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采用分子和化学方法进行海洋毒素应急风险评估。

Emergent marine toxins risk assessment using molecular and chemical approaches.

作者信息

García-Cazorla Y, Vasconcelos V

机构信息

Interdisciplinary Centre of Marine and Environmental Research (CIIMAR) Portugal.

出版信息

EFSA J. 2022 May 25;20(Suppl 1):e200422. doi: 10.2903/j.efsa.2022.e200422. eCollection 2022 May.

Abstract

Cyanobacteria harmful blooms represent a deviation to the normal equilibrium in planktonic communities involving a rapid and uncontrolled growth. Owing to the capacity to produce toxins as secondary metabolites, cyanobacteria may cause huge economic losses in the fishing and aquaculture industries and poisoning incidents to humans due to their accumulation in the food chain. The conditions which promote toxic blooms have not yet been fully understood, but climate change and anthropogenic intervention are pointed as significant factors. For the detection of toxins in edible marine organisms, the establishment of international regulations and compulsory surveillance has been probed as exceptionally effective. However, not regulation nor monitoring have been settled concerning emergent marine toxins. In the light of this scenario, it becomes essential to apply fast and reliable surveillance methodologies for the early detection of cyanobacterial blooms as well as the occurrence of emergent marine toxins. Shotgun metagenomic sequencing has potential to become a powerful diagnostic tool in the fields of food safety and One Health surveillance. This culture-independent approach overcomes limitations of traditional microbiological techniques; it allows a quick and accurate assessment of a complex microbial community, including quantitative identification and functional characterisation, in a single experiment. In the framework of the EU-FORA fellowship, with the final goal of evaluate metagenomics as a promising risk assessment tool, the fellow worked on the development of an innovative workflow through state-of-the-art molecular and chemical analytical procedures. This work programme aims to evaluate the occurrence of emergent marine toxins and the producing organisms in Cabo Verde coastal cyanobacteria blooms. Our results show the outstanding potential of a holistic metagenomic approach for the risk assessment of emergent marine toxins and the producing organisms. Additionally, we have also highlighted its value for the identification and evaluation of secondary metabolites as natural bioactive compounds with biotechnological and industrial interest.

摘要

蓝藻有害水华代表了浮游生物群落正常平衡的一种偏离,涉及快速且不受控制的生长。由于能够产生作为次生代谢产物的毒素,蓝藻可能会给渔业和水产养殖业造成巨大经济损失,并且因其在食物链中的积累而导致人类中毒事件。促进有毒水华形成的条件尚未完全明了,但气候变化和人为干预被认为是重要因素。对于检测可食用海洋生物中的毒素,国际法规的制定和强制监测已被证明非常有效。然而,对于新出现的海洋毒素,尚未有相关法规或监测措施。鉴于这种情况,应用快速可靠的监测方法来早期检测蓝藻水华以及新出现的海洋毒素的发生变得至关重要。鸟枪法宏基因组测序有潜力成为食品安全和“同一健康”监测领域的强大诊断工具。这种不依赖培养的方法克服了传统微生物技术的局限性;它允许在单个实验中对复杂的微生物群落进行快速准确的评估,包括定量鉴定和功能表征。在欧盟 - FORA奖学金框架内,为了最终评估宏基因组学作为一种有前途的风险评估工具,该研究员通过先进的分子和化学分析程序致力于开发一种创新的工作流程。这个工作计划旨在评估佛得角沿海蓝藻水华中新出现的海洋毒素及其产生生物的发生情况。我们的结果表明,整体宏基因组方法在新出现的海洋毒素及其产生生物的风险评估方面具有显著潜力。此外,我们还强调了其在鉴定和评估作为具有生物技术和工业价值的天然生物活性化合物的次生代谢产物方面的价值。

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