Department of Crop Science, University of Guelph, Guelph, Ontario N1G 2WI Canada.
Plant Physiol. 1980 Aug;66(2):316-20. doi: 10.1104/pp.66.2.316.
Membrane damage as a result of dehydration was studied in Lotus corniculatus L. cv. Carroll seeds which had been pregerminated for 0, 12, and 24 hours prior to dehydration. During reimbibition, desiccation-tolerant (0- and 12-hour) seeds leaked relatively low quantities of all solutes (total electrolytes, potassium, phosphate, sugar, amino acid, and protein). Desiccation-sensitive (24-hour) seeds leaked higher levels, but evidence of selective permeability remained. Membrane damage was not manifested as a complete removal of the diffusion barrier, although its permeability properties were dramatically altered. Consequently, the plasmalemma was not ruptured or torn by the dehydration treatment, but a more subtle structural alteration occurred.The possibility that seed membranes form a hexagonal rather than a lamellar phase at moisture contents below 20% was investigated by x-ray diffraction. Phospholipids were extracted from desiccation-tolerant (0-hour) and desiccation-sensitive (24-hour) seeds and hydrated to 5, 10, 20, and 40% water. This phospholipid-water system was examined using low-and wide-angle x-ray diffraction and was found to be exclusively lamellar, even at 5% water. Consequently, membrane damage and the leakage of cytoplasmic solutes from seeds cannot be explained by the formation of a hexagonal phase by membrane phospholipids.
对经过预萌发 0、12 和 24 小时的 Carroll 型百脉根种子进行脱水处理,研究了脱水导致的膜损伤。在再水合过程中,耐旱(0 和 12 小时)种子泄漏的所有溶质(总电解质、钾、磷酸盐、糖、氨基酸和蛋白质)相对较少。而对脱水敏感(24 小时)的种子泄漏的水平更高,但仍有选择性渗透性的证据。膜损伤并未表现为扩散屏障的完全去除,尽管其渗透性发生了剧烈变化。因此,质膜并没有因脱水处理而破裂或撕裂,但发生了更细微的结构改变。通过 X 射线衍射研究了种子膜在含水量低于 20%时是否形成六方相而不是层状相的可能性。从耐旱(0 小时)和脱水敏感(24 小时)种子中提取磷脂,并将其水合至 5%、10%、20%和 40%的水分。使用低角度和宽角度 X 射线衍射对该磷脂-水系统进行了检查,发现即使在 5%的水分下,该系统也完全是层状的。因此,膜损伤和细胞质溶质从种子中泄漏不能用膜磷脂形成六方相来解释。