College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, China.
College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, China; Frontiers Science Center for Animal Breeding and Sustainable Production, Wuhan, China.
Bioresour Technol. 2024 Dec;414:131630. doi: 10.1016/j.biortech.2024.131630. Epub 2024 Oct 12.
Elucidating the influence of straw structure and component on the feeding efficacy of yellow mealworm is pivotal for improving insect protein production from straw. This research utilized four distinct types of straws-water hyacinth straw (WHS), corn straw (CS), rape straw (RAS), and rice straw (RIS)-as the sole substrate for larvae. Results indicated that the straw utilization rate and fresh larval weight gain rate followed the order of WHS > CS > RAS > RIS. Analysis of straw structural characteristics demonstrated that decreasing straw hardness and cellulose crystallinity, while enhancing straw chewability, facilitated the ingestion of larvae. Feeding efficiency of yellow mealworm was positively correlated with the hemicellulose and crude protein content, and inversely correlated with lignin content in the straw. Additionally, the structural characteristics and components of straw significantly influenced the composition of the gut microbiota. These results offer valuable insights for optimizing yellow mealworm feeding on straw.
阐明秸秆结构和成分对黄粉虫采食效率的影响,对于提高秸秆昆虫蛋白生产至关重要。本研究以水葫芦秸秆(WHS)、玉米秸秆(CS)、油菜秸秆(RAS)和水稻秸秆(RIS)这四种不同类型的秸秆作为幼虫的唯一底物。结果表明,秸秆利用率和幼虫鲜重增长率的顺序为 WHS>CS>RAS>RIS。对秸秆结构特征的分析表明,降低秸秆硬度和纤维素结晶度,同时增强秸秆的可咀嚼性,有利于幼虫取食。黄粉虫的采食效率与秸秆中的半纤维素和粗蛋白含量呈正相关,与木质素含量呈负相关。此外,秸秆的结构特征和成分显著影响肠道微生物群落的组成。这些结果为优化黄粉虫对秸秆的采食提供了有价值的见解。