Genome-wide analysis of cytosine DNA Methylation revealed salicylic acid promotes defense pathways over seedling development in pearl millet

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dc.contributor.author Ngom, Baba
dc.contributor.author Sarr, Ibrahima
dc.contributor.author Kimatu, Josphert N.
dc.contributor.author Mamati, Edward
dc.contributor.author Kane, Ndjido A.
dc.date.accessioned 2017-08-22T08:28:48Z
dc.date.available 2017-08-22T08:28:48Z
dc.date.issued 2017-07
dc.identifier.citation Journal Plant Signaling & Behavior en_US
dc.identifier.issn 1559-2324
dc.identifier.uri http://www.tandfonline.com/doi/pdf/10.1080/15592324.2017.1356967?needAccess=true
dc.identifier.uri http://repository.seku.ac.ke/handle/123456789/3510
dc.description DOI: 10.1080/15592324.2017.1356967 en_US
dc.description.abstract Cytosine DNA methylation is an epigenetic regulatory system used by plants to control gene expression. Methylation pattern always changes after abiotic stresses, pathogens and pest infections or after a treatment with salicylic acid (SA). The latter is a key player in plant development and defense against insect herbivores, pathogens, and abiotic stresses. The roles of SA on the methylation patterns and the plant development were carried out in four pearl millet (Pennisetum glaucum) varieties. Seedlings of four early-flowering photosensitive genotypes (PMS3, PMI8, PMG, and PMT2) were grown on MS medium supplemented with null or different doses of SA. Root growth was used as a parameter to evaluate the effects of SA at early stage development. DNA from these seedlings was extracted and Methylation-Sensitive Amplified Polymorphism (MSAP) was measured to assess the effects of SA on methylome. The methylation analysis revealed that SA treatment decreased the methylation, while inhibiting the root growth for all varieties tested, except in PMG at 0.5 mM, indicating a dose and a genotype response-dependence. The methylation level was positively correlated with the root growth. This suggests that SA influences both the methylome by demethylation activities and the root growth by interfering with the root development-responsive genes. The demethylation process, induced by the REPRESSOR OF SILCENCING 1 (ROS1) may activate R genes, or GH3.5 and downregulate the hormonal pathway under root development. These findings showed the pearl millet metabolism prioritized and promoted the defense pathways over vegetative development during stress. en_US
dc.language.iso en en_US
dc.subject Cytosine DNA Methylation en_US
dc.subject Salicylic acid en_US
dc.subject demethylation en_US
dc.subject root growth en_US
dc.subject MSAP en_US
dc.subject Pearl millet en_US
dc.title Genome-wide analysis of cytosine DNA Methylation revealed salicylic acid promotes defense pathways over seedling development in pearl millet en_US
dc.type Article en_US


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