Université de Lorraine, INRAE, UMR 1136 Interactions Arbres-Microorganismes, Centre INRAE Grand Est-Nancy, Champenoux, 54280, France.
Lehrstuhl für Pharmazeutische Biologie, Julius-von-Sachs-Institut für Biowissenschaften, Julius-Maximilians-Universität Würzburg, Julius-von-Sachs-Platz 2, Würzburg, 97082, Deutschland.
New Phytol. 2024 Apr;242(2):658-674. doi: 10.1111/nph.19609. Epub 2024 Feb 20.
The jasmonic acid (JA) signalling pathway plays an important role in the establishment of the ectomycorrhizal symbiosis. The Laccaria bicolor effector MiSSP7 stabilizes JA corepressor JAZ6, thereby inhibiting the activity of Populus MYC2 transcription factors. Although the role of MYC2 in orchestrating plant defences against pathogens is well established, its exact contribution to ECM symbiosis remains unclear. This information is crucial for understanding the balance between plant immunity and symbiotic relationships. Transgenic poplars overexpressing or silencing for the two paralogues of MYC2 transcription factor (MYC2s) were produced, and their ability to establish ectomycorrhiza was assessed. Transcriptomics and DNA affinity purification sequencing were performed. MYC2s overexpression led to a decrease in fungal colonization, whereas its silencing increased it. The enrichment of terpene synthase genes in the MYC2-regulated gene set suggests a complex interplay between the host monoterpenes and fungal growth. Several root monoterpenes have been identified as inhibitors of fungal growth and ECM symbiosis. Our results highlight the significance of poplar MYC2s and terpenes in mutualistic symbiosis by controlling root fungal colonization. We identified poplar genes which direct or indirect control by MYC2 is required for ECM establishment. These findings deepen our understanding of the molecular mechanisms underlying ECM symbiosis.
茉莉酸(JA)信号通路在建立外生菌根共生关系中起着重要作用。栓菌效应物 MiSSP7 稳定 JA 核心抑制因子 JAZ6,从而抑制杨树 MYC2 转录因子的活性。尽管 MYC2 在协调植物对病原体的防御方面的作用已得到充分证实,但它对 ECM 共生的确切贡献仍不清楚。这些信息对于理解植物免疫和共生关系之间的平衡至关重要。产生了过量表达或沉默 MYC2 转录因子(MYC2s)两个同源物的转基因杨树,并评估了它们建立外生菌根的能力。进行了转录组学和 DNA 亲和纯化测序。MYC2s 的过表达导致真菌定殖减少,而沉默则增加了真菌定殖。萜烯合酶基因在 MYC2 调控基因集的富集表明宿主单萜和真菌生长之间存在复杂的相互作用。已经鉴定出几种根单萜作为真菌生长和 ECM 共生的抑制剂。我们的研究结果强调了杨树 MYC2s 和萜类化合物在控制根真菌定殖的共生关系中的重要性。我们确定了杨树基因,这些基因需要 MYC2 的直接或间接控制才能建立 ECM。这些发现加深了我们对 ECM 共生分子机制的理解。