昆虫学报 ›› 2021, Vol. 64 ›› Issue (9): 1020-1030.doi: 10.16380/j.kcxb.2021.09.002

• 研究论文 • 上一篇    下一篇

沙葱萤叶甲成虫不同夏滞育阶段的转录组分析(英文)

李艳艳1,#, 陈龙1,2,#, 李玲1, 谭瑶1, 庞保平1,*   

  1. (1. 内蒙古农业大学草原昆虫研究中心, 呼和浩特 010020; 2. 河套学院农学系, 内蒙古巴彦淖尔 015000)
  • 出版日期:2021-09-20 发布日期:2021-09-03

Analysis of the transcriptomes of Galeruca daurica  (Coleoptera: Chrysomelidae) adults at different summer diapause stages (In English)

LI Yan-Yan1,#, CHEN Long1,2,#, LI Ling1, TAN Yao1, PANG Bao-Ping1,*    

  1. (1. Research Center for Grassland Entomology, Inner Mongolia gricultural University, Hohhot 010020, China;  2. Department of Agronomy, Hetao College, Bayannoer, Inner Mongolia 015000, China)
  • Online:2021-09-20 Published:2021-09-03

摘要:

【目的】本研究旨在揭示内蒙古草原新害虫沙葱萤叶甲Galeruca daurica专性夏滞育相关的重要基因以及代谢通路。【方法】应用RNA-Seq技术,对沙葱萤叶甲成虫不同夏滞育阶段[滞育前期(PD)、滞育期(D)及滞育后期(TD)]进行转录组测序、分析及基因功能预测,基于RNA-Seq数据筛选夏滞育不同阶段差异表达基因;利用qPCR对基于RNA-Seq数据筛选的10个差异表达基因的表达水平进行验证。【结果】从9个文库中获得202 770 198 clean reads,将12 078 060条转录本组装获得82 292 条unigene,平均长度为783.59 bp,N50为1 545 bp。沙葱萤叶甲D vs PD和TD vs D 比较组分别有2 395(2 119上调和277下调)和62(59上调和3下调)个差异基因。KEGG分析表明,D vs PD和TD vs D比较组差异表达基因分别显著富集于糖孝解/糖异生通路和脂肪酸生物合成通路;此外,许多与钙离子信号转导相关的基因在滞育期间差异表达。10个差异表达基因的qPCR分析表明,RNA-Seq与qPCR结果高度一致。【结论】糖孝解/糖异生、脂肪酸生物合成及钙离子信号通路可能在沙葱萤叶甲滞育调节中起着重要的作用。本研究为进一步研究沙葱萤叶甲成虫专性夏滞育的分子机理奠定了基础。

关键词: 沙葱萤叶甲, 夏滞育, 专性滞育, RNA-Seq

Abstract:

【Aim】 This study aims to explore the crucial genes and metabolic pathways involved in obligatory summer diapause in Galeruca daurica, a new pest with great outbreak in the Inner Mongolia grasslands, northern China. 【Methods】 Using RNA-Seq, we performed sequencing, transcriptional profiling and functional prediction for G. daurica adults at different summer diapause stages, i.e. pre-diapause (PD), diapause (D) and post-iapause (TD), and screened differentially expressed genes (DEGs) at different summer diapause stages based on the RNA-Seq data. The expression levels of ten DEGs screened based on the RNA-Seq data were verified by qPCR. 【Results】 A total of 202 770 198 clean reads from nine libraries were filtered, and 12 078 060 transcripts were assembled into 82 292 unigenes with an average length of 783.59 bp and a N50 of 1 545 bp. The 2 395 (2 119 up-regulated and 277 down-regulated) and 62 (59 up-regulated and 3 down-regulated) DEGs were identified in the D vs PD and TD vs D omparison groups, respectively. The KEGG analysis revealed that the glycolysis/gluconeogenesis and fatty acid biosynthesis pathways were significantly enriched in the D vs PD and TD vs D comparison groups, respectively. Additionally, many DEGs related to the Ca2+ signaling were differentially expressed during diapause. Finally, the expressional analysis result by qPCR for ten DEGs showed a high consistency between qPCR and RNA-Seq results. 【Conclusion】 The glycolysis/gluconeogenesis, fatty acid biosynthesis, and Ca2+signaling pathways may play an important role in diapause regulation of G. daurica. This study establishes a foundation for future studies on the molecular mechanism underlying obligatory summer diapause in G. daurica.

Key words: Galeruca daurica, summer diapause, obligatory diapause, RNA-Seq