Dutta S., Bradford K. J., Nevins D. J.
Department of Vegetable Crops, University of California, Davis, California 95616-8741.
Plant Physiol. 1994 Feb;104(2):623-628. doi: 10.1104/pp.104.2.623.
Cell walls prepared from the endosperm tissue of hydrated lettuce (Lactuca sativa L.) seeds undergo autohydrolysis. Release of carbohydrates is most rapid (0.4-0.6 [mu]g per endosperm) within the 1st h of incubation in buffer, but substantial autolysis is sustained for at least 10 h. Autolysis is temperature sensitive, and the optimum rate occurs at pH 5. The rate of autolysis increases markedly in the period just prior to radicle emergence. The cell-wall polysaccharide composition in micropylar and lateral endosperm regions differs significantly; the micropylar walls are rich in arabinose and glucose with substantially lower amounts of mannose. Although walls prepared from both micropylar and lateral regions undergo autolysis, micropylar walls release carbohydrates at a higher rate than lateral walls. Autolysis products elute as large polymers when subjected to size-exclusion chromatography, suggesting that endo-enzyme activity is responsible for release of fragments containing arabinose, galactose, mannose, and uronic acids. Arabinose, galactose, mannose, and glucose are also released as monomers. As a function of time, the ratio of polymers to monomers decreases, indicating that exo-enzyme activity is also present. Thermoinhibition or treatment with abscisic acid suppresses germination and reduces the rates of autolysis of walls isolated from the endosperm by about 25%. Treatments that alleviate thermoinhibition (kinetin and gibberellic acid) increase the rates of autolysis by 20 to 30% when compared to thermoinhibited controls.
从吸胀的生菜(Lactuca sativa L.)种子胚乳组织制备的细胞壁会发生自水解。在缓冲液中孵育的第1小时内,碳水化合物的释放最为迅速(每个胚乳0.4 - 0.6μg),但大量的自溶作用会持续至少10小时。自溶作用对温度敏感,最适速率出现在pH 5时。在胚根出现前的一段时间内,自溶速率显著增加。珠孔和外侧胚乳区域的细胞壁多糖组成有显著差异;珠孔壁富含阿拉伯糖和葡萄糖,甘露糖含量则低得多。尽管从珠孔和外侧区域制备的细胞壁都会发生自溶,但珠孔壁释放碳水化合物的速率高于外侧壁。自溶产物在进行尺寸排阻色谱分析时以大聚合物形式洗脱,这表明内切酶活性负责释放含有阿拉伯糖、半乳糖、甘露糖和糖醛酸的片段。阿拉伯糖、半乳糖、甘露糖和葡萄糖也以单体形式释放。随着时间的推移,聚合物与单体的比例降低,这表明也存在外切酶活性。热抑制或用脱落酸处理会抑制发芽,并使从胚乳分离的细胞壁自溶速率降低约25%。与热抑制对照相比,缓解热抑制的处理(激动素和赤霉素)会使自溶速率提高20%至30%。