Highly efficient lipid production in the green alga Parachlorella kessleri: draft genome and transcriptome endorsed by whole-cell 3D ultrastructure

نویسندگان

  • Shuhei Ota
  • Kenshiro Oshima
  • Tomokazu Yamazaki
  • Sangwan Kim
  • Zhe Yu
  • Mai Yoshihara
  • Kohei Takeda
  • Tsuyoshi Takeshita
  • Aiko Hirata
  • Kateřina Bišová
  • Vilém Zachleder
  • Masahira Hattori
  • Shigeyuki Kawano
چکیده

BACKGROUND Algae have attracted attention as sustainable producers of lipid-containing biomass for food, animal feed, and for biofuels. Parachlorella kessleri, a unicellular green alga belonging to the class Trebouxiophyceae, achieves very high biomass, lipid, and starch productivity levels. However, further biotechnological exploitation has been hampered by a lack of genomic information. RESULTS Here, we sequenced the whole genome and transcriptome, and analyzed the behavior of P. kessleri NIES-2152 under lipid production-inducing conditions. The assembly includes 13,057 protein-coding genes in a 62.5-Mbp nuclear genome. Under conditions of sulfur deprivation, lipid accumulation was correlated with the transcriptomic induction of enzymes involved in sulfur metabolism, triacylglycerol (TAG) synthesis, autophagy, and remodeling of light-harvesting complexes. CONCLUSIONS Three-dimensional transmission electron microscopy (3D-TEM) revealed extensive alterations in cellular anatomy accompanying lipid hyperaccumulation. The present 3D-TEM results, together with transcriptomic data support the finding that upregulation of TAG synthesis and autophagy are potential key mediators of the hyperaccumulation of lipids under conditions of nutrient stress.

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عنوان ژورنال:

دوره 9  شماره 

صفحات  -

تاریخ انتشار 2016