Department of Agronomy, Cornell University Agricultural Experiment Station, New York State College of Agriculture and Life Sciences, Cornell University, Ithaca, New York 14853-0144.
Plant Physiol. 1989 Feb;89(2):610-6. doi: 10.1104/pp.89.2.610.
Water, osmotic, and pressure potentials of soybean (Glycine max [L.] Merrill) embryos and related maternal tissues were measured during periods of seed growth and maturation to test the involvement of embryo water relations in seed maturation. Seeds were matured in situ or in an in vitro liquid culture medium in detached pods or as isolated seeds. Changes in water relations of embryo tissues were independent of maternal tissues. During seed maturation in situ, water and osmotic potentials in both embryo and maternal tissues declined sharply near the time of maximum dry weight. During in vitro seed culture with and without pods, water and osmotic potentials in axis and cotyledon tissues declined continuously during growth. Water and osmotic potentials of the seed coat, which was present only during in vitro seed culture with pods, changed little during the culture period. Positive turgor in the embryo was maintained beyond maximum dry weight and the loss of green color during in vitro culture but declined to zero at maturity in situ. The osmotic potential in embryo tissues declined from -1.1 megapascals at early pod fill to between -1.65 and -2.2 megapascals at maximum seed dry weight across all maturation environments. It is suggested that the decreasing osmotic potential in the growing soybean embryo reaches a threshold level that is associated with cessation of growth and onset of seed maturation.
大豆(Glycine max [L.] Merrill)胚和相关母体组织的水势、渗透势和压力势在种子生长和成熟过程中进行了测量,以检验胚水分关系在种子成熟中的作用。种子在附着的豆荚或分离的种子中在体内或体外液体培养基中成熟。胚组织水分关系的变化与母体组织无关。在体内种子成熟过程中,胚和母体组织的水势和渗透势在最大干重附近急剧下降。在有荚和无荚的体外种子培养中,轴和子叶组织的水势和渗透势在生长过程中持续下降。种皮的水势和渗透势(仅在有荚的体外种子培养中存在)在培养期间变化不大。正膨压在体外培养中保持到最大干重和绿色褪去之后,但在体内成熟时降至零。在所有成熟环境中,胚组织的渗透势从荚早期填充时的-1.1 兆帕斯卡下降到最大种子干重时的-1.65 到-2.2 兆帕斯卡。有人认为,生长中的大豆胚的渗透势下降到一个与生长停止和种子成熟开始相关的阈值水平。