Difference between revisions of "Part:BBa K4630100:Experience"

 
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===Applications of BBa_K4630100===
 
===Applications of BBa_K4630100===
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This part is the key element we use in the proof-of-concept of the recorder. Also, it is used to measure the basic parameter of the recording event. The overall experiments we conduct on BBa_K4630100 includes:
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# Verification of the self-targeting and self-recombination
 +
# Exploration of the concentration and induction time reliance of the inducer
 +
# Exclusion of the unexpected recombination
 +
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===General Induction Protocol===
 +
# Pick a colony from the verified plate, cultivate in 5ml liquid LB media for 12 hours.
 +
# Transfer 100µl bacteria solution to 3ml new liquid LB media. Cultivate to an OD600 of 0.3~0.5.
 +
# Add L-Arabinose and IPTG to certain final concentration and induce for a certain time.
 +
# Spread the diluted solution to plates with appropriate antibiotics, and cultivate for 12 hours.
 +
# Pick the colonies and test the editing result.
 +
 +
===Results===
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====Strain Construction====
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We successfully co-transformed our working plasmid with pCas, the vector for Cas9 and Lambda Red, into Escherichia coli DH5α (fig 1).
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        <div class="col-lg" style="margin:auto;text-align:center;">
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                <img style="margin:20px auto 5px auto;" src="https://static.igem.wiki/teams/4630/wiki/parts/bba-k4630100-stgrna-barcode-cassette-1/1-part-stgrna-barcode-cassette1.svg" width="80%">
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</div>
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<div class="col-lg" style="margin:auto;text-align:left;">
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                <p style="color:Gray; padding:0px 30px 10px;">
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Fig 1 Construction of the working strain <br>
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Colony PCR results of the recorder with barcode. The white hollow arrowheads indicate the target bands. Index 5, 6, 7, 8, 9, 10, 11, 12 were successfully co-transformed. <br>
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</p>
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</div>
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</html>
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====First Concentration Matrix====
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We added a variable dosage of arabinose and IPTG close to the working concentration(tbl 1). Induction time for L-Arabinose is 22 hours and IPTG 5 hours. The sequencing result uncovered a successful editing (fig 2a). Large-scale screening revealed that condition 2 exhibited the highest efficiency, with efficiencies of 70%, 10%, and 38.1% for condition 2, 3, and 4, respectively (fig 2b). Non-induction controls substantiated that induction is the prerequisite for recording (fig 2c).
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        <div class="col-lg" style="margin:auto;text-align:center;">
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                <p style="color:Gray; padding:0px 30px 10px;">Table 1. The random test over inducers</p>
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</html>
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===User Reviews===
 
===User Reviews===

Revision as of 19:26, 10 October 2023


This experience page is provided so that any user may enter their experience using this part.
Please enter how you used this part and how it worked out.

Applications of BBa_K4630100

This part is the key element we use in the proof-of-concept of the recorder. Also, it is used to measure the basic parameter of the recording event. The overall experiments we conduct on BBa_K4630100 includes:

  1. Verification of the self-targeting and self-recombination
  2. Exploration of the concentration and induction time reliance of the inducer
  3. Exclusion of the unexpected recombination

General Induction Protocol

  1. Pick a colony from the verified plate, cultivate in 5ml liquid LB media for 12 hours.
  2. Transfer 100µl bacteria solution to 3ml new liquid LB media. Cultivate to an OD600 of 0.3~0.5.
  3. Add L-Arabinose and IPTG to certain final concentration and induce for a certain time.
  4. Spread the diluted solution to plates with appropriate antibiotics, and cultivate for 12 hours.
  5. Pick the colonies and test the editing result.

Results

Strain Construction

We successfully co-transformed our working plasmid with pCas, the vector for Cas9 and Lambda Red, into Escherichia coli DH5α (fig 1).


Fig 1 Construction of the working strain
Colony PCR results of the recorder with barcode. The white hollow arrowheads indicate the target bands. Index 5, 6, 7, 8, 9, 10, 11, 12 were successfully co-transformed.


First Concentration Matrix

We added a variable dosage of arabinose and IPTG close to the working concentration(tbl 1). Induction time for L-Arabinose is 22 hours and IPTG 5 hours. The sequencing result uncovered a successful editing (fig 2a). Large-scale screening revealed that condition 2 exhibited the highest efficiency, with efficiencies of 70%, 10%, and 38.1% for condition 2, 3, and 4, respectively (fig 2b). Non-induction controls substantiated that induction is the prerequisite for recording (fig 2c).

Table 1. The random test over inducers


User Reviews

UNIQ46e8807661a64159-partinfo-00000002-QINU UNIQ46e8807661a64159-partinfo-00000003-QINU