International Conference on

Yeast Chromosome Structure and Dynamics (ICYCSD-27)

13th – 14th May 2027 | Ottawa, Canada | Hybrid Mode
Proudly organized by the : Institute for Global Academic Excellence (IGAE)

Conference Session Tracks

SDG Wheel

Aligned with

UN Sustainable Development Goals

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.

SDG 3
SDG 3 Good Health and Well-being
SDG 4
SDG 4 Quality Education
SDG 9
SDG 9 Industry, Innovation and Infrastructure
SDG 15
SDG 15 Life on Land
SDG 16
SDG 16 Peace, Justice and Strong Institutions
Track 01

Yeast Chromosome Structure and Function

This track will explore the intricate architecture of yeast chromosomes and their functional implications. Discussions will focus on the relationship between chromosome structure and gene expression in yeast models.

Track 02

Dynamics of Chromatin Organization

This session will delve into the mechanisms governing chromatin organization in yeast, including the roles of histone modifications and chromatin remodeling complexes. Participants will present their findings on how these dynamics influence cellular processes.

Track 03

Genome Architecture and Stability

This track will address the principles of genome architecture in yeast and its impact on chromosome stability. Research on the interplay between structural elements and genomic integrity will be highlighted.

Track 04

Centromere and Telomere Biology

This session will focus on the biology of centromeres and telomeres in yeast, emphasizing their roles in chromosome segregation and stability. Presentations will cover recent advancements in understanding their molecular mechanisms.

Track 05

Chromosome Segregation Mechanisms

This track will investigate the molecular pathways involved in chromosome segregation during yeast cell division. Participants will discuss novel findings related to spindle assembly and checkpoint regulation.

Track 06

Epigenetic Regulation of Chromosome Dynamics

This session will explore the role of epigenetic modifications in regulating chromosome dynamics in yeast. Research will highlight how these modifications influence chromatin accessibility and gene expression.

Track 07

Chromosomal Interactions and Genome Topology

This track will examine the spatial organization of chromosomes within the yeast nucleus and its implications for gene regulation. Presentations will focus on techniques used to study chromosomal interactions and their biological significance.

Track 08

Chromosome Remodeling and Repair Mechanisms

This session will cover the mechanisms of chromosome remodeling and DNA repair in yeast. Discussions will focus on the interplay between chromatin structure and DNA damage response pathways.

Track 09

Structural Genomics of Yeast Chromosomes

This track will highlight advancements in structural genomics as applied to yeast chromosomes. Participants will present data on high-resolution mapping techniques and their implications for understanding chromosome function.

Track 10

Chromosome Evolution and Diversity

This session will explore the evolutionary aspects of yeast chromosomes, focusing on chromosomal rearrangements and their impact on species diversity. Research will discuss how evolutionary pressures shape chromosome structure and function.

Track 11

Modeling Chromosome Dynamics

This track will focus on computational models used to simulate chromosome dynamics in yeast. Presentations will cover the development of models that integrate experimental data to predict chromosomal behavior.

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