Department of Biotechnology, Sangmyung University, Seoul, 03016, Republic of Korea.
Department of Biotechnology, Sangmyung University, Seoul, 03016, Republic of Korea.
Harmful Algae. 2023 Aug;127:102473. doi: 10.1016/j.hal.2023.102473. Epub 2023 Jun 12.
The dinoflagellate Alexandrium pacificum (group IV) is of particular interest because of its involvement in harmful algal blooms and production of saxitoxin (STX), which causes paralytic shellfish poisoning. The toxicity from STX and its analogues (STXs) is suspected to be affected by nitrogen (N) availability. However, the toxicity-associated behavior and STX-biosynthesis gene responses of the toxic A. pacificum under N fluctuations have not been sufficiently investigated. In the present study, we identified the sxtI gene involved in sxt biosynthesis pathway and evaluated the effects of nitrate (NO) on STXs production and the expression of four sxt core genes (sxtA4, sxtG, sxtB, and sxtI). Quantification of total STXs levels in the cultures under different NO regimes showed that NO concentration influenced STXs production. In addition, the proportion and concentration of STXs varied depending on the NO concentration. Core sxt transcript abundance was also influenced by available NO in a time-dependent manner. Expressional levels and patterns of sxtI were correlated with those of sxtA and sxtB. The relationship between the toxins and sxt responses in A. pacificum under various NO regimes suggests the direct involvement of N in the STXs biosynthesis pathway. Understanding this link would provide a tool to understand the toxin dynamics of dinoflagellates following N shifts in marine environments.
太平洋鳍藻(IV 组)是特别有趣的,因为它与有害藻华的发生和石房蛤毒素(STX)的产生有关,而 STX 会导致麻痹性贝类中毒。STX 及其类似物(STXs)的毒性被怀疑受到氮(N)供应的影响。然而,N 波动下有毒太平洋鳍藻的毒性相关行为和 STX 生物合成基因反应尚未得到充分研究。在本研究中,我们鉴定了参与 sxt 生物合成途径的 sxtI 基因,并评估了硝酸盐(NO)对 STXs 产生和四个 sxt 核心基因(sxtA4、sxtG、sxtB 和 sxtI)表达的影响。不同 NO 条件下培养物中总 STXs 水平的定量结果表明,NO 浓度影响 STXs 的产生。此外,STXs 的比例和浓度取决于 NO 浓度。可利用的 NO 也以时间依赖的方式影响核心 sxt 转录物的丰度。sxtI 的表达水平和模式与 sxtA 和 sxtB 的表达水平和模式相关。在不同 NO 条件下,A. pacificum 中毒素和 sxt 反应之间的关系表明 N 直接参与了 STXs 生物合成途径。了解这种联系将为了解海洋环境中 N 变化后甲藻毒素的动态提供一种工具。