Plant Growth Laboratory and Department of Agronomy and Range Science, University of California, Davis, California 95616.
Plant Physiol. 1982 Oct;70(4):1009-13. doi: 10.1104/pp.70.4.1009.
In vivo NO(3) (-) reduction in roots and shoots of intact barley (Hordeum vulgare L. var Numar) seedlings was estimated in light and darkness. Seedlings were placed in darkness for 24 hours to make them carbohydrate-deficient. During darkness, the leaves lost 75% of their soluble carbohydrates, whereas the roots lost only 15%. Detached leaves from these plants reduced only 7% of the NO(3) (-) absorbed in darkness. By contrast, detached roots from the seedlings reduced the same proportion of absorbed NO(3) (-), as did roots from normal light-grown plants. The rate of NO(3) (-) reduction in the roots accounted for that found in the intact dark-treated carbohydrate-deficient seedlings. The rates of NO(3) (-) reduction in roots of intact plants were the same for approximately 12 hours, both in light and darkness, after which the NO(3) (-) reduction rate in roots of plants placed in darkness slowly declined. In the dark, approximately 40% of the NO(3) (-) reduction occurred in the roots, whereas in light only 20% of the total NO(3) (-) reduction occurred in roots. A lesser proportion was reduced in roots because the leaves reduced more nitrate in light than in darkness.
在光下和黑暗中测定了完整大麦(Hordeum vulgare L. var Numar)幼苗根和地上部的体内 NO(3) (-)还原。将幼苗置于黑暗中 24 小时,使它们碳水化合物缺乏。在黑暗中,叶片失去了 75%的可溶碳水化合物,而根只失去了 15%。从这些植物上取下的叶片在黑暗中仅还原了吸收的 NO(3) (-)的 7%。相比之下,幼苗的离体根还原了与正常光照生长的植物根相同比例的吸收的 NO(3) (-)。根中 NO(3) (-)还原的速率与完整的暗处理碳水化合物缺乏幼苗中的发现相当。在光照和黑暗下,完整植物的根中 NO(3) (-)还原的速率在大约 12 小时内相同,之后置于黑暗中的植物根中的 NO(3) (-)还原速率缓慢下降。在黑暗中,大约 40%的 NO(3) (-)还原发生在根中,而在光照下,只有 20%的总 NO(3) (-)还原发生在根中。在根中还原的比例较小,是因为叶片在光照下比在黑暗中还原了更多的硝酸盐。