Article
Histone deacetylase 9 interacts with SiHAT3.1 and SiHDA19 to repress dehydration responses through H3K9 deacetylation in foxtail millet.
Journal of experimental botany - 2 Feb 2024
Kumar Verandra, Singh Babita, Kumar Singh Roshan, Sharma Namisha, Muthamilarasan Mehanathan, Sawant Samir V, Prasad Manoj
Abstract excerpt
Climate change inflicts several stresses on plants, of which dehydration stress severely affects growth and productivity. C4 plants possess better adaptability to dehydration stress; however, the role of epigenetic modifications underlying this trait is unclear. In particular, the molecular links between histone modifiers and their regulation remain elusive. In this study, genome-wide H3K9 acetylation (H3K9ac)...
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