Skip to main content
Ch. 15 - Recombinant DNA Technology and Its Applications
Sanders - Genetic Analysis: An Integrated Approach 3rd Edition
Sanders3rd EditionGenetic Analysis: An Integrated ApproachISBN: 9780135564172당신이 사용하는 게 아니라요?교과서 변경
15장, 문제 19b

You have isolated a genomic clone with an EcoRI fragment of 11 kb that encompasses the CRABS CLAW gene (see Problem 18). You digest the genomic clone with HindIII and note that the 11-kb EcoRI fragment is split into three fragments of 9 kb, 1.5 kb, and 0.5 kb.
Restriction enzyme sites within a cDNA clone are often also found in the genomic sequence. Can you think of a reason why occasionally this is not the case? What about the converse: Are restriction enzyme sites in a genomic clone always in a cDNA clone of the same gene?

검증된 단계별 안내
1
Understand the difference between genomic DNA and cDNA: Genomic DNA contains both coding (exons) and non-coding (introns, regulatory regions) sequences, while cDNA is synthesized from mRNA and represents only the coding regions (exons). This distinction is key to answering the question.
Consider why restriction enzyme sites might differ between genomic DNA and cDNA: Restriction enzyme sites are specific sequences of nucleotides. In genomic DNA, these sites can be present in introns or regulatory regions, which are absent in cDNA. Therefore, some restriction sites in the genomic DNA may not appear in the cDNA clone.
Analyze the converse scenario: Restriction enzyme sites in a cDNA clone are derived from the coding regions of the gene. These sites should generally be present in the genomic DNA, as the exons in cDNA are part of the genomic sequence. However, mutations or polymorphisms in the genomic DNA could alter or eliminate these sites.
Reflect on the role of alternative splicing: Alternative splicing can lead to different mRNA isoforms, which may result in cDNA clones with variations in sequence. These variations could affect the presence of restriction enzyme sites in the cDNA compared to the genomic DNA.
Summarize the implications: Restriction enzyme sites in genomic DNA are not always found in cDNA due to the absence of introns and regulatory regions in cDNA. Conversely, restriction sites in cDNA are typically present in genomic DNA, but exceptions can occur due to mutations or alternative splicing.

비슷한 문제에 대한 검증된 영상 답변:

이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
3m

주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Restriction Enzymes

Restriction enzymes are proteins that cut DNA at specific sequences, known as restriction sites. They are essential tools in molecular biology for cloning and analyzing DNA fragments. Different enzymes recognize different sequences, which can lead to varying fragment sizes when DNA is digested. Understanding how these enzymes work is crucial for interpreting results from genomic and cDNA clones.
추천 영상:
가이드 코스
07:11
Mapping with Markers

Genomic vs. cDNA Clones

Genomic clones contain the entire genomic DNA, including introns, exons, and regulatory regions, while cDNA clones are synthesized from mRNA and represent only the expressed genes (exons). This difference means that cDNA clones lack intronic sequences, which can affect the presence of restriction sites. Consequently, restriction sites found in genomic DNA may not always be present in cDNA clones due to splicing.
추천 영상:
가이드 코스
07:39
Genetic Cloning

Gene Structure and Splicing

Gene structure refers to the arrangement of exons and introns within a gene. During the process of splicing, introns are removed from the pre-mRNA transcript, resulting in a mature mRNA that only contains exons. This process can lead to the absence of certain restriction sites in cDNA clones that are present in the genomic DNA, as the sites may be located within introns that are not included in the final mRNA product.
추천 영상:
가이드 코스
03:49
Ribosome Structure
관련 실천
교과서 질문

You have isolated another cDNA clone of the CRABS CLAW gene from a cDNA library. The cDNA was directionally cloned using the EcoRI and XhoI sites. You sequence the recombinant plasmid using primers complementary to the T7 and T3 promoter sites flanking the MCS. The first 30 to 60 bases of sequence are usually discarded since they tend to contain errors.

Will the long stretch of T residues in the T3 sequence exist in the genomic sequence of the gene?

493
views
교과서 질문

You have identified a 0.80-kb cDNA clone that contains the entire coding sequence of the Arabidopsis gene CRABS CLAW. In the construction of the cDNA library, linkers with EcoRI sites were added to each end of the cDNA, and the cDNA was inserted into the EcoRI site of the MCS of the vector shown in the accompanying figure. You perform digests on the CRABS CLAW cDNA clone with restriction enzymes and obtain the following results. Can you determine the orientation of the cDNA clone with respect to the restriction enzyme sites in the vector? The restriction enzyme sites listed in the dark blue region are found only in the MCS of the vector.

877
views
교과서 질문

You have isolated a genomic clone with an EcoRI fragment of 11 kb that encompasses the CRABS CLAW gene. You digest the genomic clone with HindIII and note that the 11-kb EcoRI fragment is split into three fragments of 9 kb, 1.5 kb, and 0.5 kb.

Does this tell you anything about where the CRABS CLAW gene is located within the 11-kb genomic clone?

613
views
교과서 질문

To further analyze the CRABS CLAW gene, you create a map of the genomic clone. The 11-kb EcoRI fragment is ligated into the EcoRI site of the MCS of the vector shown in Problem 18. You digest the double-stranded form of the genome with several restriction enzymes and obtain the following results. Draw, as far as possible, a map of the genomic clone of CRABS CLAW.

What restriction digest would help resolve any ambiguity in the map?

438
views
교과서 질문

The bacteriophage ϕX174 has a single-stranded DNA genome of 5386 bases. During DNA replication, double-stranded forms of the genome are generated. In an effort to create a restriction map of ϕX174, you digest the z-stranded form of the genome with several restriction enzymes and obtain the following results. Draw a map of the ϕX174 genome.

645
views
교과서 질문

You have isolated another cDNA clone of the CRABS CLAW gene from a cDNA library.. The cDNA was directionally cloned using the EcoRI and XhoI sites. You sequence the recombinant plasmid using primers complementary to the T7 and T3 promoter sites flanking the MCS. The first 30 to 60 bases of sequence are usually discarded since they tend to contain errors.

Can you identify which sequence portions are derived from the vector (specifically the MCS) and which are derived from the cDNA clone?

548
views