Influence of temperature variation on gene expression and cocoon production in Bombyx mori Linnaeus, 1758 (Lepidoptera: Bombycidae)

家蚕 家蚕科 龄期 生殖器鳞翅目 生物 丝绸 幼虫 转录组 动物科学 基因 基因表达 植物 遗传学 计算机科学 操作系统
作者
Thayná Bisson Ferraz Lopes,Rachel Colauto Milanezi Aguiar,Rui Fragassi Souza,Cristianne Cordeiro Nascimento,Jaqueline Fernanda Dionísio,Mário Mantovani,Simone Cristine Semprebon,Renata da Rosa
出处
期刊:Comparative Biochemistry and Physiology Part D: Genomics and Proteomics [Elsevier BV]
卷期号:47: 101111-101111 被引量:1
标识
DOI:10.1016/j.cbd.2023.101111
摘要

Silkworms (Bombyx mori) are lepidopterans of economic importance for global silk production. However, factors that directly affect the yield and quality of silkworm cocoon production, such as diseases and temperature fluctuations, cause great economic losses. Knowing how they respond to rearing temperature during the most critical stage of their life cycle (i.e., fifth instar) could provide information on their adaptation and improve silk production. In the current work, we analyzed transcriptional data from two groups of B. mori that were reared at 26 °C and 34 °C throughout the fifth instar. The silkworms and cocoons were weighed. In total, 3115 transcripts were differentially expressed (DE; including 1696 down-regulated and 1419 up-regulated) among the 29,157 sequences found by transcriptome assembly. We emphasize the genes associated with immunological response, transcription factors, silk biosynthesis, and heat shock proteins, among the DE transcripts in response to the temperature conditions. Silkworms reared at 34 °C presented a reduced mean body weight (−0.944 g in comparison to the 26 °C group), which had a direct impact on the weight of cocoons formed and the silk conversion rate. These changes were statistically significant when compared to silkworms reared at 26 °C. Mortality rates (6 and 9 %, at 26 °C and 34 °C, respectively) were similar to those obtained in breeding fields. The findings provide information on the biological processes involved in the temperature response mechanism of silkworms, as well as information that may be used in future climatization processes at rearing facilities and in breeding for improved thermotolerance.

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