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Impact of substrate moisture content on growth and metabolic performance of black soldier fly larvae

机译:底物水分含量对黑士兵飞行幼虫生长和代谢性能的影响

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摘要

Substrate moisture content is an important but not well-understood variable in production and waste reduction processes that involves black soldier fly (BSF) larvae. The purpose of this paper is to characterise growth and metabolic performance of BSF larvae on substrate moisture contents from 45 to 85%. Larvae developed into prepupae only at 45-75% substrate moisture content. Within this interval, the maximal specific growth rate was highest (0.73 day~(-1)), the growth period shortest (13 days), and the maximal dry weight lowest (88 mg) at 45% moisture content. Differences in cost of growth and maintenance were not observed at the different substrate moisture contents, and differences in larval performance were likely associated to differences in co-occurring microbial activities. As much as 22% of the substrate carbon was emitted as CO_2 at 45% moisture content by microorganisms, measured as the difference between total respiration and larval respiration, whereas microbial CO_2 production amounted to only 3% of the substrate carbon at 75% moisture content. As consequence of the high specific growth rate and short growth phase, the overall net growth efficiency was higher at 45% moisture content (0.62) than at 75% moisture content (0.52). Overall, the metabolic performance of the BSF larvae was insensitive to differences in substrate moisture content. Their performance was, however indirectly affected by the substrate moisture content due to differences in co-occurring microbial processes in the substrate.
机译:底物水分含量是一种重要的但在生产和废物减少过程中的变化,涉及黑色士兵飞(BSF)幼虫。本文的目的是将BSF幼虫的生长和代谢性能表征在底物水分含量为45%至85%。幼虫仅在45-75%的底物水分含量中发展到Prepupae。在该间隔内,最大的特异性生长速率最高(0.73天〜(-1)),生长期最短(13天),最大的干重最低(88mg)的水分含量为45%。在不同的底物水分含量下未观察到生长和维持成本的差异,并且幼虫性能的差异可能与共同发生的微生物活性的差异有关。由于微生物的微生物含量为45%的水分含量,以45%的水分含量发射了多达22%的基质碳,以呼吸总呼吸和幼虫呼吸之间的差异,而微生物CO_2产量仅为75%的水分含量为3%的底碳碳。由于高特异性生长速率和短的生长阶段,总体净生长效率高于45%的水分含量(0.62),而不是75%的水分含量(0.52)。总体而言,BSF幼虫的代谢性能对底物水分含量的差异不敏感。然而,由于基材中的共发生微生物过程的差异,它们的性能是间接的影响。

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