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微藻对外来物种的胞外代谢产物表现出一系列反应。

Microalgae show a range of responses to exometabolites of foreign species.

作者信息

Apostolopoulou Natalia G, Smeti Evangelia, Lamorgese Marta, Varkitzi Ioanna, Whitfield Phillip, Regnault Clement, Spatharis Sofie

机构信息

Department of Ecology and Systematics, National and Kapodistrian University of Athens, 10679, Greece.

School of Life Sciences, University of Glasgow, G12 8QQ, UK.

出版信息

Algal Res. 2022 Mar;62:None. doi: 10.1016/j.algal.2021.102627.

Abstract

Studies on microalgae interspecific interactions have so far focused either on nutrient competition or allelopathic effects due to excreted substances from Harmful Algal Bloom (HAB) species. Evidence from plants, bacteria and specific microalgae groups, point to a range of responses mediated by sensing or direct chemical impact of exometabolites from foreign species. Such processes remain under-investigated, especially in non-HAB microalgae, despite the importance of such knowledge in ecology and industrial applications. Here, we study the directional effect of exometabolites of 4 "foreign" species , sp., sp. and sp. to each of three "target" species across a total of 12 treatments. We disentangle these effects from nutrient competition by adding cell free medium of each "foreign" species into our treatment cultures. We measured the biomass response, to the foreign exometabolites, as cell number and photosynthetic biomass (Chla), whereas nutrient use was measured as residual phosphorus (PO) and intracellular phosphorus (P). Exometabolites from filtrate of foreign species were putatively annotated by untargeted metabolomics analysis and were discussed in association to observed responses of target species. Among others, these metabolites included L-histidinal, Tiliacorine and dimethylsulfoniopropionate (DMSP). Our findings show that species show a range of responses with the most common being biomass suppression, and less frequent biomass enhancement and intracellular P storage. Filtrate from the green microalgae caused the most pronounced negative effects suggesting that non-HAB species can also cause negative chemical interference. A candidate metabolite inducing this response is L-histidinal which was measured in high abundance uniquely in and its L-histidine form derived from bacteria was previously confirmed as a microalgal algicidal. also induced biomass suppression on other microalgae and a candidate metabolite for this response is Tiliacorine, a plant-derived alkaloid with confirmed cytotoxic activity.

摘要

迄今为止,关于微藻种间相互作用的研究主要集中在营养竞争或有害藻华(HAB)物种分泌物质产生的化感效应上。来自植物、细菌和特定微藻群体的证据表明,外来物种的胞外代谢产物通过感知或直接化学影响介导了一系列反应。尽管这些知识在生态学和工业应用中很重要,但此类过程仍未得到充分研究,尤其是在非有害藻华微藻中。在这里,我们研究了4种“外来”物种( 种、 种、 种和 种)的胞外代谢产物对3种“目标”物种中每一种的定向影响,总共进行了12种处理。我们通过将每种“外来”物种的无细胞培养基添加到处理培养物中,将这些影响与营养竞争区分开来。我们测量了对外来胞外代谢产物的生物量反应,以细胞数量和光合生物量(叶绿素a)表示,而营养物质利用则以残余磷(PO)和细胞内磷(P)表示。通过非靶向代谢组学分析对外来物种滤液中的胞外代谢产物进行了推定注释,并结合目标物种的观察反应进行了讨论。其中,这些代谢产物包括L-组氨醛、蒂利亚考林和二甲基磺丙酸(DMSP)。我们的研究结果表明,物种表现出一系列反应,最常见的是生物量抑制,较少见的是生物量增加和细胞内磷储存。绿色微藻 的滤液产生了最明显的负面影响,这表明非有害藻华物种也会造成负面的化学干扰。一种诱导这种反应的候选代谢产物是L-组氨醛,它在 中大量存在,其来源于细菌的L-组氨酸形式先前已被确认为一种微藻杀藻剂。 也对其他微藻诱导了生物量抑制,这种反应的一种候选代谢产物是蒂利亚考林,一种具有已证实细胞毒性活性的植物源生物碱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/646d/8924005/5adc295200cf/ga1.jpg

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