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Assessment of nutrient allocation and metabolic turnover rate in Pacific white shrimp Litopenaeus vannamei co-fed live macroalgae Ulva clathrata and inert feed: dual stable isotope analysis

机译:太平洋白对虾凡纳滨对虾共同喂养的活大型藻类和惰性饲料的营养分配和代谢周转率评估:双重稳定同位素分析

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摘要

The present study quantified the relative contribution of dietary carbon and nitrogen supplied by live biomass of the green macroalgae Ulva clathrata and a commercial inert feed to the growth of juvenile shrimp Litopenaeus vannamei. The stable isotope ratios of carbon and nitrogen (δ13C and δ15N) were analyzed in both food sources, whole bodies and muscle tissue of shrimp reared on co-feeding regimes where 75, 50 and 25% of daily consumed macroalgal biomass was substituted by inert feed (regimes 75F/25U, 50F/50U and 25F/75U, respectively). Higher growth rates were observed in shrimps fed on regime 75F/25U (k = 0.062), followed by shrimps fed only inert feed (100F, k = 0.060). Animals reared only on U. clathrata (100U) showed minimal growth (k = 0.008) and very high metabolic turnover rates of carbon and nitrogen. Isotopic values measured in inert feed (δ13C= -23.0 ‰, δ15N= 9.7‰) and macroalgae (δ13C= -13.1‰, δ15N= -3.5‰) were very contrasting and both had a rapid influence on the isotopic values of shrimp. Animals reached full isotopic equilibrium through growth and fast metabolic turnover in only 2 weeks, except shrimps fed only macroalgae. At the end of the experiment, δ13C and δ15N values in shrimp reared on all co-feeding regimes were strongly biased towards the isotopic values of U. clathrata. Total dry matter contributions to growth were estimated using an isotope mixing model and considering the elemental concentration of both nutritional sources. Results indicated that shrimps in the co-feeding regimes incorporated significantly higher amounts of dietary carbon and nitrogen from the macroalgal biomass. Shrimps in treatment 75F/25U incorporated 52% of carbon from the inert feed and 48% from the macroalgae. Animals under feeding regimes 50F/50U and 25F/75U incorporated higher amounts of dietary carbon from U. clathrata (65-89%) when compared to carbon proportions supplied by both co-feeding regimes (33-70%) and also incorporated the majority of nitrogen from the macroalgae. However, a high incorporation of nitrogen was not reflected in high growth in the latter treatments as metabolic turnover rates were very high. Estimated turnover rates ranged from 0.049 to 0.191 d-1 for carbon and from 0.013 to 0.100 d-1 for nitrogen and values followed an increasing trend as a function of macroalgae consumption. Nitrogen half-times in tissue consistently decreased throughout the different treatments from 9.5 d (100F) to 6.4 d (100U). Proportions of incorporated nutrients in muscle tissue followed similar patterns as those observed in whole bodies.
机译:本研究量化了绿色大型藻类Ulva clathrata的活生物量和商业惰性饲料对幼虾凡纳滨对虾生长的日粮碳和氮的相对贡献。分析了通过联合饲喂方式饲养的虾的食物来源,全身和肌肉组织的碳和氮(δ13C和δ15N)的稳定同位素比,其中惰性饲料替代了每日消耗的大型藻类生物量的75%,50%和25% (分别为75F / 25U,50F / 50U和25F / 75U)。以75F / 25U饲喂的虾的生长速度更高(k = 0.062),其次是仅饲喂惰性饲料的虾(100F,k = 0.060)。仅在U. clathrata(100U)上饲养的动物显示出最小的生长(k = 0.008)和非常高的碳和氮代谢率。惰性饲料(δ13C= -23.0‰,δ15N= 9.7‰)和大型藻类(δ13C= -13.1‰,δ15N= -3.5‰)的同位素值具有很大的反差,并且都对虾的同位素值有快速的影响。除仅喂食大型藻类的虾外,动物仅在两周内就通过生长和快速的代谢周转达到了完全的同位素平衡。在实验结束时,在所有共同饲养方式下饲养的虾的δ13C和δ15N值都强烈地向着clathrata的同位素值偏移。利用同位素混合模型并考虑了两种营养来源的元素浓度,估算了干物质对生长的总贡献。结果表明,在共同饲养方式下,虾从大型藻类生物质中摄入的饲料中碳和氮的含量明显更高。在75F / 25U处理中的虾类吸收了惰性饲料中52%的碳和大藻类中48%的碳。与两种共同喂养方式提供的碳比例(33-70%)相比,处于喂养方式50F / 50U和25F / 75U的动物摄入了来自美洲阔叶U的膳食碳含量更高(65-89%)大藻中的氮。然而,由于代谢转换率非常高,在后一种处理中的高生长并未反映出氮的高掺入。碳的估计周转率范围为0.049至0.191 d-1,氮的估计周转率范围为0.013至0.100 d-1,其值随大型藻类消费的增加呈上升趋势。在整个处理过程中,组织中的氮半衰期从9.5 d(100F)持续降低至6.4 d(100U)。肌肉组织中所掺入的养分所占比例与全身观察到的相似。

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