4.7 Article

Integrative analysis of chloroplast DNA methylation in a marine alga-Saccharina japonica

期刊

PLANT MOLECULAR BIOLOGY
卷 105, 期 6, 页码 611-623

出版社

SPRINGER
DOI: 10.1007/s11103-020-01113-9

关键词

Saccharina japonica; Chloroplast genome; DNA methylation; Photosynthesis

资金

  1. National Key Research and Development Program of China [2018YFD0900703]
  2. National Natural Science Foundation of China [32000402, 41976110]
  3. Fund for Doctor Research of Dezhou University, China [2019xgrc26]
  4. Marine S&T Fund of Shandong Province for Pilot National Laboratory for Marine Science and Technology (Qingdao) [2018SDKJ0406-3]
  5. Major Scientific and Technological Innovation Project of Shandong Provincial Key Research and Development Program [2019JZZY020706]
  6. Central Public-interest Scientific Institution Basal Research Fund, CAFS [2020TD27]
  7. China Agriculture Research System [CARS-50]
  8. Ministry of Agriculture and Rural Affairs, P.R. China [NFZX2018]
  9. Taishan Scholars Funding and Talent Projects of Distinguished Scientific Scholars in Agriculture
  10. Shandong Province Higher Educational Science and Technology [J16LC59]

向作者/读者索取更多资源

The study used multiple methods to investigate cytosine methylation in the chloroplast DNA of the multicellular brown alga Saccharina japonica. Higher methylation levels were found in gametophytes compared to sporophytes, with gene-specific methylation associated with photosynthetic genes. Co-expression networks between nucleus-encoded photosynthesis genes and their chloroplast-encoded counterparts were implicated in higher photosynthetic performance in sporophytes.
Key message We applied an integrative approach using multiple methods to verify cytosine methylation in the chloroplast DNA of the multicellular brown alga Saccharina japonica. Cytosine DNA methylation is a heritable process which plays important roles in regulating development throughout the life cycle of an organism. Although methylation of nuclear DNA has been studied extensively, little is known about the state and role of DNA methylation in chloroplast genomes, especially in marine algae. Here, we have applied an integrated approach encompassing whole-genome bisulfite sequencing, methylated DNA immunoprecipitation, gene co-expression networks and photophysiological analyses to provide evidence for the role of chloroplast DNA methylation in a marine alga, the multicellular brown alga Saccharina japonica. Although the overall methylation level was relatively low in the chloroplast genome of S. japonica, gametophytes exhibited higher methylation levels than sporophytes. Gene-specific bisulfite-cloning sequencing provided additional evidence for the methylation of key photosynthetic genes. Many of them were highly expressed in sporophytes whereas genes involved in transcription, translation and biosynthesis were strongly expressed in gametophytes. Nucleus-encoded photosynthesis genes were co-expressed with their chloroplast-encoded counterparts potentially contributing to the higher photosynthetic performance in sporophytes compared to gametophytes where these co-expression networks were less pronounced. A nucleus-encoded DNA methyltransferase of the DNMT2 family is assumed to be responsible for the methylation of the chloroplast genome because it is predicted to possess a plastid transit peptide.

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