State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing, People's Republic of China.
Proc Biol Sci. 2022 Oct 26;289(1985):20221427. doi: 10.1098/rspb.2022.1427.
Gustatory systems in phytophagous insects are used to perceive feeding stimulants and deterrents, and are involved in insect decisions to feed on particular plants. During the process, gustatory receptors (Grs) can recognize diverse phytochemicals and provide a molecular basis for taste perception. The silkworm, as a representative Lepidoptera species, has developed a strong feeding preference for mulberry leaves. The mulberry-derived flavonoid glycoside, isoquercetin, is required to induce feeding behaviours. However, the corresponding Grs for isoquercetin and underlying molecular mechanisms remain unclear. In this study, we used molecular methods, voltage clamp recordings and feeding assays to identify silkworm BmGr63, which was tuned to isoquercetin. The use of qRT-PCR confirmed that was highly expressed in the mouthpart of fourth and fifth instar larvae. Functional analysis showed that oocytes expressing from the 'bitter' clade responded to mulberry extracts. Among 20 test chemicals, BmGr63 specifically recognized isoquercetin. The preference for isoquercetin was not observed in knock-down groups. The tuning between BmGr63 and isoquercetin has been demonstrated, which is meaningful to explain the silkworm-mulberry feeding mechanism from molecular levels and thus provides evidence for further feeding relationship studies between phytophagous insects and host plants.
植食性昆虫的味觉系统用于感知取食刺激物和抑制剂,并参与昆虫决定取食特定植物。在这个过程中,味觉受体(Grs)可以识别多种植物化学物质,并为味觉感知提供分子基础。家蚕作为鳞翅目昆虫的代表,对桑叶表现出强烈的取食偏好。桑树衍生的类黄酮糖苷槲皮素需要诱导取食行为。然而,相应的槲皮素 Grs 及其潜在的分子机制尚不清楚。在这项研究中,我们使用分子方法、电压钳记录和取食实验来鉴定对异槲皮苷有响应的家蚕 BmGr63。实时荧光定量 PCR(qRT-PCR)的使用证实了 在第四和第五龄幼虫的口器中高度表达。功能分析表明,来自“苦味”分支的表达 的卵母细胞对桑提取物有反应。在 20 种测试化学物质中,BmGr63 特异性识别异槲皮苷。在 BmGr63 敲低组中没有观察到对异槲皮苷的偏好。BmGr63 与异槲皮苷之间的调谐已被证明,这对于从分子水平解释家蚕-桑树取食机制具有重要意义,并为进一步研究植食性昆虫与宿主植物之间的取食关系提供了证据。