Agricultural Research Organization, The Volcani Center, Bet Dagan, Israel.
Plant Physiol. 1978 Apr;61(4):703-5. doi: 10.1104/pp.61.4.703.
The uptake and metabolism of alpha-[5-(14)C]ketoglutarate by phosphorus-deficient and full nutrient (control) lemon (Citrus limon) leaves were studied over various time intervals. After 45 minutes in P-deficient leaves, the bulk of incorporated (14)C appeared in organic acids and much less in amino acids, while in the control leaves, the (14)C contents of organic and amino acids were equal. In P-deficient leaves, after longer incubation times the (14)C content of organic acids and amino acids increased, while that of CO(2) and residue fractions remained low. In full nutrient leaves the (14)C content of amino acids and organic acids decreased after longer incubation time and increased in the insoluble residue and CO(2). In full nutrient leaves the organic and amino acid metabolism were closely related and accompanied by protein synthesis and CO(2) release, while in P-deficient leaves an accelerating accumulation of arginine and citric acid was linked together with inhibition of protein synthesis and CO(2) liberation.
研究了在不同时间间隔内,缺磷和全营养(对照)柠檬(Citrus limon)叶片对 alpha-[5-(14)C]酮戊二酸的摄取和代谢。在缺磷叶片中 45 分钟后,掺入的(14)C 大部分出现在有机酸中,而在对照叶片中,有机酸和氨基酸中的(14)C 含量相等。在缺磷叶片中,随着孵育时间的延长,有机酸和氨基酸的(14)C 含量增加,而 CO(2)和残渣分数的含量保持较低。在全营养叶片中,随着孵育时间的延长,氨基酸和有机酸的(14)C 含量减少,而在不溶性残渣和 CO(2)中增加。在全营养叶片中,有机和氨基酸代谢密切相关,并伴随着蛋白质合成和 CO(2)释放,而在缺磷叶片中,精氨酸和柠檬酸的加速积累与蛋白质合成和 CO(2)释放的抑制有关。