Team:SDU-Denmark/project-p

From 2010.igem.org

(Difference between revisions)
(Scanning Electron microscopy)
(UV-Vis determination of beta-carotene and retinal production)
Line 142: Line 142:
== K343005 ==  
== K343005 ==  
===UV-Vis determination of beta-carotene and retinal production===
===UV-Vis determination of beta-carotene and retinal production===
-
In this experiment cells was prepare and harvested according to protocol [https://2010.igem.org/Team:SDU-Denmark/protocols#EX1.1 EX1.1]. This experiment was preformed with six different strains of ''E. coli'':<br> <br>
+
In this experiment cells were prepared and harvested according to protocol [https://2010.igem.org/Team:SDU-Denmark/protocols#EX1.1 EX1.1]. This experiment was performed with six different strains of ''E. coli'':<br> <br>
Wild type Top10<br>  
Wild type Top10<br>  
Wild type MG1655<br>  
Wild type MG1655<br>  
-
Top10 containing PSB1A2 with constitutively active K274210<br>  
+
Top10/pSB1A2-K274210 <br>  
-
MG1655 containing PSB1A2 with constitutively active K274210<br>  
+
MG1655/pSB1A2-K274210<br>  
-
TOP10 containing PSB1A2 with K274210 and PSB1C3 with K343005, both under a constitutively active promotor<br>  
+
TOP10/pSB1A2-K274210/pSB1C3-K343005<br>  
-
MG1655 containing PSB1A2 with K274210 and PSB1C3 with K343005, both under a constitutively active promotor<br> <br>
+
MG1655/pSB1A2-K274210/pSB1C3-K343005<br>
-
The measurements were performed on cells after 20 hours of growth seeing as the first experiment showed no or little product in the exponential phase. The resulting graphs are presented below:<br> <br>
+
Both parts were constitutively expressed.<br><br>
 +
Since the first experiment showed no or small amounts of product in cells grown to exponensial phase the measurements were performed on cells incubated for 20 hours at 37degrees celcius and 180rpm. The graphs obtained from the experiment are presented below:<br> <br>
[[Image: Team-SDU-denmark-Samples form top10 mg1655 and control.png |350px|]]
[[Image: Team-SDU-denmark-Samples form top10 mg1655 and control.png |350px|]]
<br><br>
<br><br>
-
In the spectrum, a sudden drop at 320 nm occurs. This cannot be explained .<br>
+
In the spectrum, a sudden drop at 320nm occurs. This cannot be explained .<br>
-
The graph also shows that some cell material interferes with the UV-vis measurement where the retinal has the strongest absorption. For this reason, some organic separation may be needed before the measurement is performed.<br>  
+
The graph also shows that cell material interferes with the UV-vis measurement where the retinal has the strongest absorption. Therefore, an organic separation is required prior to the measurements.<br>  
In order to assess the results, standard dilutions of beta-carotene and retinal were made and measured. The concentrations were 1mM, 100 µM, 50 µM, 25 µM, 10 µM, 5 µM, 1 µM, 100 nM and 10 nM. The standard dilutions were measured on the spectrophotometer. The resulting graphs are presented below:<br><br>
In order to assess the results, standard dilutions of beta-carotene and retinal were made and measured. The concentrations were 1mM, 100 µM, 50 µM, 25 µM, 10 µM, 5 µM, 1 µM, 100 nM and 10 nM. The standard dilutions were measured on the spectrophotometer. The resulting graphs are presented below:<br><br>
[[Image: Team-SDU-denmark-Beta-carotene standarts.png |350px|]]
[[Image: Team-SDU-denmark-Beta-carotene standarts.png |350px|]]
[[Image: Team-SDU-denmark-Retinal standarts.png |315px|]]
[[Image: Team-SDU-denmark-Retinal standarts.png |315px|]]
<br>
<br>
-
The spectrum for the beta-carotene looks normal and reliable, the standards for retinal, however, don’t look reliable. The spectrum for the three lowest concentrations appear to be giving a wrong picture from the measurement.<br>  
+
The spectrum for the beta-carotene looks normal and reliable. The standards for retinal, however, do not look reliable. The spectrum for the three lowest concentrations appear to be giving a wrong picture from the measurement.<br>  
The measurement jumps rapidly from nearly nothing to the maximum absorbance. This might be because the concentration of retinal is too low to be measured as a spectrum, but the concentration of the individual derivates of retinal might be high enough to be measured.<br>
The measurement jumps rapidly from nearly nothing to the maximum absorbance. This might be because the concentration of retinal is too low to be measured as a spectrum, but the concentration of the individual derivates of retinal might be high enough to be measured.<br>
It might also be that the concentrations are too low and something else is influencing the measurements.<br>
It might also be that the concentrations are too low and something else is influencing the measurements.<br>

Revision as of 03:20, 26 October 2010