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Orco 介导粉虱烟粉虱的嗅觉行为和产卵。

Orco mediates olfactory behavior and oviposition in the whitefly Bemisia tabaci.

机构信息

College of Plant Protection, Yangzhou University, Yangzhou 225009, PR China; Institute of Plant Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, PR China.

Institute of Plant Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, PR China.

出版信息

Pestic Biochem Physiol. 2024 Feb;199:105773. doi: 10.1016/j.pestbp.2024.105773. Epub 2024 Jan 20.

Abstract

Chemical signals play a central role in mediating insect feeding and reproductive behavior, and serve as the primary drivers of the insect-plant interactions. The detection of chemical signals, particularly host plant volatiles, relies heavily on the insect's complex olfactory system. The Bemisia tabaci cryptic species complex is a group of globally important whitefly pests of agricultural and ornamental crops that have a wide range of host plants, but the molecular mechanism of their host plant recognition is not yet clear. In this study, the odorant coreceptor gene of the Whitefly MEAM1 cryptic species (BtOrco) was cloned. The coding sequence of BtOrco was 1413 bp in length, with seven transmembrane structural domains, and it was expressed primarily in the heads of both male and female adult whiteflies, rather than in other tissues. Knockdown of BtOrco using transgenic plant-mediated RNAi technology significantly inhibited the foraging behavior of whiteflies. This inhibition was manifested as a reduced percentage of whiteflies responding to the host plant and a prolonged foraging period. Moreover, there was a substantial suppression of egg-laying activity among adult female whiteflies. These results indicate that BtOrco has the potential to be used as a target for the design of novel active compounds for the development of environmentally friendly whitefly control strategies.

摘要

化学信号在介导昆虫的取食和生殖行为中起着核心作用,并作为昆虫-植物相互作用的主要驱动因素。化学信号的检测,特别是寄主植物挥发物,高度依赖于昆虫复杂的嗅觉系统。烟粉虱隐种复合群是一组全球性重要的农业和观赏作物的粉虱害虫,它们有广泛的寄主植物,但它们对寄主植物识别的分子机制尚不清楚。在这项研究中,烟粉虱 MEAM1 隐种的气味受体核心基因(BtOrco)被克隆。BtOrco 的编码序列长度为 1413bp,具有七个跨膜结构域,主要在雄性和雌性成虫的头部表达,而不是在其他组织中表达。利用转基因植物介导的 RNAi 技术敲低 BtOrco,显著抑制了粉虱的觅食行为。这种抑制表现为对寄主植物反应的白蝇百分比降低和觅食期延长。此外,成年雌性白蝇的产卵活动也受到了很大的抑制。这些结果表明,BtOrco 有可能成为设计新型活性化合物的目标,以开发环保型粉虱控制策略。

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