2008Russian Journal of Plant PhysiologyRequires access

Differential sensitivities of water diffusion in maize root cortex and stele to HgCl2-induced blockade of aquaporins

I. F. Ionenko, А. В. Анисимов

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Abstract

Spin-echo NMR comparative study of water diffusion in the cortex and stele of maize ( Zea mays L.) roots was made with the aim to determine predominant pathways of radial water movement in the root. The root parts examined differed in terms of water diffusion coefficients and sensitivity to HgCl 2 , the aquaporin blocker. These differences are discussed from the viewpoint of unequal contributions of separate transport pathways (apoplastic, symplastic, and transmembrane) to the overall water flow. Characteristics of water diffusion in roots with the endodermis damaged suggest an inconsiderable contribution of the endodermis into resistance to water movement.

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Spin-echo NMR comparative study of water diffusion in the cortex and stele of maize ( Zea mays L.) roots was made with the aim to determine predominant pathways of radial water movement in the root. The root parts examined differed in terms of water diffusion coefficients and sensitivity to HgCl 2 , the aquaporin blocker. These differences are discussed from the viewpoint of unequal contributions of separate transport pathways (apoplastic, symplastic, and transmembrane) to the overall water flow. Characteristics of water diffusion in roots with the endodermis damaged suggest an inconsiderable contribution of the endodermis into resistance to water movement.

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Available abstract

Spin-echo NMR comparative study of water diffusion in the cortex and stele of maize ( Zea mays L.) roots was made with the aim to determine predominant pathways of radial water movement in the root. The root parts examined differed in terms of water diffusion coefficients and sensitivity to HgCl 2 , the aquaporin blocker. These differences are discussed from the viewpoint of unequal contributions of separate transport pathways (apoplastic, symplastic, and transmembrane) to the overall water flow. Characteristics of water diffusion in roots with the endodermis damaged suggest an inconsiderable contribution of the endodermis into resistance to water movement.

Key concepts: Stele, Endodermis, Apoplast, Water transport, Diffusion, Cortex (anatomy), Aquaporin, Water flow

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