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外生菌根真菌圆柱齿杯伞中肽的摄取:两种二肽和三肽转运蛋白(HcPTR2A和B)的特性

Peptide uptake in the ectomycorrhizal fungus Hebeloma cylindrosporum: characterization of two di- and tripeptide transporters (HcPTR2A and B).

作者信息

Benjdia Mariam, Rikirsch Enno, Müller Tobias, Morel Mélanie, Corratgé Claire, Zimmermann Sabine, Chalot Michel, Frommer Wolf B, Wipf Daniel

机构信息

ZMBP, Plant Physiology, Auf der Morgenstelle 1, 72076 Tübingen, Germany.

出版信息

New Phytol. 2006;170(2):401-10. doi: 10.1111/j.1469-8137.2006.01672.x.

Abstract

Constraints on plant growth imposed by low availability of nitrogen are a characteristic feature of ecosystems dominated by ectomycorrhizal plants. Ectomycorrhizal fungi play a key role in the N nutrition of plants, allowing their host plants to access decomposition products of dead plant and animal materials. Ectomycorrhizal plants are thus able to compensate for the low availability of inorganic N in forest ecosystems. The capacity to take up peptides, as well as the transport mechanisms involved, were analysed in the ectomycorrhizal fungus Hebeloma cylindrosporum. The present study demonstrated that H. cylindrosporum mycelium was able to take up di- and tripeptides and use them as sole N source. Two peptide transporters (HcPTR2A and B) were isolated by yeast functional complementation using an H. cylindrosporum cDNA library, and were shown to mediate dipeptide uptake. Uptake capacities and expression regulation of both genes were analysed, indicating that HcPTR2A was involved in the high-efficiency peptide uptake under conditions of limited N availability, whereas HcPTR2B was expressed constitutively.

摘要

氮素有效性低对植物生长造成的限制是以外生菌根植物为主导的生态系统的一个典型特征。外生菌根真菌在植物的氮营养中起着关键作用,使它们的宿主植物能够获取死植物和动物材料的分解产物。因此,外生菌根植物能够弥补森林生态系统中无机氮有效性低的问题。对外生菌根真菌柱孢疣柄牛肝菌吸收肽的能力以及相关转运机制进行了分析。本研究表明,柱孢疣柄牛肝菌菌丝体能够吸收二肽和三肽,并将它们用作唯一的氮源。通过酵母功能互补利用柱孢疣柄牛肝菌cDNA文库分离出两个肽转运蛋白(HcPTR2A和B),并证明它们介导二肽吸收。分析了这两个基因的吸收能力和表达调控,表明HcPTR2A在氮有效性有限的条件下参与高效肽吸收,而HcPTR2B组成型表达。

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