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枫叶中自旋弛豫和磁场梯度的核磁共振研究。

Nuclear magnetic resonance study of spin relaxation and magnetic field gradients in maple leaves.

作者信息

McCain D C

机构信息

Department of Molecular Physics, Wageningen Agricultural University, The Netherlands.

出版信息

Biophys J. 1995 Sep;69(3):1111-6. doi: 10.1016/S0006-3495(95)79985-4.

Abstract

1H Nuclear magnetic resonance techniques were used to measure the distributions of spin-spin relaxation times, T2, and of magnetic field gradients in both the chloroplast and nonchloroplast water compartments of maple leaves (Acer platanoides). Results showed that encounters between water molecules and membranes inside chloroplasts provide an inefficient relaxation mechanism; i.e., chloroplast membranes interact weakly with water molecules. Gradient measurements indirectly measured the sizes of chloroplasts by showing that water in the chloroplasts is confined to small compartments a few microns in diameter. A comparison between measured gradients and gradients calculated for a model leaf indicated that chloroplasts are somewhat more likely to occupy positions along cell walls adjacent to air spaces, but also they may be found in the interiors of cells.

摘要

利用核磁共振技术测量了枫叶(挪威槭)叶绿体和非叶绿体水室中自旋 - 自旋弛豫时间T2以及磁场梯度的分布。结果表明,叶绿体内部水分子与膜之间的碰撞提供了一种低效的弛豫机制;即叶绿体膜与水分子的相互作用较弱。梯度测量通过显示叶绿体中的水被限制在直径为几微米的小隔室中,间接测量了叶绿体的大小。实测梯度与模型叶片计算梯度的比较表明,叶绿体更有可能占据沿细胞壁与气隙相邻的位置,但也可能存在于细胞内部。

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