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Growth and metabolic performance of black soldier fly larvae grown on low and high-quality substrates

机译:黑色士兵飞幼虫在低质量和高质量的基材上生长和代谢性能

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We have measured growth and respiration in black soldier fly (BSF) larvae fed with mixtures of a low-quality substrate (degassed sludge, DS), and a high-quality substrate (chicken feed, CF) in order to elucidate how substrate quality affect larval metabolism and feed conversion into new biomass. The BSF larvae grew faster and became larger the higher the content of CF was in the substrate. Growth followed a sigmoidal curve from where the specific growth rate was determined and compared to measured specific respiration rates, in order to estimate costs of growth, maintenance metabolism, rates of feed assimilation, and net growth efficiency. Specific feed assimilation rates were similar on all substrate mixtures. Maximal specific growth rates were also affected only little unless the larvae were grown in pure DS. In contrast, the cost of growth and the maintenance metabolism were larger the higher the proportion of DS was. High specific growth rates were, in addition, sustained for shorter periods of the time the more DS was included in the substrate mixtures. In effect, higher proportions of the assimilated feed were spent on respiratory purposes instead of being converted into larval biomass and the net growth efficiency decreased the more DS was included in the substrate mixtures. We conclude that substrate quality may affect the conversion of feed into new biomass via alterations of the metabolic performance of BSF larvae and thereby the overall performance of BSF larval cultures.
机译:我们在黑色士兵飞行(BSF)幼虫中测量了生长和呼吸,喂食低质量衬底(脱气,DS)和高质量衬底(鸡饲料,CF)的混合物,以阐明基材质量如何影响幼虫新陈代谢和饲料转化为新生物量。 BSF幼虫增长得更快,并且变得越大,CF含量越高。生长伴随着测定特异性生长速率和测量特异性呼吸速率的突出曲线,以估计生长,维持代谢,饲料同化率和净增长效率的成本。在所有基材混合物上具有特异性饲料同化率。最大的特异性生长率也受影响,除非幼虫在纯DS中生长。相比之下,增长和维持代谢的成本越大,DS的比例越高。此外,还具有高特异性生长速率,持续较短的时间较短时期,底物混合物中的DS越多。实际上,在呼吸目的上花了较高比例,而不是转化为幼虫生物量,并且净生长效率降低了底物混合物中的DS越多。我们得出结论,通过BSF幼虫的代谢性能的改变,基材质量可能影响饲料转化为新生物量,从而影响BSF幼虫培养的总体性能。

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