Laboratoire de Biologie des Ligneux et des Grandes Cultures, INRA, Université d'Orléans, 45067, Orléans, France; Ecologie et Dynamique des Systèmes Anthropisés, EDYSAN UMR CNRS-UPJV 7058, Université de Picardie Jules Verne, Amiens, France.
Ecologie et Dynamique des Systèmes Anthropisés, EDYSAN UMR CNRS-UPJV 7058, Université de Picardie Jules Verne, Amiens, France.
Plant Sci. 2020 May;294:110468. doi: 10.1016/j.plantsci.2020.110468. Epub 2020 Mar 12.
Successful plant colonization by parasites requires the circumvention of host defenses, and sometimes a reprogramming of host metabolism, mediated by effector molecules delivered into the host. Using transcriptomic and enzymatic approaches, we characterized salivary glands and saliva of Phloeomyzus passerinii, an aphid exhibiting an atypical feeding strategy. Plant responses to salivary extracts of P. passerinii and Myzus persicae were assessed with poplar protoplasts of a susceptible and a resistant genotype, and in a heterologous Arabidopsis system. We predict that P. passerinii secretes a highly peculiar saliva containing effectors potentially interfering with host defenses, biotic stress signaling and plant metabolism, notably phosphatidylinositol phosphate kinases which seemed specific to P. passerinii. Gene expression profiles indicated that salivary extracts of M. persicae markedly affected host defenses and biotic stress signaling, while salivary extracts of P. passerinii induced only weak responses. The effector-triggered susceptibility was characterized by downregulations of genes involved in cytokinin signaling and auxin homeostasis. This suggests that P. passerinii induces an intracellular accumulation of auxin in susceptible host genotypes, which is supported by histochemical assays in Arabidopsis. This might in turn affect biotic stress signaling and contribute to host tissue manipulation by the aphid.
寄生虫成功定殖植物需要规避宿主防御,有时还需要通过递送到宿主中的效应分子来重新编程宿主代谢。我们使用转录组学和酶学方法,对表现出非典型取食策略的蚜虫 Phloeomyzus passerinii 的唾液腺和唾液进行了表征。我们用易感和抗性基因型的杨树原生质体以及异源拟南芥系统评估了 P. passerinii 和 Myzus persicae 的唾液提取物对植物的影响。我们预测 P. passerinii 分泌的唾液含有潜在干扰宿主防御、生物胁迫信号和植物代谢的特殊效应分子,特别是磷酸肌醇磷酸激酶,这些激酶似乎是 P. passerinii 所特有的。基因表达谱表明,M. persicae 的唾液提取物显著影响宿主防御和生物胁迫信号,而 P. passerinii 的唾液提取物仅引起较弱的反应。效应触发的易感性表现为与细胞分裂素信号和生长素稳态相关的基因下调。这表明 P. passerinii 在易感宿主基因型中诱导了生长素的细胞内积累,这一假设得到了拟南芥中组织化学测定的支持。这反过来可能会影响生物胁迫信号,并有助于蚜虫对宿主组织的操纵。