Plant Physiology Research Group, Department of Biology, University of Calgary, T2N 1N4, Calgary, Alta, Canada.
Planta. 1983 Oct;159(2):182-8. doi: 10.1007/BF00392991.
Grand Rapids lettuce (Lactuca sativa L.) seeds retained their viability for up to ten months when maintained in the fully imbibed state on moist filter paper at 25°C in darkness. The ability of red light (R) to promote their germination was essentially lost within one week from the start of imbibition; sensitivity to gibberellic acid was retained for two weeks longer. Seeds which did not respond to either treatment had entered the state of secondary dormancy (skotodormancy). This could be relieved at all times by a combination of benzyladenine and R applied to the intact seed, or by isolation of the embryo and incubation on water. Protein synthesis increased initially following imbibition but declined after 72 h to a constant low level. Respiration declined over the first week of storage in the imbibed state to a much-reduced steady level. Cotyledonary lipid declined between four and ten months of storage but the axial lipid remained unchanged. Sucrose in the embryo increased after five months, but no changes in glucose, galactose, fructose or mannose were found. The total N content of the cotyledons declined over the first three months of storage in the imbibed state, with a concomitant rise in axial N; the latter declined slowly thereafter. Basal α-galactosidase (EC 3.2.1.22) activity decreased over seven months, but the phytochrome-induced component could not be raised by a 15-min R treatment even after one month. Germination induced by R and benzyladenine was achieved at later times without a rise in α-galactosidase levels.
在黑暗中,25°C 条件下,用湿润滤纸保持完全吸胀状态,大急流城生菜(生菜 L.)种子可保持活力长达十个月。红光(R)促进其发芽的能力从吸胀开始后一周内基本丧失;对赤霉素的敏感性保持更长两周。对两种处理都不响应的种子已进入次级休眠(skotodormancy)状态。通过组合应用苄基腺嘌呤和 R 处理完整种子,或通过分离胚并在水中培养,随时可以缓解这种状态。吸胀后蛋白质合成最初增加,但在 72 小时后下降到一个恒定的低水平。在吸胀状态下储存的第一周,呼吸作用下降到一个大大降低的稳定水平。子叶脂质在储存的四到十个月之间下降,但轴向脂质保持不变。胚中的蔗糖在五个月后增加,但葡萄糖、半乳糖、果糖或甘露糖没有变化。在吸胀状态下储存的头三个月,子叶中的总氮含量下降,轴向氮含量增加;此后,后者缓慢下降。基础α-半乳糖苷酶(EC 3.2.1.22)活性在七个月内下降,但即使在一个月后,红光处理也不能提高植物色素诱导的成分。红光和苄基腺嘌呤诱导的发芽在较晚的时间实现,而α-半乳糖苷酶水平没有升高。