with U.

  6. Targeta 6

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 3′-CAGTTCGA-5′
    

    Resposta

    RNA: 5′-GUCAAGCU-3′
    

    Complement the template in the displayed order: A → U, T → A, C → G, G → C.

  7. Targeta 7

    Pregunta

    RNA polymerase moves left to right across this transcribed segment. Which DNA strand is the template for this gene?

    Top:    3′-AGCTCAGG-5′
    Bottom: 5′-TCGAGTCC-3′
    

    Resposta

    Top strand. Along the stated movement, this strand is read 3′ → 5′.

  8. Targeta 8

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 5′-TGCAGATCCA-3′
    

    Resposta

    RNA: 5′-UGGAUCUGCA-3′
    

    Reverse the displayed template, then complement it: A → U, T → A, C → G, G → C.

  9. Targeta 9

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 5′-CAGTACGTT-3′
    

    Resposta

    RNA: 5′-CAGUACGUU-3′
    

    Keep the coding strand’s order and replace T with U.

  10. Targeta 10

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 3′-CTAGACCTGA-5′
    

    Resposta

    RNA: 5′-AGUCCAGAUC-3′
    

    Read the coding strand from its 5′ end: reverse the displayed letters, then replace T with U.

  11. Targeta 11

    Pregunta

    RNA polymerase moves right to left across this transcribed segment. Which DNA strand is the template for this gene?

    Top:    3′-ATCGGTCA-5′
    Bottom: 5′-TAGCCAGT-3′
    

    Resposta

    Bottom strand. Along the stated movement, this strand is read 3′ → 5′.

  12. Targeta 12

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 3′-GCTACCATGT-5′
    

    Resposta

    RNA: 5′-CGAUGGUACA-3′
    

    Complement the template in the displayed order: A → U, T → A, C → G, G → C.

  13. Targeta 13

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. The proposal complements its displayed bases, then changes the end labels without reversing the letters. Correct the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 5′-CGATTCAG-3′
    Proposed RNA: 5′-GCUAAGUC-3′
    

    Resposta

    RNA: 5′-CUGAAUCG-3′
    

    The complement in displayed order runs 3′ → 5′. Reverse its letters as well as its end labels to report it 5′ → 3′.

  14. Targeta 14

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 5′-GCTTAGACCA-3′
    

    Resposta

    RNA: 5′-GCUUAGACCA-3′
    

    Keep the coding strand’s order and replace T with U.

  15. Targeta 15

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 3′-CGTTAAGC-5′
    

    Resposta

    RNA: 5′-CGAAUUGC-3′
    

    Read the coding strand from its 5′ end: reverse the displayed letters, then replace T with U.

  16. Targeta 16

    Pregunta

    RNA polymerase moves left to right across this transcribed segment. Which DNA strand is the template for this gene?

    Top:    3′-GACTAGCA-5′
    Bottom: 5′-CTGATCGT-3′
    

    Resposta

    Top strand. Along the stated movement, this strand is read 3′ → 5′.

  17. Targeta 17

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 3′-ATCCGTGA-5′
    

    Resposta

    RNA: 5′-UAGGCACU-3′
    

    Complement the template in the displayed order: A → U, T → A, C → G, G → C.

  18. Targeta 18

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 5′-TCGAATGC-3′
    

    Resposta

    RNA: 5′-GCAUUCGA-3′
    

    Reverse the displayed template, then complement it: A → U, T → A, C → G, G → C.

  19. Targeta 19

    Pregunta

    This initial, unprocessed RNA segment was transcribed from a gene before processing. Write the corresponding coding DNA segment 5′ → 3′.

    RNA: 5′-CUAAGUGC-3′
    

    Resposta

    Coding DNA: 5′-CTAAGTGC-3′
    

    Keep the RNA’s order and replace U with T.

  20. Targeta 20

    Pregunta

    RNA polymerase moves right to left across this transcribed segment. Which DNA strand is the template for this gene?

    Top:    3′-TACGAGGT-5′
    Bottom: 5′-ATGCTCCA-3′
    

    Resposta

    Bottom strand. Along the stated movement, this strand is read 3′ → 5′.

