Effects of Hypoxia on 13NH4+Fluxes in Rice Roots1

Author:

Kronzucker Herbert J.12,Kirk Guy J.D.1,Yaeesh Siddiqi M.2,Glass Anthony D.M.2

Affiliation:

1. International Rice Research Institute, P.O. Box 933, 1099 Manila, Philippines (H.J.K., G.J.D.K.)

2. Department of Botany, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4 (H.J.K., M.Y.S., A.D.M.G.)

Abstract

Abstract Techniques of compartmental (efflux) and kinetic influx analyses with the radiotracer13NH4+ were used to examine the adaptation to hypoxia (15, 35, and 50% O2 saturation) of root N uptake and metabolism in 3-week-old hydroponically grown rice (Oryza sativa L., cv IR72) seedlings. A time-dependence study of NH4+ influx into rice roots after onset of hypoxia (15% O2) revealed an initial increase in the first 1 to 2.5 h after treatment imposition, followed by a decline to less than 50% of influx in control plants by 4 d. Efflux analyses conducted 0, 1, 3, and 5 d after the treatment confirmed this adaptation pattern of NH4+uptake. Half-lives for NH4+ exchange with subcellular compartments, cytoplasmic NH4+concentrations, and efflux (as percentage of influx) were unaffected by hypoxia. However, significant differences were observed in the relative amounts of N allocated to NH4+ assimilation and the vacuole versus translocation to the shoot. Kinetic experiments conducted at 100, 50, 35, and 15% O2 saturation showed no significant change in the Km value for NH4+ uptake with varying O2 supply. However, Vmax was 42% higher than controls at 50% O2 saturation, unchanged at 35%, and 10% lower than controls at 15% O2. The significance of these flux adaptations is discussed.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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