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丛枝菌根真菌根内球囊霉对磷的吸收、运输和转移会因碳水化合物可利用性的增加而受到刺激。

Phosphate uptake, transport and transfer by the arbuscular mycorrhizal fungus Glomus intraradices is stimulated by increased carbohydrate availability.

作者信息

Bücking Heike, Shachar-Hill Yair

机构信息

Michigan State University, Department of Plant Biology, East Lansing, MI 48824-1312, USA.

出版信息

New Phytol. 2005 Mar;165(3):899-911. doi: 10.1111/j.1469-8137.2004.01274.x.

Abstract
  • The influence of carbohydrate availability to mycorrhizal roots on uptake, metabolism and translocation of phosphate (P) by the fungus was examined in axenic cultures of transformed carrot (Daucus carota) roots in symbiosis with Glomus intraradices. * 14C-labelled carbohydrates, 33P-phosphate and energy dispersive X-ray microanalysis were used to follow the uptake and transfer of C and P in the arbuscular mycorrhizal (AM) symbiosis. * The uptake of P by the extraradical mycelium (ERM) and its translocation to the mycorrhizal roots was stimulated and the metabolic and spatial distribution of P within the fungus were altered in response to increased carbohydrate availability. Sucrose supply resulted in a decrease of polyphosphates and an increased incorporation into phospholipids and other growth-related P pools and also caused elevated cytoplasmic P levels in the intraradical mycelium (IRM) within the root and higher cytoplasmic P levels in the root cortex. * These findings indicate that the uptake of P by the fungus and its transfer to the host is also stimulated by the transfer of carbon from plant to fungus across the mycorrhizal interface.
摘要

在与根内球囊霉共生的转化胡萝卜(胡萝卜)根的无菌培养中,研究了碳水化合物供应对菌根根吸收、代谢和转运磷酸盐(P)的影响。使用14C标记的碳水化合物、33P磷酸盐和能量色散X射线微分析来追踪丛枝菌根(AM)共生中碳和磷的吸收和转移。根外菌丝体(ERM)对磷的吸收及其向菌根根的转运受到刺激,并且随着碳水化合物供应增加,真菌体内磷的代谢和空间分布发生改变。蔗糖供应导致多磷酸盐减少,磷脂和其他与生长相关的磷库中掺入增加,还导致根内根内菌丝体(IRM)的细胞质磷水平升高以及根皮层中更高的细胞质磷水平。这些发现表明,真菌对磷的吸收及其向宿主的转移也受到碳从植物通过菌根界面转移到真菌的刺激。

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