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Effect of electric field on physical states of cell-associated water in germinating morning glory seeds observed by 1H-NMR.

作者信息

Isobe S, Ishida N, Koizumi M, Kano H, Hazlewood C F

机构信息

National Food Research Institute, Tsukuba, Ibaraki 305-8642, Japan.

出版信息

Biochim Biophys Acta. 1999 Jan 4;1426(1):17-31. doi: 10.1016/s0304-4165(98)00119-6.

Abstract

Morning glory seeds in dry conditions (0.099 g H2O/dry wt.) were exposed to electric fields and germinated. The physical state of water in the germinating seeds of both control and exposed groups were examined using 1H-NMR spectroscopy and NMR microscopy. Three water fractions were observed which were characterized by different relaxation times (T1) and chemical shifts. The average region containing long T1 fractions was approximately 50 micrometer in diameter and consisted of half-permeable barriers. The maximum intracellular water transport rate was 2.3x10-5 cm2/s. The treatment with electric field (500 kV/m for 60 min) increased the fraction with the shortest T1 and decreased that with the longest T1. Because the total water content in the treated seeds (3.4 g H2O/dry wt.) was similar to that in the untreated seeds (3.9 g H2O/dry wt.), the treated seeds held more water in a condition in restricted motion than the untreated seeds. It is thought that the membrane systems were affected by the electric polarization which led to an unusual accumulation of water and the hydration of stored macromolecules during the imbibition process. This set of events led to excessive swelling of stored macromolecules, resulting in the disruption of membrane systems and irregular organization of tissue structures.

摘要

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