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+ | <section class="container"> | ||
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+ | <nav class="tc mb15"> | ||
+ | <a href="#" class="on">Description</a> | ||
+ | <a href="#">design</a> | ||
+ | <a href="#">PROJECT</a> | ||
+ | <a href="#">PARTS</a> | ||
+ | <a href="#">SAFETY</a> | ||
+ | <a href="#">HUMAN PRACTICES</a> | ||
+ | <a href="#">AWARDS</a> | ||
+ | </nav> | ||
+ | </section> | ||
<h1 style="background-color:#FFD306;"> Description</h1> | <h1 style="background-color:#FFD306;"> Description</h1> | ||
<a name="1"></a> | <a name="1"></a> |
Revision as of 02:44, 27 July 2018
Description
1
Nicotine (1-methyl-2-[3-pyridyl-pyrrolidine], C10H14N2), a major alkaloid in tobacco plants, is a significant factor of evaluation for tobacco and cigarettes. Nicotine plays a critical role in smoking addiction and is well known to be harmful to human beings, because it easily crosses the blood-brain barrier and biological membranes. Meanwhile, with large quantities of tobacco products being produced and consumed, tobacco waste, which includes many toxic substances such as nicotine, aminobiphenyl, naphthylamine, and benzo(a)- pyrene, is entering the environment. Moreover, a number of toxic and harmful substances containing nicotine and other alkaloids are generated in tobacco processing and cannot be recycled, producing serious environmental problems.
2
In recent years, more nicotine-degrading bacteria have been reported, and the degradation pathways of nicotine have been elucidated. The degradation of nicotine through the pyrrolidine pathway by Pseudomonas has been extensively studied.
3
In our study, the first three gene NicA, pnao and sapd is crucial for nicotine degradation, so we will construct a pathway to express the three gene in top10.