Novel XAD-LC/MS-FBMN-IMS Strategy for Screening Holo- Hydroxamate Siderophores: Siderome Analysis of the Pathogenic Bacterium Tenacibaculum maritimum [0.03%]
Lucía Ageitos,Larissa Buedenbender,M Pilar Escribano et al.
Lucía Ageitos et al.
Hydroxamate siderophores are key virulence factors in multiple pathogens, and their structures present interesting scaffolds for potential biotechnological applications such as the design of novel antimicrobials.
Advances in Cellobiose Dehydrogenases: Molecular Modifications and High-Throughput Screening for Biotechnological Applications [0.03%]
纤维二糖脱氢酶分子改造及生物技术应用的高通量筛选研究进展
Pengfei Li,Yong Feng,Zhengfen Wu et al.
Pengfei Li et al.
Cellobiose dehydrogenase (CDH), a key biomass oxidoreductase, holds significant potential for applications in fields such as straw feed, biofuels, and bioelectrochemical sensors. However, the limitations of natural CDH in terms of catalytic...
Functions of Endogenously Produced and Exogenously Applied Melatonin in Higher Plants [0.03%]
植物内源性和外源性褪黑素的功能
Francisco J Corpas,Jorge Taboada,Rosa M Rivero et al.
Francisco J Corpas et al.
The potential of MEL-based biotechnological applications for enhancing crop resilience and postharvest quality is also discussed.
Current understanding of the Streptococcus bovis/ equinus complex and its bacteriophages in ruminants: a review [0.03%]
反刍动物中的链球菌-bovis/ equinus复合体及其噬菌体的最新研究进展综述
Seon Young Park,Seongwon Seo,Ji Hyung Kim
Seon Young Park
Here, we comprehensively review the current knowledge regarding the taxonomy, AMR characteristics, and diversity of SBSEC, and the potential of SBSEC-specific phages, focusing on recent advances in basic research and biotechnological applications in ruminants.
Chicken Manure as a Sustainable Bile Acid Source for Biotechnological Applications [0.03%]
鸡粪作为生物技术应用的可持续胆酸来源
Johannes Holert,Rudolf Wilhelm,Jens Henker et al.
Johannes Holert et al.
Ursodeoxycholic acid (UDCA) is widely administered to dissolve gallstones, treat liver disorders and reduce blood cholesterol levels. This study investigated fresh and dried chicken manure as a sustainable bioresource for chenodeoxycholic a...
Simple, rapid, and efficient purification of M13 phages: The Faj-elek method [0.03%]
简单的、快速的和高效的M13噬菌体纯化方法:Faj-Elek法
Gizem Kılıç,Esma Aybakan,Neda Tatlıoğlu et al.
Gizem Kılıç et al.
However, it is important that phages retain their infecting properties, especially in biotechnological applications such as phage display technology. The most widely used is the PEG precipitation method, but it has some limitations such as impurities and reduced infectivity.
Reona Murata,Youn Young Shim,Young Jun Kim et al.
Reona Murata et al.
Altogether, this review emphasizes emerging biotechnological applications in addressing global challenges related to food safety, agri-environmental sustainability, and human health.
Environmental Phages: Ecosystem Dynamics, Biotechnological Applications and their limits, and Future Directions [0.03%]
环境噬菌体:生态系统动力学、生物技术应用及其限度和未来方向
Bilel Hassen,Salah Hammami
Bilel Hassen
Phages, the most abundant biological entities on Earth, play a crucial role in various microbial ecosystems, significantly impacting biogeochemical cycles and bacterial evolution. They inhabit diverse environments, including soil, water, an...
Optimized Protocol for Sorghum Regeneration: Enhancing Embryogenic Callus Formation from Immature Inflorescences [0.03%]
一种优化的从高粱幼嫩花序诱导愈伤组织和再生植株的体系
Bangaru Naidu Thaddi
Bangaru Naidu Thaddi
Moench) cultivars, thereby establishing a foundation for genetic transformation, mutation breeding, and other biotechnological applications aimed at enhancing sorghum crop improvement and productivity....Callus induction and regeneration protocols are crucial for genetic transformation, mutation breeding, and biotechnological applications in sorghum improvement.
Characterisation of the thermophilic P450 CYP116B305 identified using metagenomics-derived sequence data from an Australian hot spring [0.03%]
利用元基因组测序数据鉴定的来源于澳大利亚热泉中的耐热P450单加氧酶CYP116B305的性质研究
Simran Kundral,Peter D Giang,Leah R Grundon et al.
Simran Kundral et al.
The combination of the self-sufficiency and improved stability makes CYP116B305 a promising platform for biotechnological applications and biocatalyst engineering.
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