  21. Targeta 21

    Pregunta

    The only evidence offered for choosing a gene’s template is that the top strand contains ATG. What is missing?

    Top:    5′-ATGCTCAG-3′
    Bottom: 3′-TACGAGTC-5′
    

    Resposta

    Evidence of which strand is transcribed for this gene, such as RNA polymerase’s movement across the segment. ATG alone does not establish the strand’s role.

  22. Targeta 22

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 5′-ACTGGCATG-3′
    

    Resposta

    RNA: 5′-CAUGCCAGU-3′
    

    Reverse the displayed template, then complement it: A → U, T → A, C → G, G → C.

  23. Targeta 23

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 5′-ACAGTTGC-3′
    

    Resposta

    RNA: 5′-ACAGUUGC-3′
    

    Keep the coding strand’s order and replace T with U.

  24. Targeta 24

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 3′-GACTTACGA-5′
    

    Resposta

    RNA: 5′-AGCAUUCAG-3′
    

    Read the coding strand from its 5′ end: reverse the displayed letters, then replace T with U.

  25. Targeta 25

    Pregunta

    RNA polymerase moves right to left across this transcribed segment. Which DNA strand is the template for this gene?

    Top:    5′-TCGACAGT-3′
    Bottom: 3′-AGCTGTCA-5′
    

    Resposta

    Top strand. Along the stated movement, this strand is read 3′ → 5′.

  26. Targeta 26

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 3′-TCAGGATCA-5′
    

    Resposta

    RNA: 5′-AGUCCUAGU-3′
    

    Complement the template in the displayed order: A → U, T → A, C → G, G → C.

  27. Targeta 27

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 5′-AGTCACGA-3′
    

    Resposta

    RNA: 5′-UCGUGACU-3′
    

    Reverse the displayed template, then complement it: A → U, T → A, C → G, G → C.

  28. Targeta 28

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Correct the proposed initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 5′-GATACCGT-3′
    Proposed RNA: 5′-UGCCAUAG-3′
    

    Resposta

    RNA: 5′-GAUACCGU-3′
    

    The coding strand is already displayed 5′ → 3′. Replace T with U without reversing its letters.

  29. Targeta 29

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 3′-TGACCTAG-5′
    

    Resposta

    RNA: 5′-GAUCCAGU-3′
    

    Read the coding strand from its 5′ end: reverse the displayed letters, then replace T with U.

  30. Targeta 30

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 3′-GATCCAGT-5′
    

    Resposta

    RNA: 5′-CUAGGUCA-3′
    

    Complement the template in the displayed order: A → U, T → A, C → G, G → C.

  31. Targeta 31

    Pregunta

    RNA polymerase moves right to left across this transcribed segment. Which DNA strand is the template for this gene?

    Top:    5′-CTTAGCGA-3′
    Bottom: 3′-GAATCGCT-5′
    

    Resposta

    Top strand. Along the stated movement, this strand is read 3′ → 5′.

  32. Targeta 32

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Correct the proposed initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 5′-ACGTTCGA-3′
    Proposed RNA: 5′-UGCAAGCU-3′
    

    Resposta

    RNA: 5′-UCGAACGU-3′
    

    Complementing the displayed template gives RNA in the opposite direction. Reverse that complement to report the RNA 5′ → 3′.

  33. Targeta 33

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 5′-TTGACGCA-3′
    

    Resposta

    RNA: 5′-UUGACGCA-3′
    

    Keep the coding strand’s order and replace T with U.

  34. Targeta 34

    Pregunta

    Repair this rule: “The top DNA strand in a drawing is always the coding strand.”

    Resposta

    Top or bottom position does not assign a strand’s role for a gene. Use the stated role, or identify the template as the strand RNA polymerase reads 3′ → 5′ along its movement.

  35. Targeta 35

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. What additional information is needed to infer the corresponding mature mRNA segment?

