Genome-Wide DNA Methylation Profiling in the Lotus (<i>Nelumbo nucifera</i>) Flower Showing its Contribution to the Stamen Petaloid

DNA methylation is a vital epigenetic modification. Methylation has a significant effect on the gene expression influencing the regulation of different physiological processes. Current studies on DNA methylation have been conducted on model plants. Lotus (<i>Nelumbo nucifera</i>) is a ba...

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Bibliographic Details
Main Authors: Zhongyuan Lin, Meihui Liu, Rebecca Njeri Damaris, Tonny Maraga Nyong’a, Dingding Cao, Kefang Ou, Pingfang Yang
Format: Article
Language:English
Published: MDPI AG 2019-05-01
Series:Plants
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Online Access:https://www.mdpi.com/2223-7747/8/5/135
Description
Summary:DNA methylation is a vital epigenetic modification. Methylation has a significant effect on the gene expression influencing the regulation of different physiological processes. Current studies on DNA methylation have been conducted on model plants. Lotus (<i>Nelumbo nucifera</i>) is a basic eudicot exhibiting variations during development, especially in flower formation. DNA methylation profiling was conducted on different flower tissues of lotuses through whole genome bisulfite sequencing (WGBS) to investigate the effects of DNA methylation on its stamen petaloid. A map of methylated cytosines at the single base pair resolution for the lotus was constructed. When the stamen was compared with the stamen petaloid, the DNA methylation exhibited a global decrease. Genome-wide relationship analysis between DNA methylation and gene expression identified 31 different methylation region (DMR)-associated genes, which might play crucial roles in floral organ formation, especially in the stamen petaloid. One out of 31 DMR-associated genes, NNU_05638 was homolog with Plant U-box 33 (PUB33). The DNA methylation status of NNU_05638 promoter was distinct in three floral organs, which was confirmed by traditional bisulfite sequencing. These results provide further insights about the regulation of stamen petaloids at the epigenetic level in lotus.
ISSN:2223-7747