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采用 3 钠基,3-羟基-5,8,10-苝三磺酸定量研究红松根系质外体流。

Quantifying Apoplastic Flux through Red Pine Root Systems Using Trisodium, 3-hydroxy-5,8,10-pyrenetrisulfonate.

机构信息

Plant Physiology Program, University of Minnesota, St. Paul, Minnesota 55108.

出版信息

Plant Physiol. 1985 Jan;77(1):21-4. doi: 10.1104/pp.77.1.21.

Abstract

The fluorescent compound trisodium, 3-hydroxy-5,8,10-pyrenetrisulfonate (PTS) was used to quantify the apoplastic flux through red pine (Pinus resinosa Ait.) root systems-that portion of the total water flux reaching the xylem without ever crossing a semipermeable membrane. Flow was induced by pressure through detopped root systems, and by transpiration through intact seedlings. Apoplastic flux was determined by multiplying total flux by the ratio of PTS concentration in the xylem exudate to PTS concentration in the bathing medium.Under aeration, apoplastic flux was less than 1% of total flux. Under anaerobic conditions, up to 50% of total flux was apoplastic suggesting that anaerobic conditions change the pathway of water flow into root xylem. The change under anaerobic conditions was reversible. Detopped root systems under pressure and intact seedlings under transpiration gave similar results. In detopped root systems, the magnitude of the pressure gradient may alter the apoplastic contribution to total flux.

摘要

荧光化合物三钠盐,3-羟基-5,8,10-苝三磺酸(PTS)被用于定量测定红松(Pinus resinosa Ait.)根系的质外体流-即到达木质部的总水流的一部分,而从未穿过半透膜。通过去顶根系加压和完整幼苗蒸腾来诱导流动。质外体通量通过将总通量乘以木质部渗出物中 PTS 浓度与浴液中 PTS 浓度的比值来确定。在通气条件下,质外体通量小于总通量的 1%。在厌氧条件下,高达 50%的总通量是质外体,表明厌氧条件改变了水流进入根木质部的途径。在厌氧条件下的变化是可逆的。加压去顶根系和蒸腾完整幼苗得出了相似的结果。在去顶根系中,压力梯度的大小可能会改变质外体对总通量的贡献。

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