Boyce Thompson Institute, Ithaca, New York 14853.
Plant Physiol. 1992 Sep;100(1):225-30. doi: 10.1104/pp.100.1.225.
The desiccation-tolerant state in seeds is associated with high levels of certain sugars and maturation proteins. The aim of this work was to evaluate the contributions of these components to desiccation tolerance in soybean (Glycine max [L.] Merrill cv Chippewa 64). When axes of immature seeds (34 d after flowering) were excised and gradually dried (6 d), desiccation tolerance was induced. By contrast, seeds held at high relative humidity for the same period were destroyed by desiccation. Maturation proteins rapidly accumulated in the axes whether the seeds were slowly dried or maintained at high relative humidity. During slow drying, sucrose content increased to five times the level present in the axes of seeds held at high relative humidity (128 versus 25 mug/axis, respectively). Stachyose content increased dramatically from barely detectable levels upon excision to 483 mug/axis during slow drying but did not increase significantly when seeds were incubated at high relative humidity. Galactinol was the only saccharide that accumulated to higher levels in axes from seeds incubated at high relative humidity relative to axes from seeds that were slowly dried. This suggests that slow drying serves to induce the accumulation of the raffinose series sugars at a point after galactinol biosynthesis. We conclude that stachyose plays an important role in conferring desiccation tolerance.
种子的耐旱状态与某些高浓度糖和成熟蛋白有关。本研究旨在评估这些成分对大豆(Glycine max [L.] Merrill cv Chippewa 64)耐旱性的贡献。将未成熟种子的胚轴(开花后 34 天)取出并逐渐干燥(6 天),可诱导耐旱性。相比之下,在相同时间内保持高相对湿度的种子会因干燥而受损。无论种子是缓慢干燥还是保持高相对湿度,成熟蛋白都会迅速在胚轴中积累。在缓慢干燥过程中,蔗糖含量增加到高相对湿度下种子胚轴中含量的五倍(分别为 128 和 25 mug/轴)。棉子糖含量在缓慢干燥过程中从切除后的几乎检测不到水平急剧增加到 483 mug/轴,但在高相对湿度下孵育种子时并未显著增加。半乳糖醇是唯一一种在高相对湿度下孵育种子的胚轴中积累水平高于缓慢干燥种子的糖。这表明缓慢干燥有助于在半乳糖醇生物合成后积累棉子糖系列糖。我们得出结论,棉子糖在赋予耐旱性方面起着重要作用。