State Key Laboratory of Resource Insects, Southwest University, Chongqing, China.
Key Laboratory of Sericultural Biology and Genetic Breeding, Ministry of Agriculture and Rural Affairs, Southwest University, Chongqing, China.
Pest Manag Sci. 2024 Feb;80(2):376-387. doi: 10.1002/ps.7767. Epub 2023 Oct 17.
The reproductive system plays a crucial role in insect survival, reproduction and species specificity. Understanding the molecular mechanisms underlying reproductive organogenesis contributes to improving the efficiency of sterile insect technique marked by an eco-friendly pest management strategy. Lepidoptera is one of the largest orders of insects, most of which are major pests in agriculture and forestry. Our study aimed to screen the genes responsible for reproductive organogenesis and unravel the mechanism underlying female reproductive organ defects.
Morphological investigation of female reproductive organs showed a defective connection between oviductus geminus and oviductus communis on the second day of pupa (P2) in Speckled mutant silkworm. RNA_Seq identified a total of 18 049 transcripts that were expressed in the P2 female internal reproductive organs without ovary in Spc/+ compared to + /+ . Differential expression analysis identified 312 up-regulated genes and 221 down-regulated genes in Spc/+. KEGG analysis identified 44 significantly enriched pathways. The results of qRT-PCR performed on 33 genes significantly matched the outcomes of the RNA_Seq. Dysfunction of Cyclin B3 resulted in a defective connection of the oviductus communis with the ovariole, dysfunction of oogenesis, and a petite body. Moreover, homozygous recessive lethality of Cyclin B3/Cyclin B3 occurred during early embryogenesis.
Our results suggest that Cyclin B3 is a pleiotropic functional gene that regulates early embryogenesis, oogenesis, development, and female reproductive organogenesis. These results showed that Cyclin B3 has significant effects on lepidopteran mortality, growth, and reproductive physiology, which might be considered a novel and potentially eco-friendly target for lepidopteran pest management. © 2023 Society of Chemical Industry.
生殖系统在昆虫的生存、繁殖和物种特异性中起着至关重要的作用。了解生殖器官发生的分子机制有助于提高以生态友好型害虫管理策略为标志的不育昆虫技术的效率。鳞翅目是昆虫中最大的目之一,其中大多数是农业和林业的主要害虫。我们的研究旨在筛选与生殖器官发生有关的基因,并揭示雌性生殖器官缺陷的机制。
对雌性生殖器官的形态学研究表明,在蛹期第 2 天(P2),斑纹突变家蚕的双卵管与卵管之间的连接出现缺陷。RNA_Seq 鉴定出 Spc/+ 中 P2 期无卵巢的雌性内部生殖器官中共有 18049 个转录本表达,与 +/+ 相比。差异表达分析鉴定出 Spc/+ 中有 312 个上调基因和 221 个下调基因。KEGG 分析鉴定出 44 个显著富集的途径。对 33 个基因进行 qRT-PCR 的结果与 RNA_Seq 的结果非常匹配。Cyclin B3 功能障碍导致卵管与卵巢小管的连接出现缺陷、卵子发生功能障碍和体型小。此外,Cyclin B3/Cyclin B3 的纯合隐性致死作用发生在早期胚胎发生期间。
我们的结果表明,Cyclin B3 是一个多功能基因,调节早期胚胎发生、卵子发生、发育和雌性生殖器官发生。这些结果表明,Cyclin B3 对鳞翅目昆虫的死亡率、生长和生殖生理有显著影响,可能被认为是鳞翅目害虫管理的一个新的、潜在的生态友好型目标。 © 2023 化学工业协会。