Zimmermann U, Rygol J, Balling A, Klöck G, Metzler A, Haase A
Lehrstuhl für Biotechnologie, Am Hubland, Biozentrum, 8700 Würzburg, Germany.
Plant Physiol. 1992 May;99(1):186-96. doi: 10.1104/pp.99.1.186.
High-resolution nuclear magnetic resonance images (using very short spin-echo times of 3.8 milliseconds) of cross-sections of excised roots of the halophyte Aster tripolium showed radial cell strands separated by air-filled spaces. Radial insertion of the pressure probe (along the cell strands) into roots of intact plants revealed a marked increase of the turgor pressure from the outermost to the sixth cortical layer (from about 0.1-0.6 megapascals). Corresponding measurements of intracellular osmotic pressure in individual cortical cells (by means of a nanoliter osmometer) showed an osmotic pressure gradient of equal magnitude to the turgor pressure. Neither gradient changed significantly when the plants were grown in, or exposed for 1 hour to, media of high salinity. Differences were recorded in the ability of salts and nonelectrolytes to penetrate the apoplast in the root. The reflection coefficients of the cortical cells were approximately 1 for all the solutes tested. Excision of the root from the stem resulted in a collapse of the turgor and osmotic pressure gradients. After about 15 to 30 minutes, the turgor pressure throughout the cortex attained an intermediate (quasistationary) level of about 0.3 megapascals. This value agreed well with the osmotic value deduced from plasmolysis experiments on excised root segments. These and other data provided conclusions about the driving forces for water and solute transport in the roots and about the function of the air-filled radial spaces in water transport. They also showed that excised roots may be artifactual systems.
对盐生植物滨海紫菀切除根部的横截面进行高分辨率核磁共振成像(使用3.8毫秒的极短自旋回波时间),结果显示径向细胞链被充满空气的间隙隔开。将压力探针沿细胞链径向插入完整植株的根部,结果显示从最外层到第六皮层的膨压显著增加(从约0.1 - 0.6兆帕斯卡)。通过纳升渗透计对单个皮层细胞内的细胞内渗透压进行相应测量,结果显示渗透压梯度与膨压大小相等。当植株在高盐度培养基中生长或暴露于高盐度培养基1小时后,这两个梯度均未发生显著变化。记录了盐类和非电解质穿透根部质外体能力的差异。对于所有测试溶质,皮层细胞的反射系数约为1。将根从茎上切除会导致膨压和渗透压梯度消失。大约15至30分钟后,整个皮层的膨压达到约0.3兆帕斯卡的中间(准静态)水平。该值与从切除根段的质壁分离实验推导得出的渗透值非常吻合。这些数据以及其他数据为根中水分和溶质运输的驱动力以及充满空气的径向间隙在水分运输中的作用提供了结论。它们还表明,切除的根可能是人为构建的系统。