a School of Veterinary and Life Sciences, Murdoch University, Murdoch, WA 6150, Australia.
b Key Laboratory of Forest Disaster Warning and Control of Yunnan Province, Southwest Forestry University, Kunming 650224, China.
Genome. 2017 Dec;60(12):1037-1044. doi: 10.1139/gen-2017-0086. Epub 2017 Aug 21.
Insects utilize sugars as their essential energy and nutrient sources; therefore, the sense of sugar detection plays a critical role in insect behaviours. Previously, using genomic and transcriptomic approaches, we identified eight putative sugar gustatory receptor (GR) genes from the cotton bollworm Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae). Here, we further validated these annotated sugar receptor genes (HarmGr4-HarmGr8 and HarmGr10-HarmGr12) and found HarmGr10 may be a pseudogene carrying a stop codon in the open reading frame. Sequence alignment revealed H. armigera sugar GR sequences are conserved at C-terminus and phylogenetic analysis showed that insect sugar GRs have evolved in a family-specific manner. Interestingly, all eight H. armigera sugar GRs are localized in a tandem array on the same scaffold of the genome. In silico gene expression and reverse transcription (RT)-PCR analysis showed that HarmGr10 is specifically expressed in male adult testes while HarmGr11 is specifically expressed in female adult ovaries, suggesting H. armigera sugar GRs may be involved in reproduction-related functions. This study improves our knowledge on insect sugar receptors and gustatory systems.
昆虫利用糖作为其必需的能量和营养来源;因此,糖觉在昆虫行为中起着关键作用。先前,我们使用基因组和转录组方法从棉铃虫(Helicoverpa armigera)(鳞翅目:夜蛾科)中鉴定了 8 个推定的糖味觉受体(GR)基因。在这里,我们进一步验证了这些注释的糖受体基因(HarmGr4-HarmGr8 和 HarmGr10-HarmGr12),并发现 HarmGr10 可能是一个带有终止密码子的假基因在开放阅读框中。序列比对显示,棉铃虫糖 GR 序列在 C 末端保守,系统发育分析表明昆虫糖 GR 以家族特异性的方式进化。有趣的是,所有 8 个棉铃虫糖 GR 都位于基因组同一支架上的串联排列中。计算机基因表达和逆转录(RT)-PCR 分析表明,HarmGr10 特异性表达于雄性成虫睾丸,而 HarmGr11 特异性表达于雌性成虫卵巢,表明棉铃虫糖 GR 可能参与与生殖相关的功能。本研究提高了我们对昆虫糖受体和味觉系统的认识。