Team:LCG-UNAM-Mexico/LauraJournal
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<br><span style="font-size:14px"> ''Burst size obtained with purification data.'' </span> | <br><span style="font-size:14px"> ''Burst size obtained with purification data.'' </span> | ||
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- | These results were used to obtain the “burst size” of T7 bacteriophages. I assumed a couple of things: all the phages are infecting a bacterium, all the cells were infected and almost all the bacteria died in the first round of infection. I calculated the bacteria number with the formula obtained from the growth curve which involves OD and UFC. So I calculated the burst size as the total number of phages produced divided by the total number of bacteria. The data from the first purification (1BS stock)indicate a burst size of 952 phages per bacterium. However the data from the 2BS stock indicate a burst size of 160,000 phages per bacterium and surprisingly the data from the 3BS stock indicate a bigger number. We know it is not possible because the phage production is limited by the amount of nucleotides available. For this reason, | + | These results were used to obtain the “burst size” of T7 bacteriophages. I assumed a couple of things: all the phages are infecting a bacterium, all the cells were infected and almost all the bacteria died in the first round of infection. I calculated the bacteria number with the formula obtained from the growth curve which involves OD and UFC. So I calculated the burst size as the total number of phages produced divided by the total number of bacteria. The data from the first purification (1BS stock)indicate a burst size of 952 phages per bacterium. However the data from the 2BS stock indicate a burst size of 160,000 phages per bacterium and surprisingly the data from the 3BS stock indicate a bigger number. We know it is not possible because the phage production is limited by the amount of nucleotides available. For this reason, We designed other experiment to measure the burst size. From now I focused on T7 because I felt the time wasn't enough.<br> |
==October== | ==October== | ||
- | + | We did a growth curve with phage.<br><br> | |
In the first assay I cultured 35ml of M9LB c1a when the OD reached a value close to 0.8 I added 5ul of T3 or T7. I took OD measures (550nm)every twenty minutes. No phage was added in the control. The data recollected from this experiment is shown in the following table. I did the assay twice. Because I took different initial values for this replicate and because I didn’t do plates I repeated the assay taking into account these facts.<br> | In the first assay I cultured 35ml of M9LB c1a when the OD reached a value close to 0.8 I added 5ul of T3 or T7. I took OD measures (550nm)every twenty minutes. No phage was added in the control. The data recollected from this experiment is shown in the following table. I did the assay twice. Because I took different initial values for this replicate and because I didn’t do plates I repeated the assay taking into account these facts.<br> | ||
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<br><span style="font-size:14px"> ''Third experiment to obtain the burst size.'' </span><br><br> | <br><span style="font-size:14px"> ''Third experiment to obtain the burst size.'' </span><br><br> | ||
- | I did two replicates of this experiment. I did a modified | + | I did two replicates of this experiment. I did a modified Tittering Protocol. I took 500ul of cells with an OD of 0.8 and I added 100ul of phage dilution. The dilutions were made from the T7 original stock, I used the 10^-8, 10^9, 10^10 and 10^11 dilutions in which I expected 100, 10, 1 and 0 phages, respectively. This mix stayed 25 minutes on the shaker after this I tittered the cultures and I obtained the next results. |
+ | |||
+ | DILUTION 3E 3E2 | ||
+ | 10^-8 Clear Clear | ||
+ | 10^-9 Clear Clear | ||
+ | 10^-10 1000 aprox 1000 aprox | ||
+ | 10^-11 1000 aprox 1000aprox | ||
+ | <span style="font-size:10px"> The same nomenclature rules are followed </span><br><br> | ||
<br> | <br> | ||
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Latest revision as of 02:49, 22 October 2009