Zhang Hanyuan, Hou Jilun, Zhu Youxiu, Wu Biyin, Ren Jiangong, Sun Zhaohui, Liu Xia
Key Laboratory of Aquatic Genomics, Ministry of Agriculture and Rural Affairs, Beijing Key Laboratory of Fishery Biotechnology, Chinese Academy of Fishery Sciences, Beijing 100141, China.
Beidaihe Central Experiment Station, Chinese Academy of Fishery Sciences, Qinhuangdao 066100, China.
Mar Drugs. 2025 Mar 24;23(4):140. doi: 10.3390/md23040140.
Tetrodotoxin (TTX) is a potent marine neurotoxin found in pufferfish, causing severe poisoning or death if consumed improperly. Studies have indicated that intestinal symbiotic microbiota are associated with the production and accumulation of TTX in pufferfish. However, the specific symbiotic microorganisms involved in these processes and their respective functions remain unclear. This study explored differences in intestinal microbiota related to the TTX content between toxic and non-toxic tiger puffer . We found that the dominant phyla exhibiting significant abundance differences between the two groups were Proteobacteria and Bacteroidota, with the core bacterial genera being , , , and . Moreover, the genera , , , and were reported for the first time to be potentially associated with TTX bioaccumulation in . In addition, an integrated analysis with our previous study indicated that the "ABC transporters" pathway may play significant roles in the production and transport of TTX in both symbiotic microorganisms and . This study preliminarily investigated the intestinal symbiotic bacteria associated with the accumulation and metabolism of TTX in , as well as screening potential microbial biomarkers for assessing the safety of pufferfish.
河豚毒素(TTX)是一种在河豚中发现的强效海洋神经毒素,如果食用不当会导致严重中毒或死亡。研究表明,肠道共生微生物群与河豚体内TTX的产生和积累有关。然而,参与这些过程的具体共生微生物及其各自的功能仍不清楚。本研究探讨了有毒和无毒虎河豚之间与TTX含量相关的肠道微生物群差异。我们发现,两组之间表现出显著丰度差异的优势菌门是变形菌门和拟杆菌门,核心细菌属为 、 、 和 。此外, 、 、 和 属首次被报道可能与 中TTX的生物积累有关。此外,与我们之前的研究进行的综合分析表明,“ABC转运蛋白”途径可能在共生微生物和 中TTX的产生和运输中发挥重要作用。本研究初步调查了与 中TTX积累和代谢相关的肠道共生细菌,以及筛选用于评估河豚安全性的潜在微生物生物标志物。