Botanical Institute, University of Karlsruhe and Karlsruhe Institute of Technology, Plant-Microbe Interactions Group, Hertzstrasse 16, D-76187, Karlsruhe, Germany.
New Phytol. 2010 Feb;185(3):716-33. doi: 10.1111/j.1469-8137.2009.03116.x. Epub 2009 Dec 14.
Arbuscular mycorrhiza (AM) is a mutualistic biotrophic association that requires a complex exchange of signals between plant and fungus to allow accommodation of the mycosymbiont in the root cortex. Signal exchange happens even before physical contact, activating the plant symbiotic program. We investigated very early transcriptional responses in Medicago truncatula to inoculation with Glomus intraradices and identified four genes induced by diffusible AM fungal signals before contact. Three of them were previously shown to be mycorrhiza induced at later stages of the symbiosis, while MtMSBP1, encoding a membrane-bound steroid-binding protein, is a novel mycorrhizal marker. Expression analyses in plants defective in the symbiotic receptor kinase DMI2 allowed discrimination of two different signaling cascades involved in the perception of the diffusible signals. Thus, while some of the genes are activated in a DMI2-dependent manner, the induction of one of them encoding a proteinase inhibitor is DMI2-independent. Downregulation of MtMSBP1 by RNAi led to an aberrant mycorrhizal phenotype with thick and septated appressoria, decrease number of arbuscules and distorted arbuscule morphology. This provides genetic evidence that MtMSBP1 is critical for mycorrhiza development. We hypothesize that MtMSBP1 plays a role in sterol homeostasis in the root.
丛枝菌根 (AM) 是一种互利共生的生物营养共生体,需要植物和真菌之间进行复杂的信号交换,以允许真菌共生体在根皮层中适应。即使在物理接触之前,信号交换就已经发生,从而激活植物共生程序。我们研究了紫花苜蓿(Medicago truncatula)接种内根结瘤菌(Glomus intraradices)后的早期转录响应,并鉴定了在接触前由可扩散 AM 真菌信号诱导的四个基因。其中三个基因先前被证明在共生关系的后期阶段被诱导,而编码膜结合甾醇结合蛋白的 MtMSBP1 是一种新的菌根标记物。在共生受体激酶 DMI2 缺陷的植物中的表达分析允许区分参与可扩散信号感知的两个不同信号级联。因此,虽然一些基因以 DMI2 依赖的方式被激活,但其中一个编码蛋白酶抑制剂的基因的诱导是 DMI2 非依赖性的。MtMSBP1 的 RNAi 下调导致异常的菌根表型,具有厚而分隔的附着胞、减少的丛枝数量和扭曲的丛枝形态。这提供了遗传证据,表明 MtMSBP1 对菌根发育至关重要。我们假设 MtMSBP1 在根中的固醇稳态中发挥作用。