Hall J R, Hodges T K
Department of Horticulture, University of Illinois, Urbana.
Plant Physiol. 1966 Nov;41(9):1459-64. doi: 10.1104/pp.41.9.1459.
An investigation has been made of the changes in the major phosphorus containing substances in Avena sativa during the first 8 days of dark germination. The endosperm, roots, and shoots were analyzed separately for acid soluble-P, phytic acid-P, inorganic-P, lipid-P, nucleic acid-P, and protein-P. Phytic acid-P comprised 53% of the total seed phosphate, while the sum of lipid-P, nucleic acid-P and protein-P comprised 27% of the seed phosphate. All these reserve phosphate materials were mobilized and transferred to the developing axis. The phosphate from phytic acid appeared almost entirely as inorganic-P in the roots and shoots. A close stoichiometry existed between the rate of loss of nucleic acid-P from the endosperm and its rate of appearance in the roots and shoots. Thus no net synthesis of nucleic acid occurred during the 8-day period examined. The rate of synthesis of lipid-P in the roots and shoots exceeded its rate of disappearance from the endosperm during the first 4 days of germination. Protein-P increased in the roots and shoots during germination, but at a rate less than its rate of disappearance from the endosperm. The results provide a relatively complete description of the over-all aspects of phosphorus metabolism associated with germination of oats.
对燕麦在黑暗萌发的前8天中主要含磷物质的变化进行了研究。分别分析了胚乳、根和芽中的酸溶性磷、植酸磷、无机磷、脂类磷、核酸磷和蛋白质磷。植酸磷占种子总磷的53%,而脂类磷、核酸磷和蛋白质磷的总和占种子磷的27%。所有这些储备磷物质都被动员并转移到发育中的轴中。来自植酸的磷在根和芽中几乎完全以无机磷的形式出现。胚乳中核酸磷的损失速率与其在根和芽中的出现速率之间存在紧密的化学计量关系。因此,在所研究的8天期间没有发生核酸的净合成。在萌发的前4天,根和芽中脂类磷的合成速率超过了其从胚乳中消失的速率。萌发过程中根和芽中的蛋白质磷增加,但其速率低于其从胚乳中消失的速率。这些结果相对完整地描述了与燕麦萌发相关的磷代谢的总体情况。