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豌豆光合组织中淀粉分解的途径。

Pathway of starch breakdown in photosynthetic tissues of Pisum sativum.

作者信息

Stitt M, Bulpin P V, ap Rees T

出版信息

Biochim Biophys Acta. 1978 Nov 15;544(1):200-14. doi: 10.1016/0304-4165(78)90223-4.

Abstract
  1. The aim of this work was to discover the pathway of starch breakdown in the photosynthetic tissues of Pisum sativum. 2. Measurements of the starch in the leaves of plants grown in photoperiods of 12 or 18 h showed that starch, synthesized in the light, was rapidly metabolized in the dark at rates of 0.04--0.06 mumol glucose/min per g fresh weight. 3. The maximum catalytic activities of alpha-amylase, beta-amylase, hexokinase, alpha-glucan phosphorylase and phosphoglucomutase in extracts of leaves showed no diurnal variation in either photoperiod, and exceeded estimates of the rate of net starch breakdown in the dark. 4. Studies with intact chloroplasts, isolated from young shoots and from leaves, indicated that pea chloroplasts do not contain significant activities of alpha-amylase, beta-amylase and hexokinase, although some of the latter may be attached to the outside of the chloroplast envelope. These studies also showed that pea chloroplasts contained sufficient alpha-glucan phosphorylase and phosphoglucomutase to mediate the observed rates of starch breakdown. 5. It is proposed that starch breakdown in pea chloroplasts is phosphorolytic.
摘要
  1. 这项工作的目的是发现豌豆光合组织中淀粉分解的途径。2. 对在12小时或18小时光周期下生长的植物叶片中的淀粉进行测量,结果表明,在光照下合成的淀粉在黑暗中以每克鲜重0.04 - 0.06微摩尔葡萄糖/分钟的速率迅速代谢。3. 叶片提取物中α -淀粉酶、β -淀粉酶、己糖激酶、α -葡聚糖磷酸化酶和磷酸葡萄糖变位酶的最大催化活性在两种光周期下均无昼夜变化,且超过了黑暗中淀粉净分解速率的估计值。4. 对从幼芽和叶片中分离出的完整叶绿体进行的研究表明,豌豆叶绿体不含有显著活性的α -淀粉酶、β -淀粉酶和己糖激酶,尽管后者中的一些可能附着在叶绿体被膜的外部。这些研究还表明,豌豆叶绿体含有足够的α -葡聚糖磷酸化酶和磷酸葡萄糖变位酶来介导观察到的淀粉分解速率。5.有人提出豌豆叶绿体中的淀粉分解是通过磷酸解作用进行的。

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