4.7 Article

Exploring japonica rice epigenetic diversity in the main production regions of Heilongjiang Province

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SCIENTIFIC REPORTS
卷 12, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-022-08683-2

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资金

  1. National Key R & D Program of China Key Technical Cooperation Research and Application Demonstration of Fine Processing of Coarse Grain Food [2018YFE0206300]
  2. Natural Science Foundation of Heilongjiang Province [TD2020C003]

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This study investigated the epigenetic diversity of 50 japonica rice samples from five regions in Heilongjiang Province, China, using MSAP technology. The results showed significant differences in the methylation status and levels of the japonica rice genome among different regions. Cluster analysis indicated no obvious correlation between epigenetic differences and geographical locations.
As a major epigenetic modification, DNA methylation plays an important role in coordinating plant responses to environmental changes. Methylation-sensitive amplified polymorphism (MSAP) technology was used in this study to investigate the epigenetic diversity of fifty japonica rice samples from five regions in Heilongjiang Province, China. In addition, the phenotypic indicators of japonica rice samples and the environmental conditions of the sampling sites were investigated and analysed. Based on the MSAP analysis technique, using eight pairs of selective primers, we identified a total of 551 amplified loci, of which 267 (48.5%) were classified as methylation loci. The methylation status and levels of the japonica rice genome in different regions differed significantly (p < 0.05). The results of the analysis of molecular variance (AMOVA) revealed that most of the molecular variation (91%) came from within the groups (regions) and was caused by individual variation within the region. Furthermore, the results of principal coordinates analysis (PCoA), cluster analysis, and population structure analysis indicated that there was no obvious correlation between the epigenetic differences and geographical locations, which may have been due to the limited range of sampling sites. When environmental factors, phenotypic indicators, and epigenetic data analysis are combined, it is easy to conclude that japonica rice grown in the same latitudinal region has increased epigenetic and phenotypic similarities due to similar climatic conditions and production practices.

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