Cataldo D A, Wildung R E, Garland T R
Battelle, Pacific Northwest Laboratories, P. O. Box 999, Richland, Washington 99352.
Plant Physiol. 1983 Nov;73(3):849-52. doi: 10.1104/pp.73.3.849.
The absorption characteristics and mechanisms of pertechnetate (TcO(4) (-)) uptake by hydroponically grown soybean seedlings (Glycine max cv Williams) were determined. Absorption from 10 micromolar solutions was linear for at least 6 hours, with 30% of the absorbed TcO(4) (-) being transferred to the shoot. Evaluation of concentration-dependent absorption rates from solutions containing 0.02 to 10 micromolar TcO(4) (-) shows the presence of multiphasic absorption isotherms with calculated K(s) values of 0.09, 8.9, and 54 micromolar for intact seedlings. The uptake of TcO(4) (-) was inhibited by a 4-fold concentration excess of sulfate, phosphate, selenate, molybdate, and permanganate; no reduction was noted with borate, nitrate, tungstate, perrhenate, iodate, or vanadate. Analyses of the kinetics of interaction between TcO(4) (-) and inhibiting anions show permanganate to be a noncompetitive inhibitor, while sulfate, phosphate, and selenate, and molybdate exhibit characteristics of competitive inhibitors of TcO(4) (-) transport suggesting involvement of a common transport process.
测定了水培大豆幼苗(Glycine max cv Williams)对高锝酸盐(TcO(4) (-))的吸收特性及机制。从10微摩尔溶液中的吸收在至少6小时内呈线性,吸收的TcO(4) (-)中有30%转移到地上部分。对含有0.02至10微摩尔TcO(4) (-)的溶液进行浓度依赖性吸收速率评估,结果显示完整幼苗存在多相吸收等温线,计算得出的K(s)值分别为0.09、8.9和54微摩尔。4倍浓度过量的硫酸盐、磷酸盐、硒酸盐、钼酸盐和高锰酸盐可抑制TcO(4) (-)的吸收;硼酸盐、硝酸盐、钨酸盐、高铼酸盐、碘酸盐或钒酸盐则未观察到吸收减少。对TcO(4) (-)与抑制性阴离子之间相互作用的动力学分析表明,高锰酸盐是一种非竞争性抑制剂,而硫酸盐、磷酸盐、硒酸盐和钼酸盐表现出竞争性抑制剂的特性,提示TcO(4) (-)转运涉及共同的转运过程。