College of Horticulture and Plant Protection, Yangzhou University, Yangzhou, Jiangsu 225009, China.
College of Food Science and Engineering/Collaborative Innovation Center for Modern Grain Circulation and Safety/Key Laboratory of Grains and Oils Quality Control and Processing, Nanjing University of Finance and Economics, Nanjing 210023, China.
Comp Biochem Physiol Part D Genomics Proteomics. 2021 Sep;39:100869. doi: 10.1016/j.cbd.2021.100869. Epub 2021 Jun 19.
The diamondback moth, Plutella xylostella (Lepidoptera: Plutellidae) is a holometabolous insect that its cuticles must undergo the significant changes during the larval-pupal metamorphosis development. To elucidate these changes at molecular levels, RNA-seq analysis of cuticles from LLS (later fourth instar larval stage), PPS (prepupal stage) and PS (pupal stage) were performed in P. xylostella. In this paper, a total of 17,710 transcripts were obtained in the larval-pupal transition of P. xylostella, and out of which 2293 (881 up-regulated and 1412 down-regulated) and 2989 transcripts (2062 up-regulated and 927 down-regulated) were identified to be differentially expressed between LLS and PPS, as well as PPS and PS, respectively. The further GO and KEGG analysis of differentially expressed genes (DEGs) revealed that the 'structural constituent of cuticle', 'chitin metabolic process', 'chitin binding', 'tyrosine metabolism' and 'insect hormone biosynthesis' pathways were significantly enriched, indicating these pathways might be involved in the process of larval pupation in P. xylostella. Then, we found some genes that encoded cuticular proteins, chitinolytic enzymes, chitin synthesis enzymes, and cuticle tanning proteins changed their expression levels remarkably, indicating these genes might play important roles in the restruction (degradation and biosynthesis) of insect cuticles during the larval metamorphosis. Additionally, the significant changes in the mRNA levels of 20-hydroxyecdysone (20E) and juvenile hormone (JH) related genes suggested their crucial roles in regulating cuticle remodeling during the larval metamorphosis of P. xylostella. In conclusion, the present study provide us the comprehensive gene expression profiles to explore the molecular mechanisms of cuticle metamorphosis in P. xylostella, which laid a molecular basis to study roles of specific pathways and genes in insect development.
小菜蛾,Plutella xylostella(鳞翅目:Plutellidae)是一种完全变态昆虫,其表皮在幼虫-蛹变态发育过程中必须经历重大变化。为了在分子水平上阐明这些变化,我们对小菜蛾的 LLS(后期第四龄幼虫期)、PPS(预蛹期)和 PS(蛹期)的表皮进行了 RNA-seq 分析。在本文中,我们共获得了小菜蛾幼虫-蛹转变过程中的 17710 个转录本,其中 2293(881 个上调和 1412 个下调)和 2989 个转录本(2062 个上调和 927 个下调)分别在 LLS 和 PPS 以及 PPS 和 PS 之间差异表达。差异表达基因(DEGs)的进一步 GO 和 KEGG 分析表明,“表皮结构成分”、“几丁质代谢过程”、“几丁质结合”、“酪氨酸代谢”和“昆虫激素生物合成”途径显著富集,表明这些途径可能参与小菜蛾幼虫化蛹过程。然后,我们发现一些编码表皮蛋白、几丁质酶、几丁质合成酶和表皮鞣制蛋白的基因表达水平发生了显著变化,表明这些基因可能在昆虫表皮的重建(降解和生物合成)过程中发挥重要作用。此外,20-羟基蜕皮酮(20E)和保幼激素(JH)相关基因的 mRNA 水平的显著变化表明它们在调节小菜蛾幼虫变态过程中表皮重塑方面发挥着重要作用。总之,本研究为我们提供了全面的基因表达谱,以探讨小菜蛾表皮变态的分子机制,为研究特定途径和基因在昆虫发育中的作用奠定了分子基础。