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display: inline-grid; | display: inline-grid; | ||
grid-row-gap: 15px; | grid-row-gap: 15px; | ||
− | + | grid-template-columns: 15vw 35vw; | |
− | grid-template-columns: 15vw | + | grid-template-rows: 30vh 30vh 30vh 30vh 30vh 30vh; |
− | grid-template-rows: | + | |
align-items: center; | align-items: center; | ||
justify-items: center; | justify-items: center; | ||
− | |||
} | } | ||
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grid-row-start: 1; | grid-row-start: 1; | ||
grid-row-end: 2; | grid-row-end: 2; | ||
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grid-row-end: 3; | grid-row-end: 3; | ||
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grid-row-end: 6; | grid-row-end: 6; | ||
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grid-row-start: 5; | grid-row-start: 5; | ||
grid-row-end: 6; | grid-row-end: 6; | ||
+ | } | ||
+ | .grid11 { | ||
+ | grid-column-start: 1; | ||
+ | grid-column-end: 2; | ||
+ | grid-row-start: 6; | ||
+ | grid-row-end: 7; | ||
+ | margin: 15px; | ||
+ | } | ||
+ | |||
+ | .grid12 { | ||
+ | grid-column-start: 2; | ||
+ | grid-column-end: 3; | ||
+ | grid-row-start: 6; | ||
+ | grid-row-end: 7; | ||
} | } | ||
</style> | </style> | ||
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agricultural waste as a carbon source for energy. </p> | agricultural waste as a carbon source for energy. </p> | ||
</div> | </div> | ||
− | + | <div class="grid3"> | |
− | + | <a | |
href="https://2020.igem.org/Team:Calgary/Cellulase_General" class="imglink"> | href="https://2020.igem.org/Team:Calgary/Cellulase_General" class="imglink"> | ||
− | <center><img | + | <center><img class="img-fluid" |
src="https://static.igem.org/mediawiki/2020/f/ff/T--Calgary--validate.jpg"> | src="https://static.igem.org/mediawiki/2020/f/ff/T--Calgary--validate.jpg"> | ||
− | <h4>GAUSHAUS</h4> | + | </center></a> |
− | + | ||
− | + | </div> | |
− | + | <div class="grid4"> | |
− | + | <h4>GAUSHAUS</h4> | |
− | + | <br /> | |
− | + | <p>Integrating cellulase genes into the <span style="font-style: italic;class=" | |
− | + | italic">Y. lipolytica</span> genome, thus allowing the yeast to use | |
− | + | agricultural waste as a carbon source for energy. </p> | |
+ | </div> | ||
+ | <div class="grid5"> | ||
+ | <a | ||
href="https://2020.igem.org/Team:Calgary/Gaushaus" class="imglink"> | href="https://2020.igem.org/Team:Calgary/Gaushaus" class="imglink"> | ||
− | <center><img | + | <center><img class="img-fluid" |
− | src="https://static.igem.org/mediawiki/2020/7/79/T--Calgary--characterize.jpg"> | + | src="https://static.igem.org/mediawiki/2020/7/79/T--Calgary--characterize.jpg"></center></a> |
− | + | ||
− | + | </div> | |
− | + | <div class="grid6"> | |
− | + | <h4>STICKS</h4> | |
− | + | <br /> | |
− | + | <p>Engineering the different strains to be dependent on each other so they can | |
− | + | only | |
− | + | survive within the bioreactor and not in the environment </p> | |
− | + | </div> | |
+ | <div class="grid7"> | ||
+ | <a | ||
href="https://2020.igem.org/Team:Calgary/Metabolic_Flux" class="imglink"> | href="https://2020.igem.org/Team:Calgary/Metabolic_Flux" class="imglink"> | ||
− | <center><img | + | <center><img class="img-fluid" |
− | src="https://static.igem.org/mediawiki/2020/7/79/T--Calgary--characterize.jpg"> | + | src="https://static.igem.org/mediawiki/2020/7/79/T--Calgary--characterize.jpg"></center></a> |
− | + | </div> | |
+ | <div class="grid8"> | ||
+ | <h4>METABOLIC FLUX</h4> | ||
+ | <br/> | ||
<p>Engineering the different strains to be dependent on each other so they can | <p>Engineering the different strains to be dependent on each other so they can | ||
only | only | ||
survive within the bioreactor and not in the environment </p> | survive within the bioreactor and not in the environment </p> | ||
− | + | </div> | |
− | + | <div class="grid9"> | |
− | + | <a | |
− | + | ||
− | + | ||
href="https://2020.igem.org/Team:Calgary/Cellobiohydrolase" class="imglink"> | href="https://2020.igem.org/Team:Calgary/Cellobiohydrolase" class="imglink"> | ||
− | <center><img | + | <center><img class="img-fluid" |
− | src="https://static.igem.org/mediawiki/2020/7/79/T--Calgary--characterize.jpg"> | + | src="https://static.igem.org/mediawiki/2020/7/79/T--Calgary--characterize.jpg"></center></a> |
− | + | </div> | |
+ | <div class="grid10"> | ||
+ | <h4>HARDWARE</h4> | ||
+ | <br/> | ||
<p>Engineering the different strains to be dependent on each other so they can | <p>Engineering the different strains to be dependent on each other so they can | ||
only | only | ||
survive within the bioreactor and not in the environment </p> | survive within the bioreactor and not in the environment </p> | ||
− | + | </div> | |
− | + | <div class="grid11"> | |
− | + | <a | |
− | + | ||
− | + | ||
href="https://2020.igem.org/Team:Calgary/Endoglucanase1" class="imglink"> | href="https://2020.igem.org/Team:Calgary/Endoglucanase1" class="imglink"> | ||
− | <center><img | + | <center><img class="img-fluid" |
− | src="https://static.igem.org/mediawiki/2020/7/79/T--Calgary--characterize.jpg"> | + | src="https://static.igem.org/mediawiki/2020/7/79/T--Calgary--characterize.jpg"></center></a> |
− | + | </div> | |
+ | <div class="grid12"> | ||
+ | <h4>ENDOGLUCANASE</h4> | ||
+ | <br/> | ||
<p>Engineering the different strains to be dependent on each other so they can | <p>Engineering the different strains to be dependent on each other so they can | ||
only | only | ||
survive within the bioreactor and not in the environment </p> | survive within the bioreactor and not in the environment </p> | ||
− | + | </div> | |
− | </ | + | |
</div> | </div> | ||
</div> | </div> |
Revision as of 02:43, 27 October 2020
SOFTWARE OVERVIEW
Oviita has three main wet lab components that allow Yarrowia lipolytica to be easy and safe to work with in communities, and be as nutritionally valuable as possible. This year we did extensive planning of experiments, including trouble-shooting plans. Check out our work below!
BELLATRIX
Integrating cellulase genes into the Y. lipolytica genome, thus allowing the yeast to use agricultural waste as a carbon source for energy.
GAUSHAUS
Integrating cellulase genes into the Y. lipolytica genome, thus allowing the yeast to use agricultural waste as a carbon source for energy.
STICKS
Engineering the different strains to be dependent on each other so they can only survive within the bioreactor and not in the environment
METABOLIC FLUX
Engineering the different strains to be dependent on each other so they can only survive within the bioreactor and not in the environment
HARDWARE
Engineering the different strains to be dependent on each other so they can only survive within the bioreactor and not in the environment
ENDOGLUCANASE
Engineering the different strains to be dependent on each other so they can only survive within the bioreactor and not in the environment