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<p> General info.</p> | <p> General info.</p> | ||
− | <h2 class="lab-color">Testing of biofilm promoting mediums (2. – 6. August)<h2> | + | <h2 class="lab-color">Testing of biofilm promoting mediums (2. – 6. August)</h2> |
<p> | <p> | ||
We had been informed by Kåre Bergh and Sven Even Borgos (see <a href="https://2018.igem.org/Team:NTNU_Trondheim/Human_Practices"> Human Practices </a> for more information about these interviews) that the bacteria’s ability to form biofilms is highly dependent on their growth conditions, and that they are especially sensitive to glucose concentrations and pH levels. We wanted to test our CRISPRi system in a medium that promotes biofilm formation because it would make it easier to see a noticeable effect if the system works as expected. </p> | We had been informed by Kåre Bergh and Sven Even Borgos (see <a href="https://2018.igem.org/Team:NTNU_Trondheim/Human_Practices"> Human Practices </a> for more information about these interviews) that the bacteria’s ability to form biofilms is highly dependent on their growth conditions, and that they are especially sensitive to glucose concentrations and pH levels. We wanted to test our CRISPRi system in a medium that promotes biofilm formation because it would make it easier to see a noticeable effect if the system works as expected. </p> |
Revision as of 15:52, 14 October 2018
Development of a biofilm meassurement protocol
General info.
Testing of biofilm promoting mediums (2. – 6. August)
We had been informed by Kåre Bergh and Sven Even Borgos (see Human Practices for more information about these interviews) that the bacteria’s ability to form biofilms is highly dependent on their growth conditions, and that they are especially sensitive to glucose concentrations and pH levels. We wanted to test our CRISPRi system in a medium that promotes biofilm formation because it would make it easier to see a noticeable effect if the system works as expected.
In order to investigate which medium gives the highest degree of biofilm formation, we made nine variants of LB and M63B1 medium varying in pH levels (4.5, 7.2 and 9.2) and glucose concentrations (0%, 0.4%, and 0.8%). E. coli TG1 cells were inoculated in each medium and incubated. Table 1 shows the measured OD values for the overnight TG1 cultures. We observed a higher planktonic growth in LB than in M63B1. This is consistent with the fact that M63B1 is a minimal medium with a limited amount of nutrition, mimicking natural conditions (KILDE ). LB, on the other hand, is a nutrition rich medium which provides good conditions for rapid and numerous growth (KILDE ). Generally, the highest growth in both LB and M63B1 were observed in mediums with a pH level of 7.2 supplemented with glucose, either 0.4%, and 0.8%, with only slight differences between the two.
pH, | glucose OD600 |
---|---|
LB M63B1 | |
4.5, | 0% 1.790 0 |
4.5, | 0.4% 0.023 0.002 |
4.5, | 0.8% 0.600 0.001 |
7.2, | 0% 1.697 0.002 |
7.2, | 0.4% 1.200 0.201 |
7.2, | 0.8% 1.255 0.228 |
9.2, | 0% 0.006 0 |
9.2, | 0.4% 0.005 0.002 |
9.2, | 0.8% 1.366 0.002 |