Phloem water relations and root growth

J. Pritchard, Sam Winch, N. Gould
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引用次数: 38

Abstract

In this paper the biophysical basis of cell expansion is described, paying particular attention to the waterrelations that underpin the process. The connection of growing root cells to the rest of the plant will be addressed and possible control points in the hardware identified. Examples of environmental modification of root extension, and therefore water and solute import, are given, and the relationship with current accepted theories of solute translocation discussed. The opportunities for delivery of solutes and water to be regulated by the growing root itself will be considered, in particular the dual role of cell wall loosening in decreasing both sink cell turgor and water potential. We conclude that a significant proportion of the water for cell expansion can enter growing root cells through the phloem. The physiological data presented rule out alterations in the turgor pressure difference between sieve element and cell as a modulator of solute flux. The plasmodesmata are identified as the major control point of solute flux along the symplastic pathway.
韧皮部水分关系与根生长
在本文中,描述了细胞扩增的生物物理基础,特别注意支撑该过程的水关系。将解决生长的根细胞与植物其余部分的连接,并确定硬件中可能的控制点。举例说明了环境改变对根延伸的影响,从而导致水和溶质的输入,并讨论了与目前公认的溶质转运理论的关系。溶质和水的输送由生长的根本身调节的机会将被考虑,特别是细胞壁松动在降低汇细胞膨胀和水势方面的双重作用。我们得出的结论是,细胞生长所需的大部分水分可以通过韧皮部进入生长的根细胞。所提出的生理数据排除了筛元和细胞之间的膨压差作为溶质通量调节剂的变化。胞间连丝被认为是沿共塑途径溶质通量的主要控制点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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