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Metabolomics Responses of Pearl Oysters (Pinctada fucata martensii) Fed a Formulated Diet Indoors and Cultured With Natural Diet Outdoors

机译:饲喂室内配方饮食并在户外天然饮食中养殖的珍珠牡蛎(Pinctada fucata martensii)的代谢组学响应

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摘要

Natural disasters and environmental pollution are the main problems in traditional offshore cultivation. While culturing pearl oysters through industrial farming can avoid these problems, food availability in this case is limited. This study compares the metabolomics responses of pearl oysters, Pinctada fucata martensii, fed a formulated diet indoors with those of oysters cultured with natural diet outdoors by using a gas chromatography time-of-flight mass spectrometry (GC-TOF/MS)-based metabolomics approach. The animals were divided into two groups as follows: the experimental group (EG) was fed a formulated diet indoors and the control group (CG) was cultured with natural diet outdoors. After 45 days of feeding, the survival rate of EG was significantly higher than that of CG. The absolute growth rate (AGR) of the total weight of EG did not significantly differ from that of CG, but the AGRs of the shell length, shell height, and shell width of CG were significantly higher than those of EG. EG showed significantly higher amylase activities than CG, and the hexokinase and glucose-6-phosphate isomerase concentrations of the former were significantly lower than those of the latter. Metabolomics revealed 125 metabolites via mass spectrum matching with a spectral similarity value > 700 in the hepatopancreas, and 48 metabolites were considered to be significantly different between groups (VIP > 1 and P < 0.05). Pathway analysis results indicated that these significantly different metabolites were involved in 34 pathways. Further integrated key metabolic pathway analysis showed that, compared with CG, EG had lower capabilities for cysteine and methionine metabolism, sulfur metabolism, and starch and sucrose metabolism. This study demonstrated that the formulated diet could be an excellent substitute for natural diet; however, its nutrients were insufficient. Effective strategies should be developed to enhance the utilization of formulated diets.
机译:自然灾害和环境污染是传统近海养殖的主要问题。尽管通过工业化养殖来养殖牡蛎可以避免这些问题,但这种情况下的食物供应有限。这项研究使用基于气相色谱飞行时间质谱(GC-TOF / MS)的代谢组学方法,比较了在室内以配方饮食喂养的牡蛎Pinctada fucata martensii的代谢组学响应与在户外自然饮食中养殖的牡蛎的代谢组学响应方法。将动物分为以下两组:在室内给实验组(EG)喂食配方饮食,在室外给对照组(CG)培养天然饮食。喂养45天后,EG的存活率明显高于CG。 EG总重量的绝对增长率(AGR)与CG并无显着差异,但CG的壳长,壳高和壳宽的AGR显着高于EG。 EG显示出比CG明显更高的淀粉酶活性,并且前者的己糖激酶和6-磷酸葡萄糖异构酶浓度显着低于后者。代谢组学通过质谱匹配揭示了125种代谢物,肝胰腺中的光谱相似度值> 700,并且认为48种代谢物之间存在显着差异(VIP> 1和P <0.05)。途径分析结果表明,这些显着不同的代谢物参与了34条途径。进一步的综合关键代谢途径分析表明,与CG相比,EG的半胱氨酸和蛋氨酸代谢,硫代谢以及淀粉和蔗糖代谢能力较低。这项研究表明,配方饮食可以替代天然饮食。然而,其营养不足。应该制定有效的策略来提高配方饮食的利用率。

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