Biology Centre of the Czech Academy of Sciences, Institute of Entomology, Ceske Budejovice, Czech Republic.
Faculty of Science, University of South Bohemia, Ceske Budejovice, Czech Republic.
BMC Genomics. 2024 May 14;25(1):472. doi: 10.1186/s12864-024-10381-4.
Caddisfly larvae produce silk containing heavy and light fibroins, similar to the silk of Lepidoptera, for the construction of underwater structures. We analyzed the silk of Limnephilus lunatus belonging to the case-forming suborder Integripalpia. We analyzed the transcriptome, mapped the transcripts to a reference genome and identified over 80 proteins using proteomic methods, and checked the specificity of their expression. For comparison, we also analyzed the transcriptome and silk proteome of Limnephilus flavicornis. Our results show that fibroins and adhesives are produced together in the middle and posterior parts of the silk glands, while the anterior part produces enzymes and an unknown protein AT24. The number of silk proteins of L. lunatus far exceeds that of the web-spinning Plectrocnemia conspersa, a previously described species from the suborder Annulipalpia. Our results support the idea of increasing the structural complexity of silk in rigid case builders compared to trap web builders.
水虿幼虫为了建造水下结构会分泌一种富含重链和轻链丝蛋白的丝,这种丝类似于鳞翅目昆虫的丝。我们分析了结鞘亚目(Integripalpia)的宽钩褶胸蜉蝣属(Limnephilus)幼虫的丝。我们分析了转录组,将转录本映射到参考基因组上,并使用蛋白质组学方法鉴定了 80 多种蛋白质,还检查了它们表达的特异性。为了进行比较,我们还分析了 Limnephilus flavicornis 的转录组和丝蛋白组。研究结果表明,丝腺的中后部同时分泌丝纤维和黏合剂,而前部则分泌酶和一种未知蛋白 AT24。宽钩褶胸蜉蝣属的丝蛋白数量远远超过此前描述的节片联目(Annulipalpia)的网蜉属(Plectrocnemia conspersa),这表明在硬壳建造者中,丝的结构复杂性在增加。