UMR 1136 INRA-Université de Lorraine 'Interactions Arbres/Microorganismes', Laboratoire d'Excellence ARBRE, Centre INRA-Lorraine, 54280, Champenoux, France.
INRA, Aix-Marseille Université, UMR 1163, Biodiversity and Biotechnology of Fungi, 13009, Marseille, France.
New Phytol. 2018 Dec;220(4):1309-1321. doi: 10.1111/nph.15113. Epub 2018 Apr 6.
In ectomycorrhiza, root ingress and colonization of the apoplast by colonizing hyphae is thought to rely mainly on the mechanical force that results from hyphal tip growth, but this could be enhanced by secretion of cell-wall-degrading enzymes, which have not yet been identified. The sole cellulose-binding module (CBM1) encoded in the genome of the ectomycorrhizal Laccaria bicolor is linked to a glycoside hydrolase family 5 (GH5) endoglucanase, LbGH5-CBM1. Here, we characterize LbGH5-CBM1 gene expression and the biochemical properties of its protein product. We also immunolocalized LbGH5-CBM1 by immunofluorescence confocal microscopy in poplar ectomycorrhiza. We show that LbGH5-CBM1 expression is substantially induced in ectomycorrhiza, and RNAi mutants with a decreased LbGH5-CBM1 expression have a lower ability to form ectomycorrhiza, suggesting a key role in symbiosis. Recombinant LbGH5-CBM1 displays its highest activity towards cellulose and galactomannans, but no activity toward L. bicolor cell walls. In situ localization of LbGH5-CBM1 in ectomycorrhiza reveals that the endoglucanase accumulates at the periphery of hyphae forming the Hartig net and the mantle. Our data suggest that the symbiosis-induced endoglucanase LbGH5-CBM1 is an enzymatic effector involved in cell wall remodeling during formation of the Hartig net and is an important determinant for successful symbiotic colonization.
在外生菌根中,根的质外体进入和定植菌丝的定殖被认为主要依赖于菌丝尖端生长所产生的机械力,但这可以通过分泌尚未鉴定的细胞壁降解酶来增强。在共生的外生菌根真菌彩绒革盖菌基因组中编码的唯一纤维素结合模块(CBM1)与糖苷水解酶家族 5(GH5)内切葡聚糖酶 LbGH5-CBM1 相连。在这里,我们描述了 LbGH5-CBM1 基因表达及其蛋白产物的生化特性。我们还通过免疫荧光共聚焦显微镜在杨树外生菌根中对 LbGH5-CBM1 进行了免疫定位。我们表明,LbGH5-CBM1 在共生中大量表达,并且 LbGH5-CBM1 表达减少的 RNAi 突变体形成外生菌根的能力较低,这表明其在共生中起着关键作用。重组 LbGH5-CBM1 对纤维素和半乳甘露聚糖表现出最高的活性,但对彩绒革盖菌细胞壁没有活性。在外生菌根中的 LbGH5-CBM1 原位定位显示,内切葡聚糖酶在形成哈蒂网和套膜的菌丝外围积累。我们的数据表明,共生诱导的内切葡聚糖酶 LbGH5-CBM1 是一种参与哈蒂网形成过程中细胞壁重塑的酶效应物,是成功共生定植的重要决定因素。