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外生菌根担子菌圆柱齿梗孢在共生结构分化之前经历早期转录重编程浪潮。

The ectomycorrhizal basidiomycete Hebeloma cylindrosporum undergoes early waves of transcriptional reprogramming prior to symbiotic structures differentiation.

作者信息

Doré Jeanne, Kohler Annegret, Dubost Audrey, Hundley Hope, Singan Vasanth, Peng Yi, Kuo Alan, Grigoriev Igor V, Martin Francis, Marmeisse Roland, Gay Gilles

机构信息

Ecologie Microbienne, Université de Lyon, F-69622, Lyon, France.

Université Lyon 1, CNRS, UMR5557, INRA, UMR1418, Villeurbanne, France.

出版信息

Environ Microbiol. 2017 Mar;19(3):1338-1354. doi: 10.1111/1462-2920.13670. Epub 2017 Feb 6.

Abstract

To clarify the early molecular interaction between ectomycorrhizal partners, we performed a RNA-Seq study of transcriptome reprogramming of the basidiomycete Hebeloma cylindrosporum before symbiotic structure differentiation with Pinus pinaster. Mycorrhiza transcriptome was studied for comparison. By reference to asymbiotic mycelium, 47 and 46 genes were specifically upregulated over fivefold (p ≤ 0.05) upon rhizosphere colonization and root adhesion respectively. Other 45 were upregulated throughout the symbiotic interaction, from rhizosphere colonization to differentiated mycorrhizas, whereas 274 were specifically upregulated in mycorrhizas. Although exoproteome represents 5.6% of H. cylindrosporum proteome, 38.5% of the genes upregulated upon pre-infectious root colonization encoded extracellular proteins. The proportion decreased to 23.5% in mycorrhizas. At all studied time points, mycorrhiza-induced small secreted proteins (MiSSPs), representing potential effectors, were over-represented among upregulated genes. This was also the case for carbohydrate-active enzymes (CAZymes). Several CAZymes were upregulated at all studied stages of the interaction. Consistent with a role in fungal morphogenesis and symbiotic interface differentiation, CAZymes over-expressed before and upon root attachment targeted fungal and both fungal and plant polysaccharides respectively. Different hydrophobins were upregulated upon early root adhesion, in mycorrhizas or throughout interaction. The functional classification of genes upregulated only in mycorrhizas pointed to intense metabolic activity and nutritional exchanges.

摘要

为了阐明外生菌根共生伙伴之间早期的分子相互作用,我们进行了一项RNA测序研究,分析担子菌圆柱齿小皮伞(Hebeloma cylindrosporum)在与海岸松(Pinus pinaster)形成共生结构分化之前的转录组重编程情况。同时对菌根转录组进行了研究以作比较。与非共生菌丝体相比,在根际定殖和根部附着时,分别有47个和46个基因特异性上调了五倍以上(p≤0.05)。另外45个基因在从根际定殖到分化菌根的整个共生相互作用过程中上调,而274个基因在菌根中特异性上调。尽管分泌蛋白组占圆柱齿小皮伞蛋白质组的5.6%,但在感染前根部定殖时上调的基因中,38.5%编码细胞外蛋白。在菌根中这一比例降至23.5%。在所有研究的时间点,菌根诱导的小分泌蛋白(MiSSPs),即潜在的效应子,在上调基因中占比过高。碳水化合物活性酶(CAZymes)也是如此。在相互作用的所有研究阶段,几种CAZymes均上调。与在真菌形态发生和共生界面分化中的作用一致,在根部附着之前和附着时过度表达的CAZymes分别作用于真菌多糖以及真菌和植物多糖。在早期根部附着时、菌根中或整个相互作用过程中,不同的疏水蛋白均上调。仅在菌根中上调的基因的功能分类表明存在强烈的代谢活动和营养交换。

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