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- W3001641567 abstract "Abstract The Arctic is one of the harsh natural environments on earth. An arctic Chlorella sp. capable of surviving over a wide temperature range was found in our previous study. This study aimed to clarify the underlying molecular mechanisms of its eurythermal adaptivity. We presented the transcriptome analysis of differentially expressed genes profiles of Chlorella-Arc under high temperature, low temperature, and control temperature (24 °C, 3 °C and 15 °C) treatments. A total of 36,658 unigenes were obtained by de novo transcriptome assembly. The total length was 45,157,452 bp, average length and N50 were 1231 bp and 2231 bp, with GC content of unigenes of 63.24%. Photosynthesis, carotenoid biosynthesis, carbon fixation in photosynthetic organisms, pentose phosphate pathway, polysaccharide biosynthesis and fatty acid metabolism were found to be highly represented in response to thermal/cold stress. Low temperature induced up-regulation of genes encoding photosystem components, including PsbB (CP47), PsbC (CP43), PsbA (D1), PsaA and PsaB to make up for the loss of light harvesting antenna pigments to maintain normal photochemical activity under low temperature. The coordinated up-regulation key enzymes in gluconeogenesis and polysaccharide synthesis and down-regulation of lipid biosynthesis support the hypothesis that Chlorella-Arc employs a flexible allocation of carbon between sugars and lipids to acclimate the thermal/cold stress. The transcriptome of Chlorella-Arc provides help for understanding the specific eurythermal adaptivity strategy of psychrotrophic microalgae." @default.
- W3001641567 created "2020-01-30" @default.
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- W3001641567 date "2020-03-01" @default.
- W3001641567 modified "2023-09-24" @default.
- W3001641567 title "Global transcriptomic analysis of an Arctic Chlorella-Arc reveals its eurythermal adaptivity mechanisms" @default.
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- W3001641567 doi "https://doi.org/10.1016/j.algal.2020.101792" @default.
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