Department of Biochemistry, Molecular Biology, Entomology, and Plant Pathology, Mississippi State University, Starkville, MS 39762, USA.
Department of Biology, Mississippi State University, Starkville, MS 39762, USA.
Viruses. 2023 Jul 29;15(8):1654. doi: 10.3390/v15081654.
The black soldier fly (, BSF) has emerged as an industrial insect of high promise because of its ability to convert organic waste into nutritious feedstock, making it an environmentally sustainable alternative protein source. As global interest rises, rearing efforts have also been upscaled, which is highly conducive to pathogen transmission. Viral epidemics have stifled mass-rearing efforts of other insects of economic importance, such as crickets, silkworms, and honeybees, but little is known about the viruses that associate with BSF. Although BSFs are thought to be unusually resistant to pathogens because of their expansive antimicrobial gene repertoire, surveillance techniques could be useful in identifying emerging pathogens and common BSF microbes. In this study, we used high-throughput sequencing data to survey BSF larvae and frass samples, and we identified two novel bunyavirus-like sequences. Our phylogenetic analysis grouped one in the family and the other with two unclassified bunyaviruses. We describe these putative novel viruses as BSF Nairovirus-like 1 and BSF uncharacterized bunyavirus-like 1. We identified candidate segments for the full BSF Nairovirus-like 1 genome using a technique based on transcript co-occurrence and only a partial genome for BSF uncharacterized bunyavirus-like 1. These results emphasize the value of routine BSF colony surveillance and add to the number of viruses associated with BSF.
黑腹果蝇(BSF)因其将有机废物转化为营养饲料的能力而成为一种有前途的工业昆虫,是一种环境可持续的替代蛋白质来源。随着全球兴趣的增加,养殖规模也在扩大,这非常有利于病原体的传播。病毒流行已经扼杀了其他具有经济重要性的昆虫(如蟋蟀、家蚕和蜜蜂)的大规模养殖,但与 BSF 相关的病毒知之甚少。尽管 BSF 因其广泛的抗菌基因库而被认为对病原体具有异常的抵抗力,但监测技术可用于识别新出现的病原体和常见的 BSF 微生物。在这项研究中,我们使用高通量测序数据调查了 BSF 幼虫和粪便样本,并鉴定出了两种新型布尼亚病毒样序列。我们的系统发育分析将一种归入科,另一种与两种未分类的布尼亚病毒聚类在一起。我们将这些假定的新型病毒描述为 BSF 内罗病毒样 1 和 BSF 未鉴定的布尼亚病毒样 1。我们使用基于转录共现的技术和 BSF 未鉴定的布尼亚病毒样 1 的部分基因组,鉴定了 BSF 内罗病毒样 1 全基因组的候选片段。这些结果强调了对常规 BSF 群体进行监测的重要性,并增加了与 BSF 相关的病毒数量。