    Coding DNA: 5′-ACCTGAGT-3′
    

    Resposta

    Which processing changes, if any, affect this segment. Coding DNA alone determines the initial RNA sequence, but it does not tell you which bases remain in mature mRNA.

  36. Targeta 36

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Correct the proposed initial, unprocessed RNA segment before processing, keeping the answer 5′ → 3′.

    Template DNA: 3′-CATGGCAT-5′
    Proposed RNA: 5′-CAUGGCAU-3′
    

    Resposta

    RNA: 5′-GUACCGUA-3′
    

    The proposal copied the template. Pair each RNA base with the template base instead.

  37. Targeta 37

    Pregunta

    This gene’s transcribed DNA segment is shown as the template strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Template DNA: 5′-GGCATCTA-3′
    

    Resposta

    RNA: 5′-UAGAUGCC-3′
    

    Reverse the displayed template, then complement it: A → U, T → A, C → G, G → C.

  38. Targeta 38

    Pregunta

    Repair this rule: “For a transcribed coding DNA segment already written 5′ → 3′, complement every base to get the initial RNA 5′ → 3′.”

    Resposta

    Keep the coding sequence’s letter order and replace T with U. The initial RNA is complementary to the template, so it matches the corresponding coding strand apart from U replacing T.

  39. Targeta 39

    Pregunta

    Repair this rule: “Any DNA strand containing ATG must be the coding strand for the gene.”

    Resposta

    ATG alone does not identify the coding strand. You need the strand’s role for that gene or transcription-direction evidence; a short base pattern does not supply it.

  40. Targeta 40

    Pregunta

    RNA polymerase moves left to right across this transcribed segment. Which DNA strand is the template for this gene?

    Top:    5′-CGTAAGTC-3′
    Bottom: 3′-GCATTCAG-5′
    

    Resposta

    Bottom strand. Along the stated movement, this strand is read 3′ → 5′.

  41. Targeta 41

    Pregunta

    A DNA segment is known to be transcribed, but its role is not given. What information is missing before you can assign one initial RNA segment?

    DNA: 5′-CTGACATC-3′
    

    Resposta

    Its role for this gene: coding or template. The end labels alone do not choose between copying the coding sequence and reverse-complementing the template.

  42. Targeta 42

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Write the initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 3′-ATGCCAGT-5′
    

    Resposta

    RNA: 5′-UGACCGUA-3′
    

    Read the coding strand from its 5′ end: reverse the displayed letters, then replace T with U.

  43. Targeta 43

    Pregunta

    This initial, unprocessed RNA segment was transcribed from a gene before processing. Write the corresponding template DNA segment 5′ → 3′.

    RNA: 5′-AGUCAGGA-3′
    

    Resposta

    Template DNA: 5′-TCCTGACT-3′
    

    The paired template is 3′-TCAGTCCT-5′. Reverse it to report the DNA 5′ → 3′.

  44. Targeta 44

    Pregunta

    This gene’s transcribed DNA segment is shown as the coding strand. Correct the proposed initial, unprocessed RNA segment before processing, 5′ → 3′.

    Coding DNA: 5′-TGCAAGCT-3′
    Proposed RNA: 5′-TGCAAGCT-3′
    

    Resposta

    RNA: 5′-UGCAAGCU-3′
    

    Keep the coding strand’s order and replace both T bases with U.

  45. Targeta 45

    Pregunta

    The shown coding DNA segment is transcribed for this gene. What is missing before you can write one initial, unprocessed RNA segment 5′ → 3′?

    Coding DNA: GCATACCG
    

    Resposta

    The displayed direction: which end is 5′ and which is 3′. Without it, the letter order of the RNA written 5′ → 3′ is ambiguous.

  46. Targeta 46

    Pregunta

    RNA polymerase moves left to right across this transcribed segment. Which DNA strand is the template for this gene?

    Top:    5′-CAGTCGAT-3′
    Bottom: 3′-GTCAGCTA-5′
    

    Resposta

    Bottom strand. Along the stated movement, this strand is read 3′ → 5′.

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46 targetes

Coding vs Template Strand Flashcards: Transcription Practice

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