(13)C nuclear magnetic resonance spectroscopy has been used to follow the utilization of glucose for the synthesis of carbohydrates in the ectomycorrhizal ascomycete Cenococcum graniforme. The fate of (13)C label was analyzed in vivo and in mycelial extracts. The major carbohydrates produced from [1-(13)C]glucose and [6-(13)C]glucose were mannitol and trehalose. Mannitol was mainly synthesized via a direct route from glucose. Scrambling of the (13)C label was observed to occur in trehalose during glycolysis. From the analysis of the scrambling patterns, it is concluded that the mannitol cycle was operative and that a large part of the carbon of glucose was used to form trehalose after cycling through the mannitol pool. The activities of NAD-mannitol-l-P dehydrogenase (EC 1.1.1.17) and NADP-mannitol dehydrogenase (EC 1.1.1.138), which participate in the mannitol cycle relative to the activity of glycolytic enzymes, provide evidence that the cycle is important for NADPH production.

译文

:(13)C核磁共振波谱已被用于跟踪葡萄糖的利用,以在外生菌根的子囊Cenococcum graniforme中合成碳水化合物。 (13)C标签的命运在体内和菌丝体提取物中进行了分析。由[1-(13)C]葡萄糖和[6-(13)C]葡萄糖产生的主要碳水化合物是甘露醇和海藻糖。甘露醇主要通过直接途径由葡萄糖合成。观察到(13)C标记在糖酵解过程中发生在海藻糖中。通过对加扰模式的分析,可以得出结论,甘露醇循环是有效的,并且在循环通过甘露醇池后,葡萄糖的大部分碳用于形成海藻糖。相对于糖酵解酶的活性,参与甘露醇循环的NAD-甘露醇-1P脱氢酶(EC 1.1.1.17)和NADP-甘露醇脱氢酶(EC 1.1.1.138)的作用提供了证据,表明该循环对NADPH很重要生产。

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