Genome-wide long non-coding RNA screening, identification and characterization in a model microorganism Chlamydomonas reinhardtii

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作者
Hui Li
Yuting Wang
Meirong Chen
Peng Xiao
Changxing Hu
Zhiyong Zeng
Chaogang Wang
Jiangxin Wang
Zhangli Hu
机构
[1] Guangdong Technology Research Center for Marine Algal Bioengineering,
[2] Guangdong Key Laboratory of Plant Epigenetic,undefined
[3] College of Life Sciences,undefined
[4] Shenzhen University,undefined
[5] Shenzhen Key Laboratory of Marine Bioresource & Eco-environmental Science,undefined
[6] College of Life Sciences,undefined
[7] Shenzhen University,undefined
[8] Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province,undefined
[9] College of Optoelectronic Engineering,undefined
[10] Shenzhen University,undefined
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摘要
Microalgae are regarded as the most promising biofuel candidates and extensive metabolic engineering were conducted but very few improvements were achieved. Long non-coding RNA (lncRNA) investigation and manipulation may provide new insights for this issue. LncRNAs refer to transcripts that are longer than 200 nucleotides, do not encode proteins but play important roles in eukaryotic gene regulation. However, no information of potential lncRNAs has been reported in eukaryotic alga. Recently, we performed RNA sequencing in Chlamydomonas reinhardtii, and obtained totally 3,574 putative lncRNAs. 1440 were considered as high-confidence lncRNAs, including 936 large intergenic, 310 intronic and 194 anti-sense lncRNAs. The average transcript length, ORF length and numbers of exons for lncRNAs are much less than for genes in this green alga. In contrast with human lncRNAs of which more than 98% are spliced, the percentage in C. reinhardtii is only 48.1%. In addition, we identified 367 lncRNAs responsive to sulfur deprivation, including 36 photosynthesis-related lncRNAs. This is the first time that lncRNAs were explored in the unicellular model organism C. reinhardtii. The lncRNA data could also provide new insights into C. reinhardtii hydrogen production under sulfur deprivation.
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