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The Negative Relationship between Fouling Organisms and the Content of Eicosapentaenoic Acid and Docosahexaenoic Acid in Cultivated Pacific Oysters Crassostrea gigas

机译:结垢生物与培养牡蛎中赤素腺苷酸含量的负面关系鲫鱼镉

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摘要

Bivalves serve as an important aquaculture product, as they are the source of essential fatty acids, such as eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA), in our diet. However, their cultivation in the wild can be affected by fouling organisms that, in turn, affect their EPA and DHA content. The effects of fouling organisms on the EPA and DHA contents of cultivated bivalves have not been well documented. We examined the effects of fouling organisms on the EPA and DHA contents and condition index of cultured oysters, Crassostrea gigas, in an aquaculture system. We sampled two-year-old oysters from five sites in Shizugawa Bay, Japan, in August 2014. Most of the fouling organisms were sponges, macroalgae, and Mytilus galloprovincialis. A significant negative relationship existed between the DHA content in C. gigas and the presence of sponges and macroalgae. A lower C. gigas EPA content corresponded to a higher M. galloprovincialis fouling mass and a lower C. gigas condition index. This can be explained by dietary competition between C. gigas and M. galloprovincialis for diatoms, which were the main producer of EPA in our study sites. Our findings indicate that fouling organisms likely reduce the EPA and DHA content in cultivated oysters. Therefore, our results suggest that the current efforts to remove fouling organisms from oyster clusters is an effective strategy to enhance the content of EPA and DHA in oysters.
机译:双抗性作为重要的水产养殖产品,因为它们是必需脂肪酸的来源,例如eicosapentaeno酸(EPA)和DocosaheNoic酸(DHA),在我们的饮食中。然而,他们在野外的种植可能受到污垢生物的影响,反过来影响他们的EPA和DHA含量。污垢生物对EPA和DHA含量的培养双抗体含量的影响并未得到充分的记录。我们在水产养殖系统中检查了污垢生物对污染牡蛎,鲫鱼的含量和条件指标的影响。我们于2014年8月,我们从日本沙浦湾的五个地点取样了两年的牡蛎。大多数污垢有机体是海绵,大草原和肉豆植物疾病。在C.Gigas中的DHA含量和海绵和大宏凝球的存在之间存在显着的负面关系。较低的C. Gigas EPA含量与较高的M. Gallovincialis fouling质量和较低的C. gigas条件指标相对应。这可以通过C. Gigas和M. GalloProvincialis的饮食竞争来解释硅藻,这是我们研究地点的主要生产商。我们的研究结果表明,污垢生物可能会降低培养的牡蛎中的EPA和DHA含量。因此,我们的结果表明,目前从牡蛎集群中消除污垢生物的努力是增强牡蛎中EPA和DHA含量的有效策略。

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