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Carbon Uptake and the Metabolism and Transport of Lipids in an Arbuscular Mycorrhiza

机译:碳吸收与丛枝菌根中脂质的代谢和运输

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摘要

Both the plant and the fungus benefit nutritionally in the arbuscular mycorrhizal symbiosis: The host plant enjoys enhanced mineral uptake and the fungus receives fixed carbon. In this exchange the uptake, metabolism, and translocation of carbon by the fungal partner are poorly understood. We therefore analyzed the fate of isotopically labeled substrates in an arbuscular mycorrhiza (in vitro cultures of Ri T-DNA-transformed carrot [Daucus carota] roots colonized by Glomus intraradices) using nuclear magnetic resonance spectroscopy. Labeling patterns observed in lipids and carbohydrates after substrates were supplied to the mycorrhizal roots or the extraradical mycelium indicated that: (a) 13C-labeled glucose and fructose (but not mannitol or succinate) are effectively taken up by the fungus within the root and are metabolized to yield labeled carbohydrates and lipids; (b) the extraradical mycelium does not use exogenous sugars for catabolism, storage, or transfer to the host; (c) the fungus converts sugars taken up in the root compartment into lipids that are then translocated to the extraradical mycelium (there being little or no lipid synthesis in the external mycelium); and (d) hexose in fungal tissue undergoes substantially higher fluxes through an oxidative pentose phosphate pathway than does hexose in the host plant.
机译:丛枝菌根共生中,植物和真菌都从营养上受益:宿主植物的矿物质吸收增加,真菌获得固定的碳。在这种交换中,对真菌伴侣对碳的吸收,代谢和转运的了解很少。因此,我们使用核磁共振波谱分析了丛枝菌根(Ri T-DNA转化的胡萝卜[Gaumus intraces]定殖的胡萝卜[Daucus carota]根的体外培养物)中同位素标记的底物的命运。将底物供应至菌根或根外菌丝体后,在脂质和碳水化合物中观察到的标记模式表明:(a)有效吸收了 13 C标记的葡萄糖和果糖(但未吸收甘露醇或琥珀酸酯)通过根部内的真菌被代谢产生标记的碳水化合物和脂质; (b)根外菌丝体不使用外源糖分解代谢,储存或转移至宿主; (c)真菌将吸收在根室中的糖转化为脂质,然后转移至自由基菌丝体(外部菌丝中几乎没有脂质合成); (d)与宿主植物中的己糖相比,真菌组织中的己糖通过氧化性戊糖磷酸途径的通量要高得多。

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