State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Elife. 2023 Mar 30;12:e84621. doi: 10.7554/eLife.84621.
Many pathogens rely on their insect vectors for transmission. Such pathogens are under selection to improve vector competence for their transmission by employing various tissue or cellular responses of vectors. However, whether pathogens can actively cause hypoxia in vectors and exploit hypoxia responses to promote their vector competence is still unknown. Fast dispersal of pinewood nematode (PWN), the causal agent for the destructive pine wilt disease and subsequent infection of pine trees, is characterized by the high vector competence of pine sawyer beetles ( spp.), and a single beetle can harbor over 200,000 PWNs in its tracheal system. Here, we demonstrate that PWN loading activates hypoxia in tracheal system of the vector beetles. Both PWN loading and hypoxia enhanced tracheal elasticity and thickened the apical extracellular matrix (aECM) of the tracheal tubes while a notable upregulated expression of a resilin-like mucin protein Muc91C was observed at the aECM layer of PWN-loaded and hypoxic tracheal tubes. RNAi knockdown of reduced tracheal elasticity and aECM thickness under hypoxia conditions and thus decreasing PWN loading. Our study suggests a crucial role of hypoxia-induced developmental responses in shaping vector tolerance to the pathogen and provides clues for potential molecular targets to control pathogen dissemination.
许多病原体依赖其昆虫媒介进行传播。这些病原体受到选择的压力,以通过利用媒介的各种组织或细胞反应来提高其传播能力。然而,病原体是否能够主动引起媒介的缺氧,并利用缺氧反应来促进其媒介能力,目前尚不清楚。松材线虫(PWN)快速传播,是破坏性的松材萎蔫病的病原体,并随后感染松树,其特征是松材线虫( spp.)的高媒介能力,一只甲虫的气管系统中可携带超过 20 万条松材线虫。在这里,我们证明了 PWN 加载会激活载体甲虫的气管系统中的缺氧。PWN 加载和缺氧都增强了气管的弹性,增加了气管管腔的顶端细胞外基质(aECM)的厚度,而在 PWN 加载和缺氧的气管管腔的 aECM 层中观察到明显上调的弹性蛋白样粘蛋白蛋白 Muc91C 的表达。在缺氧条件下,RNAi 敲低 减少了气管的弹性和 aECM 的厚度,从而减少了 PWN 的加载。我们的研究表明,缺氧诱导的发育反应在塑造载体对病原体的耐受性方面起着至关重要的作用,并为控制病原体传播的潜在分子靶标提供了线索。