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Transcriptomic Response of Nannochloropsis oceanica to Benzo[a]pyrene

Transcriptomic Response of Nannochloropsis oceanica to Benzo[a]pyrene
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摘要 In this study, the RNA sequencing was used to describe the response of Nannochloropsis oceanica, a marine microalga, to benzo[a]pyrene(BaP), a polycyclic aromatic hydrocarbon, in order to elucidate the metabolic pathways(or processes) involved in microalgal response to this stubborn pollutant. N. oceanica was exposed to BaP at a concentration of 90 μg L^-1 for 72 h, and its transcriptome was sequenced through the Illumina HiSeq^TM 2500 platform. This concentration of BaP was selected as it is the lowest for modeling the most appropriate growth inhibition of N. oceanica for transcriptomic analysis. We found that N. oceanica responds to BaP through degrading proteins and repairing DNA damaged by BaP. In addition, superoxide dismutase(SOD) strengthened its performance by increasing its transcript abundance. The physiological mechanism underlining the response of N. oceanica to BaP as revealed by transcriptomic analysis was consistent with the biochemical insights documented previously. In this study, the RNA sequencing was used to describe the response of Nannochloropsis oceanica, a marine microalga, to benzo[a]pyrene(BaP), a polycyclic aromatic hydrocarbon, in order to elucidate the metabolic pathways(or processes) involved in microalgal response to this stubborn pollutant. N. oceanica was exposed to BaP at a concentration of 90 μg L-1 for 72 h, and its transcriptome was sequenced through the Illumina HiSeqTM 2500 platform. This concentration of BaP was selected as it is the lowest for modeling the most appropriate growth inhibition of N. oceanica for transcriptomic analysis. We found that N. oceanica responds to BaP through degrading proteins and repairing DNA damaged by BaP. In addition, superoxide dismutase(SOD) strengthened its performance by increasing its transcript abundance. The physiological mechanism underlining the response of N. oceanica to BaP as revealed by transcriptomic analysis was consistent with the biochemical insights documented previously.
出处 《Journal of Ocean University of China》 SCIE CAS CSCD 2019年第3期680-686,共7页 中国海洋大学学报(英文版)
基金 financially supported by the Fundamental Research Funds for the Central Universities (No. 201762017)
关键词 NANNOCHLOROPSIS oceanica BENZO[A]PYRENE TRANSCRIPTOME PHYSIOLOGICAL RESPONSE Nannochloropsis oceanica benzo[a]pyrene transcriptome physiological response
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