You are engineering a new vector that contains a screenable marker that can be used for blue/white screening of successful clones. For each site (1, 2, and 3) on the cloning vector below, describe why it would or would not be a good place for you to put the polylinker to facilitate blue/white screening. You can assume that the polylinker itself will not interfere with coding sequence in that region. In other words, the polylinker length will be a multiple of 3 nucleotides, will not contain a stop codon, and any amino acids translated will not affect the activity of the protein in that region. The arrows indicate the direction of transcription for the gene. Note from student: As stated in the problem... "YOU CAN ASSUME THAT THE POLYLINKER ITSELF WILL NOT INTERFERE WITH CODING SEQUENCE IN THAT REGION. IN OTHER WORDS, THE POLYLINKER LENGTH WILL BE A MULTIPLE OF 3 NUCLEOTIDES, WILL NOT CONTAIN A STOP CODON, AND ANY AMINO ACIDS TRANSLATED WILL NOT AFFECT THE ACTIVITY OF THE PROTEIN IN THAT REGION." Also this problem is targetted for SPECIFICALLY blue white screening. Please provide an explanation for each site.
You are engineering a new vector that contains a screenable marker that can be used for blue/white screening of successful clones. For each site (1, 2, and 3) on the cloning vector below, describe why it would or would not be a good place for you to put the polylinker to facilitate blue/white screening. You can assume that the polylinker itself will not interfere with coding sequence in that region. In other words, the polylinker length will be a multiple of 3
Note from student:
As stated in the problem... "YOU CAN ASSUME THAT THE POLYLINKER ITSELF WILL NOT INTERFERE WITH CODING SEQUENCE IN THAT REGION. IN OTHER WORDS, THE POLYLINKER LENGTH WILL BE A MULTIPLE OF 3 NUCLEOTIDES, WILL NOT CONTAIN A STOP CODON, AND ANY AMINO ACIDS TRANSLATED WILL NOT AFFECT THE ACTIVITY OF THE PROTEIN IN THAT REGION."
Also this problem is targetted for SPECIFICALLY blue white screening. Please provide an explanation for each site.
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