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鉴定松茸共生菌中的上调基因。

Identification of upregulated genes in Tricholoma matsutake mycorrhiza.

机构信息

Iwate Biotechnology Research Center, 22-174-4 Narita, Kitakami-shi, Iwate 024-0003, Japan.

Iwate Prefectural Forest Technology Center, 560-11 Kemuyama, Yahaba, Iwate 028-3623, Japan.

出版信息

FEMS Microbiol Lett. 2022 Sep 20;369(1). doi: 10.1093/femsle/fnac085.

Abstract

Many plant roots associate with fungi to form mycorrhizae; tree roots especially associate with ectomycorrhizal fungi, such as Tricholoma species. Tricholoma matsutake is an economically important fungus in Asian countries and usually inhabits forests primarily composed of Pinus densiflora (Japanese red pine). In this study, to understand the mycorrhizal association between T. matsutake and P. densiflora, genes specifically expressed in mycorrhiza compared with those expressed in mycelia and fruiting bodies were identified by RNA-seq. This revealed that genes for chromatin, proteasomes, signal transduction, pheromones, cell surface receptors, cytoskeleton, RNA processing and transporters from T. matsutake were highly expressed in mycorrhiza. It also identified 35 mycorrhiza-induced small secreted proteins (MiSSPs) that were highly expressed in mycorrhiza. Meanwhile, genes for proteases, defence-related proteins, cell-wall degradation, signal transduction, pinene synthesis, plant hormones and transporters from P. densiflora were highly expressed in mycorrhiza. These genes may be involved in mycorrhizal formation and maintenance. A MiSSP, 1460819, was highly expressed in mycorrhiza, and this expression was maintained for 24 months. These results provide insight into the mycorrhizal association between T. matsutake and P. densiflora.

摘要

许多植物根系与真菌形成菌根;特别是树木根系与外生菌根真菌形成菌根,如 Tricholoma 属的物种。松口蘑是亚洲国家具有重要经济价值的真菌,通常栖息在主要由赤松(日本红松)组成的森林中。在这项研究中,为了了解松口蘑和赤松之间的菌根共生关系,通过 RNA-seq 鉴定了与菌丝体和子实体相比在菌根中特异性表达的基因。结果表明,松口蘑中与染色质、蛋白酶体、信号转导、信息素、细胞表面受体、细胞骨架、RNA 加工和转运体相关的基因在菌根中高度表达。它还鉴定了 35 种在菌根中高度表达的菌根诱导小分泌蛋白(MiSSP)。同时,赤松中与蛋白酶、防御相关蛋白、细胞壁降解、信号转导、蒎烯合成、植物激素和转运体相关的基因在菌根中高度表达。这些基因可能参与菌根的形成和维持。一种 MiSSP,1460819,在菌根中高度表达,并且这种表达可以持续 24 个月。这些结果为松口蘑和赤松之间的菌根共生关系提供了深入的了解。

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