Department of Entomology, Institute of Plant Protection, Agricultural Research Organization, The Volcani Centre, Rishon LeZion, Israel.
Institute of Postharvest and Food Sciences, Agricultural Research Organization, The Volcani Centre, Rishon LeZion, Israel.
Insect Biochem Mol Biol. 2022 Sep;148:103817. doi: 10.1016/j.ibmb.2022.103817. Epub 2022 Aug 2.
To understand the role of two Niemann-Pick type C2 (NPC2) transcripts, Vd40090 (NP1) and Vd74517 (NP5), in the chemosensing pathway of Varroa destructor, we evaluated the impact of NP5 silencing on mites behavior and compared the effect of silencing of either transcripts on the interaction between chemosensory transcripts. In contrast to silencing NP1, which reduced feeding and reproduction by the mite (Nganso et al., 2021), silencing of NP5 reduced significantly the host reaching ability, but it did not affect the feeding on nurse bee. However, silencing of either transcript changed dramatically the co-expression patterns among the putative chemosensory genes, binding proteins and receptors. The results suggest the role of gustatory receptors in the detection of long-range chemical cues in the chemosensory cascade of the Varroa mite.
为了理解 NPC2 基因(NP1 和 NP5)在瓦螨化学感应途径中的作用,我们评估了 NP5 沉默对瓦螨行为的影响,并比较了沉默这两个转录本对化学感应转录本相互作用的影响。与沉默 NP1 (Nganso 等人,2021 年)降低瓦螨的取食和繁殖能力不同,沉默 NP5 显著降低了瓦螨寻找宿主的能力,但不影响其对蜜源蜂的取食。然而,沉默任一转录本都会极大地改变假定的化学感受基因、结合蛋白和受体之间的共表达模式。研究结果表明,味觉受体在瓦螨化学感应级联反应中对远距离化学线索的检测中发挥作用。