Будь ласка, використовуйте цей ідентифікатор, щоб цитувати або посилатися на цей матеріал: https://er.knutd.edu.ua/handle/123456789/29151
Повний запис метаданих
Поле DCЗначенняМова
dc.contributor.advisorAndreyeva, Olga-
dc.contributor.authorZhang, Junhao-
dc.date.accessioned2025-04-15T12:13:19Z-
dc.date.available2025-04-15T12:13:19Z-
dc.date.issued2024-12-
dc.identifier.citationZhang Junhao. Study on the influence of mycelium morphology of Maoyuan Streptomycetes on TG enzyme synthesis : qualification thesis on the specialty 162 "Biotechnology and Bioengineering" / Zhang Junhao ; scientific supervisor Olga Andreyeva. – Kyiv : KNUTD, 2024. – 50 p.uk
dc.identifier.urihttps://er.knutd.edu.ua/handle/123456789/29151-
dc.description.abstractThe aim of this study was to investigate the effect of mycelial morphology on the synthesis of glutamine transaminase (TGase) produced by Streptomyces entadiengensis. Through experiments, we found that MgCl2 stress can significantly increase the production of TG enzymes, and has an important effect on the morphology of bacteria. In this study, we first determined the optimal addition concentration of MgCl2. In addition, MgCl2 stress led to the advance of mycelium germination and spore formation, indicating that the bacteria may activate secondary metabolic regulators earlier under salt stress and promote the synthesis of TG enzymes. We also studied the effects of kaolin on the morphology and TG enzyme synthesis of Streptomyces pentadiengensis. The results showed that kaolin microparticles had the greatest effect on mycelium morphology and significantly improved TG enzyme activity, indicating that the enzyme production capacity of the strain could be effectively enhanced by regulating mycelium morphology. This study provides a new strategy for increasing the yield of TG enzymes, which is of great significance for in-depth understanding of the regulatory mechanism of microbial metabolic performance, and provides a theoretical basis for efficient production of TG enzymes in industrial production. In the future, we will further explore the specific mechanisms of kaolin influence on mycelium morphology and enzyme activity, and apply these strategies to the metabolic regulation of other microbial systems.uk
dc.language.isoenuk
dc.publisherКиївський національний університет технологій та дизайнуuk
dc.subjectGlutamine transaminaseuk
dc.subjectmycelial morphologyuk
dc.subjectmicroparticleuk
dc.subjectMgCl2 stress transductionuk
dc.subjectstreptomyces pentadiengensisuk
dc.titleStudy on the influence of mycelium morphology of Maoyuan Streptomycetes on TG enzyme synthesisuk
dc.title.alternativeStudy on the influence of mycelium morphology of Maoyuan Streptomycetes on TG enzyme synthesisuk
dc.typeДипломний проектuk
local.contributor.altauthorZhang, Junhao-
local.subject.facultyФакультет хімічних та біофармацевтичних технологійuk
local.subject.departmentКафедра біотехнології, шкіри та хутраuk
local.subject.method1uk
local.diplom.groupBEBT-20uk
local.diplom.okrБакалаврuk
local.diplom.speciality162 Biotechnology and Bioengineeringuk
local.diplom.programBiotechnologyuk
local.contributor.altadvisorAndreyeva, Olga-
Розташовується у зібраннях:Бакалаврський рівень

Файли цього матеріалу:
Файл Опис РозмірФормат 
Zhang Junhao. Study on the influence of mycelium morphology of Maoyuan Streptomycetes on TG enzyme synthesis.pdfQualification thesis876,06 kBAdobe PDFПереглянути/Відкрити


Усі матеріали в архіві електронних ресурсів захищені авторським правом, всі права збережені.