Gas and Liquids in Intercellular Spaces of Maize Roots (original) (raw)

Root Cortex Provides a Venue for Gas-Space Formation and Is Essential for Plant Adaptation to Waterlogging

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Regulation of Intercellular Water Exchange in Various Zones of Maize Root under Stresses

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Growth of the Maize Primary Root at Low Water Potentials : II. Role of Growth and Deposition of Hexose and Potassium in Osmotic Adjustment

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The effect of polyethylene glycol-induced water stress on the maize root apex

Milada Čiamporová

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Diurnal variation in the radial reflection coefficient of intact maize roots determined with the xylem pressure probe

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Section 4 - Root physiology and plant structure

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Reductions in maize root-tip elongation by salt and osmotic stress do not correlate with apoplastic O2*- levels

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Trans-root potential, xylem pressure, and root cortical membrane potential of ‘low-salt’ maize plants as influenced by nitrate and ammonium

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Journal of Experimental Botany Ultrastructural and physiological changes in root cells of

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1996

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Swelling of root cell walls as an indicator of their functional state

Nataly Meychik

Biochemistry. Biokhimii͡a, 2001

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Nonvascular, Symplasmic Diffusion of Sucrose Cannot Satisfy the Carbon Demands of Growth in the Prit6ary Root Tip of Zea mays 1

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2000

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Enhanced formation of aerenchyma and induction of a barrier to radial oxygen loss in adventitious roots of Zea nicaraguensis contribute to its waterlogging tolerance as compared with maize (Zea mays ssp. mays)

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Water Retention Capacity in Root Segments Differing in the Degree of Exodermis Development

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Biology plant physiology absorption by roots osmosis and the ascent of sap notes compiled by akil

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Hydraulic Signals from the Roots and Rapid Cell-Wall Hardening in Growing Maize (Zea mays L.) Leaves Are Primary Responses to Polyethylene Glycol-Induced Water Deficits

O. Chazen

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Mario Parisi, Gabriela Amodeo

Journal of Experimental Botany, 1999

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Effects of Low Water Potential on Cortical Cell Length in Growing Regions of Maize Roots

Thomas Rost

PLANT PHYSIOLOGY, 1990

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Electrophysiological responses of maize roots to low water potentials: relationship to growth and ABA accumulation

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Transient and permanent changes of xylem sap exudation by root systems of Zea mays after application of hydrostatic and osmotic forces

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