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Functional imaging of plants: a nuclear magnetic resonance study of a cucumber plant.

机译:植物功能成像:黄瓜植物的核磁共振研究。

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摘要

Functional magnetic resonance imaging was used to study transients of biophysical parameters in a cucumber plant in response to environmental changes. Detailed flow imaging experiments showed the location of xylem and phloem in the stem and the response of the following flow characteristics to the imposed environmental changes: the total amount of water, the amount of stationary and flowing water, the linear velocity of the flowing water, and the volume flow. The total measured volume flow through the plant stem was in good agreement with the independently measured water uptake by the roots. A separate analysis of the flow characteristics for two vascular bundles revealed that changes in volume flow of the xylem sap were accounted for by a change in linear-flow velocities in the xylem vessels. Multiple-spin echo experiments revealed two water fractions for different tissues in the plant stem; the spin-spin relaxation time of the larger fraction of parenchyma tissue in the center of the stem and the vascular tissue was down by 17% in the period after cooling the roots of the plant. This could point to an increased water permeability of the tonoplast membrane of the observed cells in this period of quick recovery from severe water loss.
机译:功能磁共振成像用于研究黄瓜植物响应环境变化的生物物理参数的瞬变。详细的流量成像实验显示了木质部和韧皮部在茎中的位置,以及以下流量特征对施加的环境变化的响应:总水量,固定水和流动水的量,流动水的线速度,和体积流量。通过植物茎的总测量体积流量与根部独立测量的吸水量非常吻合。对两个血管束的流动特性进行的单独分析表明,木质部树液体积流量的变化是由木质部血管中线性流速的变化引起的。多旋回波实验揭示了植物茎中不同组织的两个水分含量;在植物根部冷却后,茎中心和维管组织中较大的薄壁组织的自旋自旋弛豫时间减少了17%。这可能表明在从严重失水迅速恢复的这段时间内,观察到的细胞的液泡膜的透水性增加。

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