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南瓜花粉活力:生物物理和结构数据。

Viability of Cururbita pepo pollen: biophysical and structural data.

机构信息

Laboratoire Reconnaissance Cellulaire et Amelioration des Plantes, LA INRA 879, Université Claude Bernard Lyon I, Bât. 741, 43 Boulevard du 11 Novembre 1918, F-69622, Villeurbanne Cédex, France.

出版信息

Planta. 1989 Sep;179(2):165-70. doi: 10.1007/BF00393686.

Abstract

During ageing of the short-lived pollen grains of Cucurbita pepo L., water loss was examined in relation to viability using biophysical ((1)H-nuclear magnetic resonance, NMR) and cytological methods (fluorochromatic reaction test, freezefracture and scanning electron microscopy). A semi-logarithmic representation of the pollen weight loss demonstrated the complexity of the dehydration process. A the study of proton loss using (1)H-NMR indicated that two major releases water of had taken place, each with different flux rates. Pulse (1)H-NMR experiments showed the occurrene of non-exponential signal decay as a function of time, indicating the existence of different fractions of water in a pollen grain sample. These fractions leave the pollen grain at different times during pollen dehydration, and one of them (that of the so-called "vital water") can be related to pollen viability. The quantity of protons giving a signal during pulse (1)H-NMR experiments was very low when the pollen grains were judged to be dead according to the fluorochromatic test. Freeze-fracture replicas of these dead pollen grains (less than 25% water content) showed that the plasma membrane had become detached from the intine surface; this ultrastructural feature might therefore be involved in the loss of pollen viability.

摘要

在短命花粉粒衰老过程中,使用生物物理(1H 核磁共振,NMR)和细胞学方法(荧光反应测试、冷冻断裂和扫描电子显微镜)研究了与活力相关的水分损失。花粉重量损失的半对数表示表明脱水过程的复杂性。使用 1H-NMR 研究质子损失表明,已经发生了两次主要的水释放,每次释放的通量速率都不同。脉冲 1H-NMR 实验表明,随着时间的推移,信号衰减呈非指数关系,表明花粉粒样品中存在不同的水分分数。这些分数在花粉脱水过程中以不同的时间离开花粉粒,其中之一(所谓的“活力水”)可以与花粉活力相关。根据荧光反应测试,当花粉粒被判断为死亡时,在脉冲 1H-NMR 实验中给出信号的质子数量非常低。这些死亡花粉粒的冷冻断裂复制品(含水量低于 25%)表明质膜已从内壁表面分离;因此,这种超微结构特征可能与花粉活力的丧失有关。

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