Education Ministry Key Laboratory of Integrated Management of Crop Diseases and Pests, College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China.
Gene. 2013 Dec 1;531(2):168-74. doi: 10.1016/j.gene.2013.09.034. Epub 2013 Sep 18.
Ecdysteroid hormone 20-hydroxyecdysone (20E) plays fundamental roles in insect development and reproduction, whereas the primary role of ecdysone (E) is the precursor for 20E. A cytochrome P450 monooxygenase (CYP), encoded by a Halloween gene Shade (Shd, cyp314a1), catalyzes the conversion of E into 20E in representative insect species in Diptera, Lepidoptera and Orthoptera. We describe here the cloning and characterization of LsShd in a hemipteran insect species, the small brown planthopper Laodelphax striatellus. LsSHD has five insect conserved P450 motifs, i.e., Helix-C, Helix-I, Helix-K, PERF and heme-binding motifs. Temporal expression pattern of LsShd was determined through the fourth-instar and the early fifth-instar stages by qPCR. LsShd showed two expression peaks in day 2 and day 5 fourth-instar nymphs, and two troughs in day 1 fourth and fifth instars. Dietary introduction of double-stranded RNA (dsRNA) of LsShd into nymphs successfully knocked down the target gene, decreased expression level of ecdysone receptor (LsEcR) gene, and caused nymphal lethality and delayed development. Ingestion of 20E did not increase LsShd expression level, but almost completely rescued LsEcR mRNA level, and relieved the negative effects on the survival and development in LsShd-dsRNA-exposed nymphs. In contrast, dietary introduction of E had little rescue effects. Thus, our data suggest that the ecdysteroidogenic pathway is conserved in insects, and LsSHD functions to regulate metamorphotic processes by converting E to 20E even in a hemipteran insect, L. striatellus.
蜕皮激素 20-羟基蜕皮酮(20E)在昆虫的发育和繁殖中起着基本作用,而蜕皮激素(E)的主要作用是 20E 的前体。一种细胞色素 P450 单加氧酶(CYP),由 Halloween 基因 Shade(Shd,cyp314a1)编码,在双翅目、鳞翅目和直翅目等代表性昆虫物种中催化 E 转化为 20E。我们在这里描述了半翅目昆虫小菜蛾中 Halloween 基因 Shade 的同源基因 LsShd 的克隆和特性。LsSHD 具有五个昆虫保守的 P450 基序,即螺旋-C、螺旋-I、螺旋-K、PERF 和血红素结合基序。通过 qPCR 在第四龄和早期第五龄阶段确定了 LsShd 的时间表达模式。LsShd 在第四天龄和第五天龄的若虫中表现出两个表达高峰,在第一天龄的第四和第五龄时出现两个低谷。向若虫中引入 LsShd 的双链 RNA(dsRNA)成功敲低了靶基因,降低了蜕皮激素受体(LsEcR)基因的表达水平,并导致若虫致死和发育延迟。摄入 20E 不会增加 LsShd 的表达水平,但几乎完全挽救了 LsEcR mRNA 水平,并缓解了 LsShd-dsRNA 暴露的若虫的生存和发育的负面影响。相比之下,摄入 E 几乎没有挽救作用。因此,我们的数据表明,蜕皮激素生物合成途径在昆虫中是保守的,即使在半翅目昆虫小菜蛾中,LsSHD 也通过将 E 转化为 20E 来调节变态过程。