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    17 слайдов
  • Для класса:
    1,2,3,4,5,6,7,8,9,10,11
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Слайды и текст к этой презентации:

№1 слайд
Cellulase
Содержание слайда: Cellulase

№2 слайд
Introduction source Cellulase
Содержание слайда: Introduction (source) Cellulase refers to an entourage of enzymes produced chiefly by fungi, bacteria and protozoans that catalyze cellulolysis (i.e. the hydrolysis of cellulose).  

№3 слайд
Cellulase
Содержание слайда: Cellulase

№4 слайд
Some species of fungi and
Содержание слайда: Some species of fungi and bacteria are able to exhaustively digest crystalline cellulose in pure culture are said to have complete or true cellulases. The majority of organisms that produce cellulases can only hydrolyze the cellulose in their diets to certain extent. they are known as incomplete cellulases. These cellulases unable to digest cellulose exhaustively can still generate sufficient amount of glucose for their producers. Endogenous cellulases of termites belong to this category.

№5 слайд
Other Names Other names for
Содержание слайда: Other Names Other names for 'endoglucanases' are: endo-1,4-beta-glucanase, carboxymethyl cellulase (CMCase), endo-1,4-beta-D-glucanase, beta-1,4-glucanase, beta-1,4-endoglucan hydrolase, and celludextrinase. The other types of cellulases are called exocellulases.

№6 слайд
Types of reactions
Содержание слайда: Types of reactions/ Classification General types of cellulases based on the type of reaction catalyzed: Cleaves internal bonds at Endocellulase (EC 3.2.1.4) randomly amorphous sites that create new chain ends. Cellobiase (EC 3.2.1.21) or beta-glucosidase hydrolyses the exocellulase product into individual monosaccharides. Cellulose phosphorylases depolymerize cellulose using phosphates instead of water.

№7 слайд
Choice of host organism
Содержание слайда: Choice of host organism

№8 слайд
Strain engineering
Содержание слайда: Strain engineering Thermostable cellulases production Nowadays, most of the studies about production of thermostable cellulases are focused on the utilization of cellulase-producing thermo/alkalophiles and also, on the improvement of cellulase production by optimizing its nutritional and environmental necessities or by engineering new highproducer recombinants or cellulase-producing transgenic plants, such as transgenic tobacco

№9 слайд
Homologous overexpression in
Содержание слайда: Homologous overexpression in bacteria Some studies report the use of directed evolution techniques in combination with a rational design to overexpress cellulases in their own bacterial source. Genera such as Bacillus (B. subtilis) and Clostridium (C. thermocellum) were used as a homologous cellulases production system, their easy genetic modification and other proper features. However, the use of these bacteria has disadvantages such as low protein yields, high production costs or need of enriched media

№10 слайд
Heterologous overexpression
Содержание слайда: Heterologous overexpression The strategies based in heterologous expression are focused in the use of non-cellulolytic micro/organisms that have high production ratio for expressing microbial cellulases Bacteria such as E. coli, different species from the genus Bacillus, Pseudomonas fluorescens, Ralstonia eutropha and Zymomonas mobilis; yeasts such as Saccharomyces cerevisiae and Pichia pastoris and filamentous fungi from genera Aspergillus and Trichoderma genera are the most used in research and industry, considered as host systems for producing recombinant enzymes. Furthermore, cell cultures of mammals, plants or insects and transgenic plants and/or animals are used for protein expression

№11 слайд
Future targets for genetic
Содержание слайда: Future targets for genetic manipulation and optimization will include the use of the cellulolytic system of Clostridium thermocellum for engineering new strains, depending of the concrete industrial application and the fully characterization of the promising thermophilic bacterium Caldicellulosiruptor bescii.

№12 слайд
Содержание слайда:

№13 слайд
Содержание слайда:

№14 слайд
Cultivation Media
Содержание слайда: Cultivation Media

№15 слайд
Harvest and Separation of
Содержание слайда: Harvest and Separation of Enzymes

№16 слайд
Uses
Содержание слайда: Uses

№17 слайд
Thank you for attention!!!
Содержание слайда: Thank you for attention!!!

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