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Exposure to the Paralytic Shellfish Toxin Producer Alexandrium catenella Increases the Susceptibility of the Oyster Crassostrea gigas to Pathogenic Vibrios

机译:暴露于麻痹性贝类毒素生产者亚历山大·卡特内勒(Alexanderium catenella)增加了牡蛎牡蛎对致病性弧菌的易感性

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The multifactorial etiology of massive Crassostrea gigas summer mortalities results from complex interactions between oysters, opportunistic pathogens and environmental factors. In a field survey conducted in 2014 in the Mediterranean Thau Lagoon (France), we evidenced that the development of the toxic dinoflagellate Alexandrium catenella , which produces paralytic shellfish toxins (PSTs), was concomitant with the accumulation of PSTs in oyster flesh and the occurrence of C. gigas mortalities. In order to investigate the possible role of toxic algae in this complex disease, we experimentally infected C. gigas oyster juveniles with Vibrio tasmaniensis strain LGP32, a strain associated with oyster summer mortalities, after oysters were exposed to Alexandrium catenella . Exposure of oysters to A. catenella significantly increased the susceptibility of oysters to V. tasmaniensis LGP32. On the contrary, exposure to the non-toxic dinoflagellate Alexandrium tamarense or to the haptophyte Tisochrysis lutea used as a foraging alga did not increase susceptibility to V. tasmaniensis LGP32. This study shows for the first time that A. catenella increases the susceptibility of Crassostrea gigas to pathogenic vibrios. Therefore, in addition to complex environmental factors explaining the mass mortalities of bivalve mollusks, feeding on neurotoxic dinoflagellates should now be considered as an environmental factor that potentially increases the severity of oyster mortality events.
机译:牡蛎大量夏季死亡的多因素病因是牡蛎,机会病原体和环境因素之间复杂的相互作用所致。在2014年于地中海Thau泻湖(法国)进行的一次实地调查中,我们证明了产生有麻痹性贝类毒素(PST)的有毒鞭毛藻亚历山大藻(Alexandre catenella)的发展与牡蛎果肉中PST的积累和发生有关。 C. gigas的死亡人数。为了研究有毒藻类在这种复杂疾病中的可能作用,我们在牡蛎暴露于亚历山大·卡登氏菌之后,用塔斯曼弧菌菌株LGP32(一种与牡蛎夏季死亡相关的菌株)实验感染了C. gigas牡蛎少年。将牡蛎暴露于链霉菌会显着提高牡蛎对塔斯曼尼弧菌LGP32的敏感性。相反,暴露于无毒的鞭毛藻鞭毛亚历山大藻或用作觅食藻类的附生植物黄褐线藻不能增加对塔斯曼弧菌LGP32的敏感性。这项研究首次表明,毛叶假单胞菌增加了Crassostrea gigas对病原性弧菌的敏感性。因此,除了解释双壳类软体动物大量死亡的复杂环境因素外,现在还应考虑以神经毒性的鞭毛藻为食,这是可能增加牡蛎死亡事件严重性的环境因素。

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