Difference between revisions of "Team:Arizona State/Experiments"

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<h2> <ins>Brianna Lopez</ins> </h2>
 
<h2> <ins>Brianna Lopez</ins> </h2>
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<h2>Plate Reader Protocol for Synthetic AHL Liquid Culture Inductions</h2>
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<p>Purpose: To set up and run a plate of synthetic AHL liquid culture inductions for overnight growth curves in a plate reader. </p>
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<p><b>Materials: </b></p>
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<ul>
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<li>Use of 1 or 2 separate synthetic AHLs, in this example Las AHL and Lux AHL. </li>
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<li>Use of 1 receiver that will interact with the synthetic AHLs, in this example LuxR.</li>
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<li>Controls that will need to be transformed into colonies on LB/AMP plates:</li>
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o Negative Sender (negative control for synthetic AHL)
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o Receiver
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o GFP (positive control)
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o Negative Receiver (negative control for the receiver)
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o Sender Supernatant (in this example, LuxI supernatant from the natural AHL that a sender cell produces, is a positive control for the receiver to show it works)
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</ul>
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<p><b>Procedure:</p></b>
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<p>For plating purposes in this example, Negative Receiver, GFP Postive, and Reciver liquid cultures must have a final OD600 of 0.4 once it enters the plate reader for overnight growth curve readings. This specific OD600 value can be set depending on what range on the curve is needing analysis. </p>
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<p>Day 1: </p>
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<ol type="1">
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<li>Make liquid cultures of LuxR, Negative Sender, Negative Receiver, Positive GFP, and Receiver cells. </li>
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<li>In 15mL culture tubes for each individual sample, put 3-4 mL of LB/AMP broth into the tubes. </li>
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<li>Then picking colonies off of the transformed plates of LuxR, Negative Sender, Negative Receiver, Positive GFP, and Receiver cells into their corresponding culture tube containing LB/AMP broth.</li>
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<li>Make sure there is enough liquid culture for the following day of plating, taking into account the evaporation of LB/AMP broth. </li>
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<li>Place culture tubes into a shaking incubator at 37̊C for overnight growth.</li>
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</ol>
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<p>Day 2:</p>
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<ol type="1">
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<li>Take samples out of the shaking incubator as they have grown overnight.</li>
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<li>Take another culture tube and using the culture tube of receiver grown the previous night, reseed in fresh LB/AMP inside the culture tube. </li>
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<li>This reseeding culture contains 10% overnight culture and the remaining volume containing LB/AMP. </li>
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<li>Leave this to regrow for 5 hours before plating. </li>
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<li>Check OD600 for the LuxR (receiver), Negative Receiver, and Positive GFP samples with an LB/AMP well as a control comparison. </li>
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<li>These OD600 readings should be between 0.4 and 0.6 once put into the plate reader for curve readings at the end of day. </li>
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<li>Then filter senders from cells in the culture tubes into supernatant. These senders include Negative Sender, and LuxI or the positive sender control for the receiver. </li>
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</ol>
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<ol type="a">
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<li>Begin by centrifuging the culture tubes until cells are at the bottom, and the remaining supernatant is of similar color to LB.</li>
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<li>Filter this remaining supernatant through a syringe with a filter at the bottom into a new tube and label the type of sender. </li>
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<li>Do this for both senders. </li>
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</ol>
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<ol type="1">
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<li>Begin plating all samples into 96-well plate. </li>
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<li>Plate Reader Protocol: </li>
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</ol>
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<ol type="a">
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<li>Go to Protocol > Procedure > Check Temperature is set to 37̊C, Check A(600) and F(485,515) are set > Click Flourescence > Gain > Options > Make sure the automatic Gain Adjustment is set properly > scale to low wells > scale wells (this is where the three Negative Sender and Receiver wells are on the plate) > scale value 200 </li>
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</ol>
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<ol type="1">
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<li>Save this plate reader data to place of choice on the computer, and begin to run the plate for overnight growth curves. </li>
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</ol>
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<h2> Mini-Prep Protocol </h2>
 
<h2> Mini-Prep Protocol </h2>
 
<h4> Harvest Cell : </h4>
 
<h4> Harvest Cell : </h4>

Revision as of 21:58, 20 October 2017