Yunnan Academy of Biodiversity, Southwest Forestry University, Kunming, 650224, China.
School of Life Sciences, Yunnan University, Kunming, 650091, China.
Sci Rep. 2021 Feb 25;11(1):4662. doi: 10.1038/s41598-021-84104-0.
The neuropeptide natalisin (NTL) has been determined to play essential roles in reproduction in two Diptera and one Coleoptera species. Whether NTL has similar or even different functions in Lepidoptera remains to be determined. Here, we cloned the NTL transcript in the common cutworm moth Spodoptera litura. This transcript encodes a 438-amino acid protein. Twelve putative Sl-NTL neuropeptides were defined by cleavage sites. These NTL peptides share a DDPFWxxRamide C-terminal motif. The expressions of Sl-NTL is low during the egg and larval stages, which increased to a higher level during the pupal stage, and then reached the maximum during the adult stage. Moreover, the expression pattern during the pupal stage is similar between sexes while during the adult stage, it is dimorphic. To explore the function of Sl-NTL and assess its potential as a target for pest control, we knocked down the expression of Sl-NTL in both sexes by using bacteria-mediated RNAi. This technique significantly down regulated (reduced up to 83%) the expression of Sl-NTL in both sexes. Knocking down Sl-NTL expression did not significantly affect its development, survival and morphology but significantly reduced adults' reproductive behavior (including female calling, male courtship, mating and remating patterns and rates) and reproductive output (offspring gain reduced more than 70%).
神经肽 Natalisin(NTL)已被确定在两种双翅目和一种鞘翅目物种的生殖中发挥重要作用。NTL 是否在鳞翅目昆虫中具有相似甚至不同的功能仍有待确定。在这里,我们在斜纹夜蛾 Spodoptera litura 中克隆了 NTL 转录本。该转录本编码一个 438 个氨基酸的蛋白质。通过切割位点定义了 12 个推定的 Sl-NTL 神经肽。这些 NTL 肽共享一个 DDPFWxxRamide C 末端基序。Sl-NTL 的表达在卵期和幼虫期较低,在蛹期升高到更高水平,然后在成虫期达到最大值。此外,在蛹期的表达模式在两性之间相似,而在成虫期则是二态性的。为了探索 Sl-NTL 的功能并评估其作为害虫控制目标的潜力,我们使用细菌介导的 RNAi 技术在两性中敲低了 Sl-NTL 的表达。该技术显著下调了两性中 Sl-NTL 的表达(降低高达 83%)。敲低 Sl-NTL 表达不会显著影响其发育、生存和形态,但会显著降低成虫的生殖行为(包括雌性叫声、雄性求偶、交配和再交配模式和频率)和生殖产出(后代收益减少超过 70%)。