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Developmental Regulation of Enzymes of Sucrose and Hexose Metabolism in Effective and Ineffective Soybean Nodules

机译:有效和无效大豆根瘤中蔗糖和己糖代谢酶的发育调控

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摘要

Soybean (Glycine max) nodules formed by inoculation with either an effective strain or an ineffective (noninvasive, nodule-forming) strain of Bradyrhizobium japonicum were assayed for changes in developmental patterns of carbon metabolic enzymes of the plant nodule cells. Of the enzyme activities measured, only sucrose synthase, glutamine synthetase, and alcohol dehydrogenase were altered in the ineffective nodules relative to the effective nodules. Sucrose synthase and glutamine synthetase activities were greatly reduced, whereas alcohol dehydrogenase activity was elevated. Dark-induced senescence severely affected sucrose synthase but had little, if any, effect on the other enzymes measured. The developmental patterns of the anaerobically induced enzymes, aldolase and alcohol dehydrogenase, were different from those expected, implying that their development is not regulated solely by oxygen deprivation. However, anaerobic treatment of nodules resulted in responses similar to those enzymes in maize. The developmental profiles of the carbon metabolic enzymes suggest that carbohydrates are metabolized via the sucrose synthase and pentose phosphate pathways. This route of carbon metabolism, compared to glycolysis, would reduce the requirement of ATP for carbohydrate catabolism, generate NADPH for biosynthetic reactions, and provide intermediates for plant secondary metabolism.
机译:通过接种有效的或无效的(非侵入性,形成结节的)日本根瘤菌菌株形成的大豆(大豆最大结节)的植物结节细胞碳代谢酶的发育模式变化进行了测定。在测得的酶活性中,相对于有效结节,无效结节中只有蔗糖合酶,谷氨酰胺合成酶和醇脱氢酶发生了改变。蔗糖合酶和谷氨酰胺合成酶活性大大降低,而醇脱氢酶活性提高。黑暗诱导的衰老严重影响蔗糖合酶,但对其他测得的酶几乎没有影响。厌氧诱导的酶醛缩酶和乙醇脱氢酶的发育模式与预期的不同,这表明它们的发育不仅仅受氧剥夺的调节。但是,对结节进行厌氧处理后,其响应类似于玉米中的酶。碳代谢酶的发展概况表明,碳水化合物是通过蔗糖合酶和戊糖磷酸途径代谢的。与糖酵解相比,这种碳代谢途径将减少ATP对碳水化合物分解代谢的需求,为生物合成反应生成NADPH,并为植物的二次代谢提供中间体。

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