scholarly journals PRODUCTION OF AMYLASE FROM MICROBIAL SOURCES: A REVIEW

Keyword(s):  
RSC Advances ◽  
2017 ◽  
Vol 7 (68) ◽  
pp. 42750-42773 ◽  
Author(s):  
Mridula Prakash Menon ◽  
R. Selvakumar ◽  
Palaniswamy Suresh kumar ◽  
Seeram Ramakrishna

Cellulose nanofibers obtained from various plants and microbial sources, their extraction methods and various environmental applications are discussed.


2018 ◽  
pp. 353-369
Author(s):  
Natarajan Amaresan ◽  
Hardik Naik Jinal ◽  
Alwarappan Sankaranarayanan
Keyword(s):  

2020 ◽  
Vol 2020 ◽  
pp. 1-12
Author(s):  
Tahira Naz ◽  
Yusuf Nazir ◽  
Shaista Nosheen ◽  
Samee Ullah ◽  
Hafiy Halim ◽  
...  

Carotenoids produced by microbial sources are of industrial and medicinal importance due to their antioxidant and anticancer properties. In the current study, optimization of β-carotene production in M. circinelloides strain 277.49 was achieved using response surface methodology (RSM). Cerulenin and ketoconazole were used to inhibit fatty acids and the sterol biosynthesis pathway, respectively, in order to enhance β-carotene production by diverting metabolic pool towards the mevalonate pathway. All three variables used in screening experiments were found to be significant for the production of β-carotene. The synergistic effect of the C/N ratio, cerulenin, and ketoconazole was further evaluated and optimized for superior β-carotene production using central composite design of RSM. Our results found that the synergistic combination of C/N ratios, cerulenin, and ketoconazole at different concentrations affected the β-carotene productions significantly. The optimal production medium (std. order 11) composed of C/N 25, 10 μg/mL cerulenin, and 150 mg/L ketoconazole, producing maximum β-carotene of 4.26 mg/L (0.43 mg/g) which was 157% greater in comparison to unoptimized medium (1.68 mg/L, 0.17 mg/g). So, it was concluded that metabolic flux had been successfully redirected towards the mevalonate pathway for enhanced β-carotene production in CBS 277.49.


Author(s):  
Pankaj Kumar Chaurasia ◽  
Shashi Lata Bharati ◽  
Ashutosh Mani

Petroleum and petroleum-based products are highly beneficial for our daily life system. Functioning of several industries and machineries directly depends on different forms of petroleum. There are strong possibilities of the release of such petroleum and petroleum-based compounds like aliphatic as well as aromatic hydrocarbons during their refining process, usage, storage, transport, and other activities due to the accidents, leakages, or just a little lack of awareness. Their exposure to soils or water causes serious problems for aquatic as well as human beings. The efficient removal or detoxification of such pollutants is the demand of the present time. The use of microbial sources for the bioremediation of such petroleum wastes may be promising technique because it does not require any drastic conditions for detoxification process and by-products produced by them are also harmless unlike chemical and other techniques. In this regard, this chapter discusses the enzymatic role in detoxification or bioremediation of petroleum-based hydrocarbons.


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