Martin F, Boiffin V, Pfeffer PE
Equipe de Microbiologie Forestiere, Institut National de la Recherche Agronomique, Centre de Recherches de Nancy, F-54280 Champenoux, France (F.M., V.B.).
Plant Physiol. 1998 Oct;118(2):627-35. doi: 10.1104/pp.118.2.627.
The metabolism of [1-13C]glucose in Pisolithus tinctorius cv Coker & Couch, in uninoculated seedlings of Eucalyptus globulus bicostata ex Maiden cv Kirkp., and in the E. globulus-P. tinctorius ectomycorrhiza was studied using nuclear magnetic resonance spectroscopy. In roots of uninoculated seedlings, the 13C label was mainly incorporated into sucrose and glutamine. The ratio (13C3 + 13C2)/13C4 of glutamine was approximately 1.0 during the time-course experiment, indicating equivalent contributions of phosphoenolpyruvate carboxylase and pyruvate dehydrogenase to the production of alpha-ketoglutarate used for synthesis of this amino acid. In free-living P. tinctorius, most of the 13C label was incorporated into mannitol, trehalose, glutamine, and alanine, whereas arabitol, erythritol, and glutamate were weakly labeled. Amino acid biosynthesis was an important sink of assimilated 13C (43%), and anaplerotic CO2 fixation contributed 42% of the C flux entering the Krebs cycle. In ectomycorrhizae, sucrose accumulation was decreased in the colonized roots compared with uninoculated control plants, whereas 13C incorporation into arabitol and erythritol was nearly 4-fold higher in the symbiotic mycelium than in the free-living fungus. It appears that fungal utilization of glucose in the symbiotic state is altered and oriented toward the synthesis of short-chain polyols.
利用核磁共振光谱研究了彩色豆马勃(Coker & Couch品种)、未接种的双肋桉(Maiden品种Kirkp.的变种)幼苗以及双肋桉 - 彩色豆马勃外生菌根中[1 - 13C]葡萄糖的代谢情况。在未接种幼苗的根中,13C标记主要掺入蔗糖和谷氨酰胺中。在时间进程实验中,谷氨酰胺的(13C3 + 13C2)/13C4比值约为1.0,表明磷酸烯醇式丙酮酸羧化酶和丙酮酸脱氢酶对用于合成该氨基酸的α - 酮戊二酸的产生贡献相当。在自由生活的彩色豆马勃中,大部分13C标记掺入甘露醇、海藻糖、谷氨酰胺和丙氨酸中,而阿拉伯糖醇、赤藓糖醇和谷氨酸的标记较弱。氨基酸生物合成是同化13C的重要汇(43%),回补性CO2固定贡献了进入三羧酸循环的碳通量的42%。在外生菌根中,与未接种的对照植物相比,定殖根中的蔗糖积累减少,而共生菌丝体中13C掺入阿拉伯糖醇和赤藓糖醇的量比自由生活真菌中高近4倍。似乎共生状态下真菌对葡萄糖的利用发生了改变,并倾向于短链多元醇的合成。