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Functional Screening for the Discovery of New Extremophilic Enzymes, more stable and robust, therefore making them ideal candidates for industrial applications. For industry, confirming the functionality of a biocatalyst under the conditions of a particular process makes the difference between obtaining or not the required product. Although the molecular approaches大看台 发表于 2025-3-23 16:21:52
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,Cold-Active β-Galactosidases: Sources, Biochemical Properties and Their Biotechnological Potential, efforts have been devoted to characterization of new cold-active β-D-galactosidases which were isolated directly from selected species of bacteria and yeasts, as well as with the use of metagenomic approaches. This chapter will provide a review of current research towards cold-active β-D-galactosid记成蚂蚁 发表于 2025-3-24 06:59:51
Engineering of Extremophilic Phosphotriesterase-Like Lactonases for Biotechnological Applications,II. At present, enzymatic detoxification of organophosphate compounds represents an important issue worldwide, due to their permanent and excessive use that has led in many places to the contamination of soil and water. In the last years our research group focused the attention on the enzymes belongdefuse 发表于 2025-3-24 13:42:42
,α-Amylases from ,: Sequences, Structures and Evolution, of carbohydrate-active enzymes, the CAZy database, the specificity of α-amylase has been classified in glycoside hydrolase (GH) families GH13, GH57 and GH119. The polyspecific family GH13 with about 24,000 members is considered as the main α-amylase family forming the clan GH-H with families GH70 aPhonophobia 发表于 2025-3-24 16:48:39
Proteins of DNA Replication from Extreme Thermophiles: PCR and Beyond,enome replication in living cells. Modifying Taq polymerase, or supplementing or replacing it with other proteins of thermophilic archaea or bacteria, has enhanced the functional properties of PCR and created other techniques with extended or complementary capabilities. The enhancements to PCR incluIn-Situ 发表于 2025-3-24 19:14:37
Technical Developments for Vegetable Waste Biomass Degradation by Thermophiles, study of biorefining processes in order to convert organic waste materials (biomass) into bioethanol, biodiesel, building blocks (chemicals) and biomaterials. Vegetable waste biomass is produced continuously at global level by agro-industries, agriculture and forestry and according to its origin, iSubstance 发表于 2025-3-25 00:22:09
Biotechnology of Extremophiles:978-3-319-13521-2Series ISSN 2367-1017 Series E-ISSN 2367-1025