Li Jiahao, Xia Mulin, Huang Songyao, Zhang Guangxie, Tang Yuncheng, Xu Pingzhen, Zhang Meirong
Jiangsu Key Laboratory of Sericultural and Animal Biotechnology, School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212100, China.
Key Laboratory of Silkworm and Mulberry Genetic Improvement, Ministry of Agriculture and Rural Affairs, Sericultural Scientific Research Center, Chinese Academy of Agricultural Sciences, Zhenjiang 212100, China.
Insects. 2025 Mar 11;16(3):291. doi: 10.3390/insects16030291.
Nutrients needed to fuel the processes of growth, development, and reproduction, and to form the proteins in the cocoon, are derived from the larval stage. The amount of leaf ingested in the fifth instar silkworm larvae accounted for about 85% of the whole instars. Nutrients were absorbed following digestion in the digestive tube. We previously reported the successful identification of 227 silkworm larval digestive juice proteins, wherein most of the genes of the identified proteins had high expression features in the midgut, and 30 of them were midgut-specific genes. We chose 30 genes and detected their expression characteristics in the digestive tube, and investigated the developmental expression profiles in the midgut of silkworm larvae from the day-3 fourth instar to the wandering period, as well as the expression dynamics after the 20-hydroxyecdysone (20E) treatment. The genes were specifically expressed in the larval digestive tube. The expression of was activated, and that of the other 29 genes were suppressed by 20E. The ecdysteroid ingestion dramatically suppressed the protease activity in the larval midgut, which revealed that 20E may also directly affect digestive activity. The present study is the first to demonstrate that the expression control mechanism of these genes is primarily hormonal regulation, which contributes to furthering our understanding of the mechanism of the genes expressed in the larval digestive tube during development.
用于支持生长、发育和繁殖过程以及形成蚕茧中蛋白质所需的营养物质来自幼虫阶段。五龄家蚕幼虫摄入的桑叶量约占整个龄期的85%。营养物质在消化管中消化后被吸收。我们之前报道成功鉴定了227种家蚕幼虫消化液蛋白,其中大多数已鉴定蛋白的基因在中肠具有高表达特征,且其中30个是中肠特异性基因。我们选择了30个基因,检测它们在消化管中的表达特征,并研究了家蚕幼虫从四龄第3天到化蛹前阶段中肠的发育表达谱,以及20-羟基蜕皮酮(20E)处理后的表达动态。这些基因在幼虫消化管中特异性表达。其中一个基因的表达被激活,而其他29个基因的表达被20E抑制。蜕皮甾类的摄入显著抑制了幼虫中肠的蛋白酶活性,这表明20E可能也直接影响消化活性。本研究首次证明这些基因的表达调控机制主要是激素调节,这有助于加深我们对发育过程中幼虫消化管中基因表达机制的理解。