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暴露于混养甲藻 Lepidodinium sp. 及其信号会增加拟菱形藻多列种的毒素产生。

Exposure to the mixotrophic dinoflagellate Lepidodinium sp. and its cues increase toxin production of Pseudo-nitzschia multiseries.

机构信息

Guangzhou Key Laboratory of Subtropical Biodiversity and Biomonitoring, Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, South China Normal University, Guangzhou 510631, PR China.

Guangzhou Key Laboratory of Subtropical Biodiversity and Biomonitoring, Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, South China Normal University, Guangzhou 510631, PR China.

出版信息

Sci Total Environ. 2024 Mar 1;914:169812. doi: 10.1016/j.scitotenv.2023.169812. Epub 2024 Jan 4.

Abstract

The present study examined the defense responses of toxigenic Pseudo-nitzschia species (P. multiseries) to a mixotrophic dinoflagellate, Lepidodinium sp., and its associated cues. We evaluated their responses to different predation risks, including direct physical contact and indirect interactions facilitated by cues from Lepidodinium sp. during active feeding on heterospecific prey (Rhodonomas salina), limited feeding on conspecific prey (P. multiseries) and non-feeding (autotrophic growth in f/2 medium) states. This study is the first investigation of these trophic interactions. Our results demonstrated a significant increase in cellular domoic acid (cDA) in P. multiseries when exposed to Lepidodinium sp. and its associated cues, which was 1.38 to 2.42 times higher than the non-induced group. Notably, this increase was observed regardless of Lepidodinium sp. feeding on this toxic diatom and nutritional modes. However, the most significant increase occurred when they directly interacted. These findings suggest that P. multiseries evaluates predation risk and increases cDA production as a defensive strategy against potential grazing threats. No morphological changes were observed in P. multiseries in response to Lepidodinium sp. or its cues. P. multiseries cultured in flasks of Group L+P-P showed a decrease in growth, but Group L-P and Group L+R-P did not exhibit any decrease. These results suggest a lack of consistent trade-offs between the defense response and growth, thus an increase in cDA production may be a sustainable and efficient defense strategy for P. multiseries. Furthermore, our findings indicate that P. multiseries had no significant impact on the fitness (cell size, growth and/or grazing) of Lepidodinium sp. and R. salina, which suggests no evident toxic or allelopathic impacts on these two phytoplankton species. This study enhances our understanding of the trophic interactions between toxic diatoms and mixotrophic dinoflagellates and helps elucidate the dynamics of Harmful Algal Blooms, toxin transmission, and their impact on ecosystem health.

摘要

本研究考察了产毒菱形藻(Pseudo-nitzschia multiseries)对混养甲藻(Lepidodinium sp.)及其相关信号的防御反应。我们评估了它们对不同捕食风险的反应,包括直接的物理接触和由 Lepidodinium sp. 在积极捕食异源猎物(Rhodomonas salina)、有限捕食同源猎物(P. multiseries)和非摄食(在 f/2 培养基中进行自养生长)状态下产生的间接相互作用所带来的风险。这是首次对这些营养相互作用进行研究。我们的研究结果表明,暴露于 Lepidodinium sp.及其相关信号下的 P. multiseries 的细胞内软骨藻酸(cDA)显著增加,比非诱导组高 1.38 至 2.42 倍。值得注意的是,无论 Lepidodinium sp.是否以这种有毒硅藻为食以及采取何种营养方式,都会观察到这种增加。然而,当它们直接相互作用时,增加幅度最大。这些发现表明,P. multiseries 会评估捕食风险,并增加 cDA 的产生,作为一种防御策略来应对潜在的放牧威胁。未观察到 P. multiseries 对 Lepidodinium sp.或其信号的形态变化。在含有 L+P-P 组的培养瓶中培养的 P. multiseries 显示出生长下降,但在 L-P 组和 L+R-P 组中没有观察到任何下降。这些结果表明,防御反应和生长之间没有一致的权衡,因此增加 cDA 的产生可能是 P. multiseries 的一种可持续和有效的防御策略。此外,我们的研究结果表明,P. multiseries 对 Lepidodinium sp.和 R. salina 的适应性(细胞大小、生长和/或摄食)没有显著影响,这表明对这两种浮游植物没有明显的毒性或化感影响。本研究增进了我们对产毒硅藻和混养甲藻之间营养相互作用的理解,并有助于阐明有害藻华、毒素传递及其对生态系统健康的影响的动态。

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