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双色蜡蘑菌丝体及外生菌根共生中氮同化途径的功能特性

Functional characterization of the N assimilation pathways in the mycelium of Laccaria bicolor and the ectomycorrhizal symbiosis.

作者信息

Zhang Xinyin, Ma Jianan, Zhang Pan, Shi Wensheng, Zou Rong, Kohler Annegret, Yang Yingli, Martin Francis M, Zhang Feng

机构信息

College of Ecology, Lanzhou University, Gansu, Lanzhou 730000, China.

Université de Lorraine, INRAE, UMR Interactions Arbres/Microorganismes, Centre INRAE Grand Est Nancy, Champenoux 54280, France.

出版信息

Plant Physiol. 2025 May 30;198(2). doi: 10.1093/plphys/kiaf194.

Abstract

Ectomycorrhizal (ECM) fungi contribute to N, Pi, and water uptake in trees while obtaining carbohydrates from their host plants. However, the molecular mechanisms underlying N assimilation during ECM symbiosis remain unclear. In this study, we used RNA interference (RNAi) to silence the expression of genes encoding glutamine synthetase (GS) and NADP-glutamate dehydrogenase (GDH), which are key enzymes involved in N assimilation in the ectomycorrhizal basidiomycete, Laccaria bicolor. LbGS and LbGDH RNAi strains exhibited significantly reduced mycelial growth when cultivated with various inorganic N sources. Compared with the wild-type mycelium, the RNAi strains demonstrated a reduced formation rate of ECM rootlets, indicating the essential role of these 2 enzymes in the establishment of symbiosis. Transcriptomic analysis revealed that silencing of LbGS and LbGDH also altered the expression of other genes involved in N metabolism in ECM rootlets. 15N and 13C tracer experiments demonstrated that LbGS silencing affects carbon exchange in ECM roots. Our findings have established that both GS and NADP-GDH pathways play crucial roles in N assimilation in free-living mycelia and ECM roots, although the GS/GOGAT pathway appears to be predominant.

摘要

外生菌根(ECM)真菌在从宿主植物获取碳水化合物的同时,有助于树木吸收氮、磷和水分。然而,ECM共生过程中氮同化的分子机制仍不清楚。在本研究中,我们利用RNA干扰(RNAi)使编码谷氨酰胺合成酶(GS)和NADP-谷氨酸脱氢酶(GDH)的基因沉默,这两种酶是外生菌根担子菌双色蜡蘑中参与氮同化的关键酶。当用各种无机氮源培养时,LbGS和LbGDH RNAi菌株的菌丝体生长显著降低。与野生型菌丝体相比,RNAi菌株的ECM小根形成率降低,表明这两种酶在共生建立中起重要作用。转录组分析表明,LbGS和LbGDH的沉默也改变了ECM小根中其他参与氮代谢的基因的表达。15N和13C示踪实验表明,LbGS沉默影响ECM根中的碳交换。我们的研究结果表明,尽管GS/GOGAT途径似乎占主导地位,但GS和NADP-GDH途径在自由生活的菌丝体和ECM根的氮同化中都起着关键作用。

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