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Water uptake by seminal and adventitious roots in relation to whole-plant water flow in barley (Hordeum vulgare L.)

机译:大麦和大麦不定根对整株水的吸收

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摘要

Prior to an assessment of the role of aquaporins in root water uptake, the main path of water movement in different types of root and driving forces during day and night need to be known. In the present study on hydroponically grown barley (Hordeum vulgare L.) the two main root types of 14- to 17-d-old plants were analysed for hydraulic conductivity in dependence of the main driving force (hydrostatic, osmotic). Seminal roots contributed 92% and adventitious roots 8% to plant water uptake. The lower contribution of adventitious compared with seminal roots was associated with a smaller surface area and number of roots per plant and a lower axial hydraulic conductance, and occurred despite a less-developed endodermis. The radial hydraulic conductivity of the two types of root was similar and depended little on the prevailing driving force, suggesting that water uptake occurred along a pathway that involved crossing of membrane(s). Exudation experiments showed that osmotic forces were sufficient to support night-time transpiration, yet transpiration experiments and cuticle permeance data questioned the significance of osmotic forces. During the day, 90% of water uptake was driven by a tension of about –0.15 MPa.
机译:在评估水通道蛋白在根水吸收中的作用之前,需要了解白天和黑夜中不同类型的根中水运动的主要路径和驱动力。在本研究中,对水培大麦(Hordeum vulgare L.)的两种主要根型(14至17日龄植物)的水力传导率进行了分析,取决于主要驱动力(静水,渗透压)。精根占植物水分吸收的92%,不定根占8%。与生根相比,不定根的贡献较小,这与表面积和单株根数较小以及轴向水力传导率较低有关,尽管内胚层发育不佳。两种类型的根的径向水力传导率相似,并且几乎不依赖于主导的驱动力,这表明水的吸收是沿着涉及膜交叉的途径发生的。渗出实验表明渗透力足以支持夜间蒸腾,但是蒸腾实验和角质层渗透数据质疑了渗透力的重要性。白天,约–0.15 MPa的张力驱动了90%的水分吸收。

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  • 年度 2010
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