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Diverse responses of Symbiodinium types to menthol and DCMU treatment

机译:共生素类型对薄荷醇和DCMU处理的不同反应

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摘要

To understand the mechanism of photosynthetic inhibition and generation of reactive oxygen species (ROS) in Symbiodinium types under stress, chemicals such as dichlorophenyl dimethylurea (DCMU) are widely used. Moreover, DCMU and recently menthol were used to generate aposymbiotic cnidarian hosts. While the effects of DCMU on Symbiodinium cells have been extensively studied, no studies have shown the mechanism behind menthol-induced coral bleaching. Moreover, no study has compared the effects of DCMU and menthol treatments on photosystem II (PSII) activity and generation of ROS in different Symbiodinium types. In this study, we utilized five freshly isolated Symbiodinium types (S. minutum (B1), S. goreaui (C1), C3, C15, and S. trenchii (D1a)) to compare the effects of DCMU and menthol treatments. Symbiodinium cells were exposed to DCMU and menthol at different concentrations for 4 h. Results showed that values of the 50% inhibitory concentration (IC50) for PSII inhibition were 0.72∼1.96 mM for menthol-treated cells compared to 29∼74 pM for DCMU-treated cells. Diverse responses of Symbiodinium types were displayed in terms of PSII tolerance to menthol (S. minutum > S. trenchii = C15 > C3 = S. goreaui), and also in the response curves. In contrast, responses were not so diverse when the different types were treated with DCMU. Three of five menthol-treated Symbiodinium types showed instant and significant ROS generation when PSII activity was inhibited, compared to no ROS being generated in DCMU-treated Symbiodinium types. Both results indicated that menthol inhibited Symbiodinium PSII activity through Symbiodinium type-dependent mechanisms, which were also distinct from those with DCMU treatment. This study further confirmed that photosynthetic functions Symbiodinium have diverse responses to stress even within the same clade.
机译:为了了解在胁迫下共生菌类型中光合作用抑制和活性氧物种(ROS)生成的机理,广泛使用了二氯苯基二甲基脲(DCMU)等化学物质。而且,DCMU和最近的薄荷醇被用于产生共生共生的刺胞动物宿主。虽然已经广泛研究了DCMU对共生素细胞的作用,但没有研究表明薄荷醇诱导的珊瑚褪色的机理。此外,尚无研究比较DCMU和薄荷醇处理对不同Symbiodinium类型的光系统II(PSII)活性和ROS生成的影响。在这项研究中,我们利用了五种新鲜分离的共生菌类型(S. minutum(B1),S。goreaui(C1),C3,C15和S. Trenchii(D1a))来比较DCMU和薄荷醇治疗的效果。将共生素细胞暴露于不同浓度的DCMU和薄荷醇中4 h。结果表明,薄荷醇处理的细胞对PSII抑制的50%抑制浓度(IC50)值为0.72〜1.96 mM,而DCMU处理的细胞为29〜74 pM。根据对薄荷醇的PSII耐受性显示共生素类型的不同反应(S.minutum> S.trenchii = C15> C3 = S.goreaui),以及响应曲线。相比之下,当用DCMU处理不同类型的药物时,反应并非如此多样。当抑制PSII活性时,五种薄荷醇处理过的Symbiodinium类型中的三种显示出立即产生大量ROS,而DCMU处理过的Symbiodinium类型中没有生成ROS。两种结果均表明薄荷醇通过Symbiodinium类型依赖性机制抑制Symbiodinium PSII活性,这也与DCMU处理的机制不同。这项研究进一步证实,即使在同一进化枝中,光合功能 Symbiodinium 对胁迫也具有不同的响应。

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