An official invitation letter will be provided upon successful registration for your participation in the conference.
학술대회 참가 등록이 정상적으로 완료되면 공식 초청장이 발급됩니다.
Plenary, keynote and parallel sessions.
전체회의, 기조연설 및 분과 세션.
Connect with fellow researchers.
동료 연구자들과의 교류.
Digital certificate of participation.
디지털 참가 증명서 발급.
Official letter after successful registration.
등록 완료 후 공식 초청장 발급.
E-proceedings & resource materials.
전자 논문집 및 참고 자료.
Learn from leading experts & scholars.
저명한 전문가 및 학자들의 강연.
The conference's session tracks effectively support the following SDGs.
본 학술대회의 세션 트랙은 다음의 지속가능발전목표를 효과적으로 지원합니다.
This track focuses on the latest techniques and methodologies in genome editing specific to yeast species. Discussions will include CRISPR/Cas9 applications and other innovative tools that enhance precision in genetic modifications.
This session explores the design and implementation of synthetic gene networks within yeast systems. Participants will examine case studies that highlight the functional integration of these networks in metabolic pathways.
This track addresses the engineering of metabolic pathways in yeast to optimize biofuel production. Researchers will present novel approaches to enhance yield and efficiency through synthetic biology techniques.
This session will delve into the selection and optimization of yeast as chassis organisms for various synthetic biology applications. Discussions will include the advantages and challenges of using yeast in industrial contexts.
This track highlights the latest advancements in protein engineering within yeast systems. Participants will share insights on the functional characterization of engineered proteins and their applications in synthetic biology.
This session focuses on the design and application of synthetic constructs in yeast. Researchers will discuss the implications of these constructs for advancing synthetic biology and biotechnology.
This track examines the engineering of regulatory circuits in yeast to control gene expression. Presentations will cover innovative strategies for achieving precise regulation in synthetic biology applications.
This session will explore genome-scale engineering approaches to enhance yeast functionality. Participants will discuss the integration of high-throughput techniques and computational modeling in yeast engineering.
This track focuses on the development and application of metabolic models for yeast. Researchers will present methodologies for simulating metabolic pathways and predicting the outcomes of genetic modifications.
This session will cover the application of synthetic biology principles in industrial fermentation processes using yeast. Discussions will include case studies that demonstrate enhanced productivity and sustainability.
This track addresses the optimization of metabolic pathways in yeast to improve production efficiency. Participants will share innovative strategies and tools for pathway optimization in synthetic biology contexts.