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亲体培育期间投喂不同比例的海藻和微藻的养殖牡蛎()的元素组成及生物可利用性

Elemental composition and bioaccessibility of farmed oysters () fed different ratios of dietary seaweed and microalgae during broodstock conditioning.

作者信息

Cardoso Carlos, Gomes Romina, Rato Ana, Joaquim Sandra, Machado Jorge, Gonçalves José Fernando, Vaz-Pires Paulo, Magnoni Leonardo, Matias Domitília, Coelho Inês, Delgado Inês, Castanheira Isabel, Matos Joana, Ozório Rodrigo, Bandarra Narcisa, Afonso Cláudia

机构信息

Division of Aquaculture and Upgrading Portuguese Institute for the Sea and Atmosphere, IPMA Lisboa Portugal.

Interdisciplinary Centre of Marine and Environmental Research (CIIMAR/CIMAR) University of Porto Matosinhos Portugal.

出版信息

Food Sci Nutr. 2019 Jun 28;7(8):2495-2504. doi: 10.1002/fsn3.1044. eCollection 2019 Aug.

Abstract

The Pacific oyster () culture has been expanding, thereby leading to a greater importance of hatcheries. Broodstock conditioning is very important in the hatchery process, in which diet composition may have a strong influence on the offspring production and quality. Therefore, the current study evaluated elemental composition and bioaccessibility of oysters fed different ratios of dietary seaweed (SW) and microalgae. The dietary conditioning consisted of direct replacement of microalgae by SW at four substitution levels (0%, 25%, 50%, and 100% diet). It was observed that oysters fed 100% SW had the highest levels of Be, Cu, Zn, Sr, and Cd. The most important trend was a concentration decline of most elements with progressively lower levels of SW substitution for microalgae in the feeds. No Cd or Pb hazard (contents below 1.0 mg/kg for Cd and 1.5 mg/kg for Pb) was found in oyster meat. Regarding elemental bioaccessibility, values were similar, near 100% in the cases of Cu, Br, and I. Only for Mn and Pb, bioaccessibility percentages deviated more from 100%. Indeed, the value for Pb was 50% ± 7% (initial group), and for Mn, all values were equal or lower than 29% ± 2% (final group of oysters fed microalgae). It was observed that Mn, Cd, and Pb bioaccessibility increased with a growing share of microalgal biomass in the feed. Therefore, this study showed that SW incorporation into the feed influences elemental composition and bioaccessibility of the oysters.

摘要

太平洋牡蛎()养殖规模一直在扩大,因此育苗场的重要性日益凸显。亲体培育在育苗过程中非常重要,在此过程中,饲料组成可能对后代的产量和质量有很大影响。因此,本研究评估了投喂不同比例的海藻(SW)和微藻的牡蛎的元素组成和生物可利用性。饲料处理包括在四个替代水平(0%、25%、50%和100%饲料)下用SW直接替代微藻。观察到投喂100%SW的牡蛎中铍、铜、锌、锶和镉的含量最高。最重要的趋势是,随着饲料中微藻替代SW的水平逐渐降低,大多数元素的浓度下降。在牡蛎肉中未发现镉或铅的危害(镉含量低于1.0毫克/千克,铅含量低于1.5毫克/千克)。关于元素的生物可利用性,数值相似,铜、溴和碘的情况接近100%。只有锰和铅的生物可利用性百分比与100%的偏差更大。实际上,铅的值为50%±7%(初始组),而对于锰,所有值均等于或低于29%±2%(投喂微藻的牡蛎最终组)。观察到随着饲料中微藻生物量比例的增加,锰、镉和铅的生物可利用性增加。因此,本研究表明,将SW添加到饲料中会影响牡蛎的元素组成和生物可利用性。

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