Key Laboratory of Bio-Pesticide Innovation and Application of Guangdong Province, South China Agricultural University, Guangzhou 510642, China.
MS Swaminathan School of Agriculture, Centurion University of Technology and Management, Odisha 761200, India.
Pestic Biochem Physiol. 2022 Mar;182:105029. doi: 10.1016/j.pestbp.2021.105029. Epub 2021 Dec 30.
Fushi-tarazu factor 1 (FTZF1) is an ecdysone-inducible transcription factor that plays a vital role during the metamorphosis in insects. In this study, we functionally characterized HvFTZ-F1 in H. vigintioctopunctata, a dreadful solanaceous crop pest, by using a dietary RNA interference technique. The HvFTZ-F1 expression levels were elevated in the 1st and 2nd-instars before molting and declined immediately after ecdysis. The HvFTZ-F1 silencing led to high mortality in the 1st instars, while the expression of the osmosis-regulative gene, HvAQPAn.G, was significantly increased in the 1st instars. HvFTZ-F1 silencing downregulated the Halloween and 20E-related genes, decreased the ecdysteroids titer, suppressed the expression of pigmentation-related genes, and reduced the catecholamines titer. In the 4th instars, HvFTZ-F1 silencing caused 100% mortality by arresting the development at the prepupal stage and preventing new abdominal cuticle formation. In the female adults, HvFTZ-F1 silencing caused an evident decrease in fecundity, prolonged the pre-oviposition period, reduced the number of eggs and hatching rate, severely atrophied the ovaries. Moreover, the 20E-related genes and the dopamine synthesis genes were suppressed in the dsHvFTZ-F1-treated females. Overall, our results revealed that HvFTZ-F1 regulates ecdysis, pupation, and reproduction in H. vigintioctopunctata, thereby could be a promising molecular target for the development of RNAi-based biopesticides to control H. vigintioctopunctata.
蜕皮激素诱导因子 1(FTZF1)是一种蜕皮激素诱导的转录因子,在昆虫变态过程中发挥着至关重要的作用。在本研究中,我们通过膳食 RNA 干扰技术对茄科作物的可怕害虫烟青虫中的 HvFTZ-F1 进行了功能表征。HvFTZ-F1 的表达水平在蜕皮前的 1 龄和 2 龄期升高,并在蜕皮后立即下降。HvFTZ-F1 沉默导致 1 龄幼虫死亡率升高,而渗透调节基因 HvAQPAn.G 的表达在 1 龄幼虫中显著增加。HvFTZ-F1 沉默下调了 Halloween 和 20E 相关基因的表达,降低了蜕皮甾酮的含量,抑制了与色素沉着相关基因的表达,降低了儿茶酚胺的含量。在 4 龄幼虫中,HvFTZ-F1 沉默导致 100%的幼虫在预蛹期停止发育,阻止新的腹部表皮形成。在雌性成虫中,HvFTZ-F1 沉默导致其产卵量明显减少,产卵前期延长,产卵数量和孵化率降低,卵巢严重萎缩。此外,dsHvFTZ-F1 处理的雌性烟青虫中 20E 相关基因和多巴胺合成基因的表达受到抑制。总体而言,我们的研究结果表明,HvFTZ-F1 调控烟青虫的蜕皮、化蛹和繁殖,因此可能成为基于 RNAi 的生物农药开发的有前途的分子靶标,用于控制烟青虫。