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首页> 外文期刊>Aquaculture Nutrition >Influence of different dietary carbohydrate sources on the growth and intestinal microbiota of Litopenaeus vannamei at low salinity
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Influence of different dietary carbohydrate sources on the growth and intestinal microbiota of Litopenaeus vannamei at low salinity

机译:不同膳食碳水化合物来源对低盐度Litopenaeus Vannamei生长和肠道微生物的影响

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摘要

Because of the increasing market potential of Pacific white shrimp (Litopenaeus vannamei) and limited availability of coastal areas for production, culture of L. vannamei at low salinity is a growing trend throughout the world. Dietary manipulation could improve the growth performance of L. vannamei at low salinity. This study reared L. vannamei with glucose, sucrose and corn starch as dietary carbohydrate sources, respectively, at a low salinity. The results indicated that the sucrose and glucose feeding groups showed better growth performance. An Illumina-based sequencing method was used to examine the intestinal bacterial composition and the results indicated that Proteobacteria were the most prevalent members, but abundance of Actinobacteria decreased while Firmicutes increased in the corn starch-fed group. Furthermore, bacteria related to complex carbohydrate degradation were in lower abundance, whereas the abundance of opportunistic pathogenic bacteria increased in corn starch-fed group than the other two groups, suggesting that the diet imposes selective pressure on the intestinal microbiota. Complex carbohydrates were not the ideal energy sources for L. vannamei at low salinity because the host has higher energy demand in the stressful conditions while the complex carbohydrate degradation efficiency of the gut microbiota in L. vannamei is limited.
机译:由于太平洋白虾(Litopenaeus Vannamei)的市场潜力增加,以及沿海地区生产的有限可用性,L.Vannamei的文化低盐度是全球日益增长的趋势。膳食操纵可以提高L.Vannamei的低盐度的生长性能。本研究分别以低盐度分别用葡萄糖,蔗糖和玉米淀粉用葡萄糖,蔗糖和玉米淀粉作为膳食碳水化合物饲养。结果表明,蔗糖和葡萄糖喂养基团显示出更好的生长性能。使用基于illumina的测序方法来检查肠道细菌组合物,结果表明,植物间体是最普遍的构件,但在玉米淀粉喂养组中的压缩时,抗菌菌的丰度降低。此外,与复合碳水化合物降解有关的细菌均处于较低的丰度,而玉米淀粉喂养组的丰富机会致病细菌比其他两组增加,这表明饮食对肠道微生物产生了选择性压力。复杂的碳水化合物不是L.Vannamei的理想能源,低盐度,因为宿主在压力条件下具有更高的能量需求,而L.Vannamei在L.Vannamei中的肠道微生物的复杂碳水化合物降解效率是有限的。

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