State Key Laboratory of Marine Pollution, City University of Hong Kong, Hong Kong, China; Department of Chemistry, City University of Hong Kong, Hong Kong, China.
State Key Laboratory of Marine Environmental Science, Xiamen University, Xiamen, China.
Sci Total Environ. 2020 May 15;717:137184. doi: 10.1016/j.scitotenv.2020.137184. Epub 2020 Feb 7.
Gambierdiscus spp. can produce the polyketide compound, ciguatoxin (CTX), and are hence responsible for ciguatera fish poisoning (CFP). Studying the molecular mechanism that regulates CTX production is crucial for understanding the environmental trigger of CTX as well as for better informing fishery management. Commonly, polyketide synthases are important for polyketide synthesis; however, no gene has been confirmatively assigned to CTX production. Here, suppression subtractive hybridization (SSH) and transcriptome sequencing (RNA-Seq) were used to compare a CTX-producing strain with a non-CTX-producing strain. Using both methods, a total of 52 polyketide synthase (PKS) genes were identified to be up-regulated in the CTX-producing G. balechii, including transcripts encoding single-domain PKSs as well as transcripts encoding multi-domain PKSs. Using reverse transcription quantitative PCR, the expression of these genes in the CTX-producing strain and in nitrogen-limited cultures of the strain was further documented. These data suggest that PKSs are likely involved in polyketide synthesis and potentially in CTX synthesis in this dinoflagellate species. Our study provides the candidate biomarkers for the detection of CTXs or CFP in waters or any other organisms as well as a valuable genomic resource for the research on Gambierdiscus and other dinoflagellates.
双鞭甲藻属可以产生聚酮化合物雪卡毒素 (CTX),因此是雪卡鱼中毒 (CFP) 的罪魁祸首。研究调节 CTX 产生的分子机制对于了解 CTX 的环境触发因素以及更好地为渔业管理提供信息至关重要。通常,聚酮合酶对于聚酮合成很重要;然而,还没有基因被确认为 CTX 产生的基因。在这里,抑制性消减杂交 (SSH) 和转录组测序 (RNA-Seq) 被用于比较产生 CTX 的菌株和不产生 CTX 的菌株。使用这两种方法,共鉴定出 52 个聚酮合酶 (PKS) 基因在产生 CTX 的 G. balechii 中上调,包括编码单结构域 PKSs 的转录本和编码多结构域 PKSs 的转录本。通过反转录定量 PCR,进一步记录了这些基因在产生 CTX 的菌株和菌株的氮限制培养物中的表达。这些数据表明,PKSs 可能参与聚酮合成,并可能参与该腰鞭毛藻类物种中 CTX 的合成。我们的研究为水体或任何其他生物体中 CTXs 或 CFP 的检测提供了候选生物标志物,并为 Gambierdiscus 和其他腰鞭毛藻类的研究提供了有价值的基因组资源。