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Plant Epigenomics

Plant Epigenomics

Plant epigenomics refers to the study of epigenetic changes in plant genomes that influence gene expression without altering the underlying DNA sequence. Key epigenetic mechanisms include DNA methylation, histone modification, and small RNA-mediated regulation. These modifications play vital roles in plant development, stress responses, and adaptation to environmental changes. For instance, DNA methylation can silence transposable elements, protecting the genome's integrity, while histone modifications can either promote or inhibit gene expression in response to developmental cues or stress conditions. Epigenetic changes can be heritable, meaning they can be passed from one generation to another, affecting traits in offspring. This has significant implications for breeding programs and crop improvement, as epigenetic traits may enhance resilience to pests, diseases, and climate fluctuations. Understanding plant epigenomics is essential for harnessing these mechanisms in biotechnology, enabling the development of crops with improved traits and adaptability to changing environments.

Committee Members
Speaker at Plant Biology and Biotechnology 2026 - P E Rajasekharan

P E Rajasekharan

ICAR-IIHR, India
Speaker at Plant Biology and Biotechnology 2026 - Valasia Iakovoglou

Valasia Iakovoglou

UNESCO chair Con-E-Ect, International Hellenic University, Greece
Speaker at Plant Biology and Biotechnology 2026 - Rameshkumar K B

Rameshkumar K B

Jawaharlal Nehru Tropical Botanic Garden and Research Institute, India
GPB 2026 Speakers
Speaker at Plant Biology and Biotechnology 2026 - Selina Sterup Moore
Selina Sterup Moore
Aarhus University, Denmark

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