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一种独特的皂甙谱驱动水产养殖海参的嗅觉介导聚集。

A Distinct Saponin Profile Drives an Olfactory-Mediated Aggregation in the Aquacultivated Sea Cucumber .

机构信息

Biology of Marine Organisms and Biomimetics Unit, Research Institute for Biosciences, University of Mons (UMONS), 7000 Mons, Belgium.

Laboratory of Molecular Biophysics of Interfaces, Gembloux Agro-Bio Tech, University of Liege, 5030 Gembloux, Belgium.

出版信息

Mar Drugs. 2023 Mar 16;21(3):184. doi: 10.3390/md21030184.

Abstract

Intraspecific chemical communication between echinoderms has often been limited to prespawning aggregation. However, sea cucumber farmers have long observed year-round adult aggregation as a potential source of disease propagation and the suboptimal use of available sea pen acreage and food resources. In this study, through spatial distribution statistics, we demonstrated the significant aggregation of the aquacultivated sea cucumber both as adults in large sea-based pens and as juveniles in laboratory-based aquaria, proving that aggregation in these animals is not only observed during spawning. The role of chemical communication in aggregation was investigated using olfactory experimental assays. Our study established that the sediment that feeds on as well as the water preconditioned by conspecifics induced positive chemotaxis in juvenile individuals. More specifically, through comparative mass spectrometry, a distinct triterpenoid saponin profile/mixture was identified to be a pheromone allowing sea cucumber intraspecific recognition and aggregation. This "attractive" profile was characterized as containing disaccharide saponins. This "attractive" aggregation-inducing saponin profile was, however, not conserved in starved individuals that were no longer attractive to other conspecifics. In summary, this study sheds new light on the pheromones in echinoderms. It highlights the complexity of the chemical signals detected by sea cucumbers and suggests a role of saponins well beyond that of a simple toxin.

摘要

棘皮动物种内的化学通讯通常仅限于产卵前的聚集。然而,海参养殖者长期以来一直观察到全年成年个体的聚集,认为这是疾病传播和未充分利用现有的海笔养殖面积和食物资源的潜在来源。在这项研究中,通过空间分布统计,我们证明了养殖海参的显著聚集,无论是在大型海上养殖池中作为成体,还是在实验室养殖的水族馆中作为幼体,证明了这些动物的聚集不仅发生在产卵期。我们使用嗅觉实验检测来研究化学通讯在聚集中的作用。我们的研究确定,海参摄食的沉积物以及同种个体预调节的水会诱导幼体的正趋化性。更具体地说,通过比较质谱分析,确定了一种独特的三萜皂苷图谱/混合物作为一种信息素,允许海参种内识别和聚集。这种“有吸引力的”图谱特征是含有二糖皂苷。然而,这种“有吸引力的”诱导聚集的皂苷图谱在不再对其他同种个体有吸引力的饥饿个体中并不保守。总之,这项研究揭示了棘皮动物信息素的新情况。它强调了海参所检测到的化学信号的复杂性,并表明皂苷的作用远不止于简单的毒素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/624e/10053547/a19c74dac6c1/marinedrugs-21-00184-g007.jpg

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