Difference between revisions of "Team:Tianjin/Demonstrate"

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  <p>From the data we can find that the successful transformation of the bacteria's fluorescence intensity is more than twice that of the wild type, there was low red fluorescence was detected after mating, which was considered the influence of <i>β-carotene</i>.</p>
 
  <p>From the data we can find that the successful transformation of the bacteria's fluorescence intensity is more than twice that of the wild type, there was low red fluorescence was detected after mating, which was considered the influence of <i>β-carotene</i>.</p>
 
    
 
    
 
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<h4>DISCUSSION & FUTURE WORK</h4>
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<p>Our mating switch plays an important role in many respects, such as including heavy metal treatment and cell signal switching. And we created a novel method to prove the effectiveness of the switch in an intuitive and effective way. The terminator of the first part (PVUVC) terminates the expression of the downstream gene, proving the validity of the switcher, and the second part (PVRVC) creates an evident method of color conversion to determine the state of the switcher.</p>
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<p>Aiming to increase the vika-vox system efficiency, we let vika enzyme saturate expression, but the efficiency was still relatively low. We hypothesized that this phenomenon was caused by degradation of the vika enzyme in the YPD culture medium. We’d better to change the composition or proportion of YPD ingredients to find out the best culture conditions. We are looking forward to more researches on this field so that we can make this system work better and even perfectly.</p>
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<p>We use the RFP as the reporting protein. But there exists a drawback that it’s detected with expensive device. A more intuitive reporting strategy need to be developed, maybe it can be seen by bare eyes like E.coli in the near future.</p>
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<h4>Reference</h4>
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<p>Altamura E, Borgatti M, Finotti A, Gasparello J, Gambari R, Spinelli M, et al. (2016) Chemical-Induced Read-Through at Premature Termination Codons Determined by a Rapid Dual-Fluorescence System Based on S. cerevisiae. PLoS ONE11(4): e0154260. https://doi.org/10.1371/journal.pone.0154260</p>
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<p>Leslie A. Mitchell, James Chuang, Neta Agmon, Chachrit Khunsriraksakul, Nick A. Phillips, Yizhi Cai, David M. Truong, Ashan Veerakumar, Yuxuan Wang, María Mayorga, Paul Blomquist, Praneeth Sadda, Joshua Trueheart, Jef D. Boeke; Versatile genetic assembly system (VEGAS) to assemble pathways for expression in S. cerevisiae, Nucleic Acids Research, Volume 43, Issue 13, 27 July 2015, Pages 6620–6630。https://doi.org/10.1093/nar/gkv466</p>
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SCRaMbLE: Improve Resistance to Heavy Metal Ions  
 
SCRaMbLE: Improve Resistance to Heavy Metal Ions  
 
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Revision as of 19:40, 27 October 2017

/* OVERRIDE IGEM SETTINGS */

Demonstrate