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植物中的镍:I. 利用完整的大豆幼苗进行吸收动力学研究。

Nickel in plants: I. Uptake kinetics using intact soybean seedlings.

机构信息

Environmental Chemistry Section, Ecosystems Department, Battelle, Pacific Northwest Laboratories, Richland, Washington 99352.

出版信息

Plant Physiol. 1978 Oct;62(4):563-5. doi: 10.1104/pp.62.4.563.

Abstract

The absorption of Ni(2+) by 21-day-old soybean plants (Glycine max cv. Williams) was investigated with respect to its concentration dependence, transport kinetics, and interactions with various nutrient cations. Nickel absorption, measured as a function of concentration (0.02 to 100 mum), demonstrated the presence of multiple absorption isotherms. Each of the three isotherms conforms to Michaelis-Menten kinetics; kinetic constants are reported for uptake by the intact plant and for transfer from root to shoot tissues. The absorption of Ni(2+) by the intact plant and its transfer from root to shoot were inhibited by the presence of Cu(2+), Zn(2+), Fe(2+), and Co(2+). Competition kinetic studies showed Cu(2+) and Zn(2+) to inhibit Ni(2+) absorption competitively, suggesting that Ni(2+), Cu(2+), and Zn(2+) are absorbed using the same carrier site. Calculated K(m) and K(i) constants for Ni(2+) in the presence and absence of Cu(2+) were 6.1 and 9.2 mum, respectively, whereas K(m) and K(i) constants were calculated to be 6.7 and 24.4 mum, respectively, for Ni(2+) in the presence and absence of Zn(2+). The mechanism of inhibition of Ni(2+) in the presence of Fe(2+) and Co(2+) was not resolved by classical kinetic relationships.

摘要

研究了 21 日龄大豆植株(Glycine max cv. Williams)对 Ni(2+)的吸收与其浓度依赖性、运输动力学以及与各种营养阳离子的相互作用。Ni(2+)的吸收,作为浓度(0.02 至 100 mum)的函数进行测量,显示出存在多种吸收等温线。三个等温线中的每一个都符合米氏-门坦动力学;报告了完整植物吸收和从根部到茎叶组织转移的动力学常数。完整植物对 Ni(2+)的吸收及其从根部向茎叶的转移受到 Cu(2+)、Zn(2+)、Fe(2+)和 Co(2+)的存在的抑制。竞争动力学研究表明,Cu(2+)和 Zn(2+)竞争性抑制 Ni(2+)吸收,表明 Ni(2+)、Cu(2+)和 Zn(2+)使用相同的载体位点吸收。在存在和不存在 Cu(2+)的情况下,Ni(2+)的 K(m)和 K(i)常数分别为 6.1 和 9.2 mum,而在存在和不存在 Zn(2+)的情况下,Ni(2+)的 K(m)和 K(i)常数分别为 6.7 和 24.4 mum。在 Fe(2+)和 Co(2+)存在下 Ni(2+)抑制的机制不能通过经典的动力学关系来解决。

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