IITB-MONASH Research Academy, Mumbai, 400076, India.
School of Biological Sciences, Monash University, Clayton, Victoria, 3800, Australia.
J Phycol. 2022 Aug;58(4):568-581. doi: 10.1111/jpy.13254. Epub 2022 Jun 6.
Extracellular signals are reported to mediate chemical cross-talk among pelagic microbes, including microalgal prey and predators. Water-soluble mediator compounds play a crucial role in extracellular communication which is vital for prey recognition, attraction, capture, and predator deterrence. A range of exo-metabolites including oxylipins and vitamins are released by prey in response to grazing stress. The temporal dynamics of such exo-metabolites largely remains unknown, especially in large-scale cultivation of microalgae such as closed or open ponds. In open ponds, infestation of predators is almost inevitable but highly undesirable due to the imminent threat of culture collapse. The early production of exo-metabolites emitted by microalgal prey in response to predator attack could be leveraged as diagnostic markers of possible culture collapse. This study uses an untargeted approach for temporal profiling of Dunaliella tertiolecta-specific exo-metabolites under grazing pressure from Oxyrrhis marina. We report 24 putatively identified metabolites, belonging to various classes such as short peptides, lipids, indole-derivatives, and free amino acids, as potential markers of grazing-mediated stress. In addition, this study outlines a clear methodology for screening of exo-metabolites in marine algal samples, the analysis of which is frequently hindered by high salt concentrations. In future, a chemistry-based targeted detection of these metabolites could enable a quick and on-site screening of predators in microalgal cultures.
细胞外信号被报道介导浮游微生物之间的化学串扰,包括微藻猎物和捕食者。水溶性介体化合物在细胞外通讯中起着至关重要的作用,对于猎物的识别、吸引、捕获和捕食者的威慑至关重要。一系列外代谢物,包括氧化脂类和维生素,是猎物在受到放牧压力时释放的。这些外代谢物的时间动态在很大程度上仍然未知,特别是在微藻的大规模培养中,如封闭或开放池塘。在开放池塘中,捕食者的侵袭几乎是不可避免的,但由于文化崩溃的迫在眉睫的威胁,这是非常不受欢迎的。微藻猎物在受到捕食者攻击时早期产生的外代谢物可以作为可能发生文化崩溃的诊断标志物。本研究采用非靶向方法,在海洋微藻狄氏盐藻受到海洋鞭毛藻(Oxytricha marina)放牧压力时,对其特定的外代谢产物进行时间分析。我们报告了 24 种推测的代谢产物,它们属于各种类别,如短肽、脂质、吲哚衍生物和游离氨基酸,这些都是放牧介导应激的潜在标志物。此外,本研究概述了一种用于筛选海洋藻类样本中外代谢物的明确方法,由于盐浓度高,这些样本的分析经常受到阻碍。在未来,基于化学的这些代谢物的靶向检测可以实现对微藻培养物中捕食者的快速现场筛选。