Facchini Elena, Shrestha Kriti, van den Boer Estelle, Junes Petra, Sader Gaya, Peeters Katrijn, Schmitt Eric
Hendrix Genetics Research Technology & Services B.V., Boxmeer, Netherlands.
Protix Biosystems B.V., Dongen, Netherlands.
Front Genet. 2022 Jun 15;13:865490. doi: 10.3389/fgene.2022.865490. eCollection 2022.
Black soldier fly () farming has exponentially increased in recent years due to the ability of its larvae to efficiently convert low-grade organic materials into high-value food, feed, and technical products. There is a need to further improve the efficiency of production, to meet the rising demands for proteins in the feed and food industries under limited resources. One means of improvement is artificial selection, which has been widely applied in plants and in other livestock species. In 2019, a genetic improvement program was started with the aim to increase larval body weight in black soldier fly larvae. In this paper, we present the outcomes of this breeding program after 10, 13, and 16 generations of selection. The performance of the selected body weight line was compared to the base population line over six experimental rounds under different environmental conditions. Under automated production settings, an average increase of +39% in larval weight, +34% in wet crate yield, +26% in dry matter crate yield, +32% in crude protein per crate, and +21% crude fat per crate was achieved in the selected line compared to the base population line. This research demonstrates the potential contribution of artificial selection to improve efficiency when farming black soldier flies in industrial settings. Further research is needed to fully unlock that potential.
近年来,黑水虻养殖呈指数级增长,这是因为其幼虫能够高效地将低等级有机物质转化为高价值的食品、饲料和技术产品。在资源有限的情况下,有必要进一步提高生产效率,以满足饲料和食品行业对蛋白质不断增长的需求。一种改进方法是人工选择,它已在植物和其他家畜物种中广泛应用。2019年,启动了一项遗传改良计划,旨在增加黑水虻幼虫的体重。在本文中,我们展示了经过10代、13代和16代选择后该育种计划的成果。在不同环境条件下的六个实验轮次中,将选定的体重品系的性能与基础种群品系进行了比较。在自动化生产环境下,与基础种群品系相比,选定品系的幼虫体重平均增加了39%,湿箱产量增加了34%,干物质箱产量增加了26%,每箱粗蛋白增加了32%,每箱粗脂肪增加了21%。这项研究证明了人工选择在工业环境中养殖黑水虻时对提高效率的潜在贡献。需要进一步研究以充分释放这一潜力。