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一种参与从丛枝菌根真菌吸收磷的番茄磷酸转运蛋白(LePT1)。

A Lycopersicon esculentum phosphate transporter (LePT1) involved in phosphorus uptake from a vesicular-arbuscular mycorrhizal fungus.

作者信息

Rosewarne Garry M, Barker Susan J, Smith Sally E, Smith F Andrew, Schachtman Daniel P

机构信息

1 Department of Botany, The University of Adelaide, Adelaide, SA, Australia.

出版信息

New Phytol. 1999 Dec;144(3):507-516. doi: 10.1046/j.1469-8137.1999.00536.x.

Abstract

In vesicular-arbuscular mycorrhizal symbioses, specialized fungal structures (the arbuscules) are formed which are in intimate contact with plant root cortical cells. It is assumed that these arbuscules are the major sites of solute transfer between the plant and fungus, but there have been no studies that definitively show the extent or types of transfer processes that occur in this structure. Phosphate is one of the major nutrients that is acquired by mycorrhizal fungi and transferred to plants. In this study a single Lycopersicon esculentum cDNA was cloned and shown to be identical to LePT1, a previously cloned inorganic-phosphate transporter. Expression studies revealed that LePT1 transcript levels remained constant in mycorrhizal plants, but increased in phosphate-starved, non-mycorrhizal plants. Localization of the LePT1 transcript by in situ hybridization showed that this gene is highly expressed in arbuscule-containing cortical cells in mycorrhizal plants. In non-mycorrhizal plants LePT1 expression was localized to the stele and cortex. The expression studies suggest that this transporter is involved in phosphate nutrition of L. esculentum and its localization in cells that contain arbuscules indicate that it may be the mechanism used by the plant to take up phosphate that is effluxed across the fungal plasma membrane of the arbuscule. Based on our findings and those of others, an integrated model of inorganic phosphate uptake and transfer in mycorrhizal and non-mycorrhizal plants is presented.

摘要

在泡囊-丛枝菌根共生关系中,会形成与植物根皮层细胞紧密接触的特殊真菌结构(丛枝)。据推测,这些丛枝是植物与真菌之间溶质转移的主要部位,但尚无研究能确切表明该结构中发生的转移过程的程度或类型。磷是菌根真菌获取并转移给植物的主要养分之一。在本研究中,克隆了一个单一的番茄cDNA,结果表明它与先前克隆的无机磷转运蛋白LePT1相同。表达研究显示,LePT1转录本水平在菌根植物中保持恒定,但在缺磷的非菌根植物中有所增加。通过原位杂交对LePT1转录本进行定位,结果表明该基因在菌根植物中含丛枝的皮层细胞中高度表达。在非菌根植物中,LePT1的表达定位于中柱和皮层。表达研究表明,这种转运蛋白参与了番茄的磷营养,其在含丛枝细胞中的定位表明,它可能是植物吸收从丛枝真菌质膜外流的磷的机制。基于我们的研究结果以及其他研究结果,本文提出了一个菌根植物和非菌根植物无机磷吸收与转移的综合模型。

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