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Transport Interactions between Paraquat and Polyamines in Roots of Intact Maize Seedlings

机译:百草枯与多胺在完整玉米幼苗根系中的运输相互作用

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摘要

Interactions between absorption of paraquat and the polyamines putrescine, cadaverine, and spermine in roots of intact maize (Zea mays L. cv 3377 Pioneer) seedlings were examined. Concentration-dependent kinetics for paraquat and putrescine influx were similar and both kinetic curves could be resolved into a linear and a saturable component. The linear component was previously shown to represent cell wall/membrane binding. The saturable components for paraquat and putrescine uptake, which represent influx across the plasmalemma, had Km values of 98 and 120 micromolar, respectively, and Vmax values of 445 and 456 nanomoles per gram fresh weight per hour, respectively. Lineweaver-Burk transformation of the saturable component of paraquat influx in the presence of varying concentrations of putrescine indicated that the diamine competitively inhibited the saturable component of paraquat uptake. Reciprocal experiments similarly demonstrated that paraquat competitively inhibited the saturable component of putrescine uptake. Competitive inhibition of both paraquat and putrescine influx could also be demonstrated with the diamine cadaverine, which has a charge distribution similar to that of paraquat and putrescine. In contrast, the larger, tetravalent polyamine spermine appeared to noncompetitively inhibit the influx of paraquat and putrescine. These results strongly suggest that paraquat enters maize root cells via a carrier system that normally functions in the transport of diamines with a charge distribution similar to that of paraquat.
机译:考察了百草枯与完整玉米(Zea mays L. cv 3377 Pioneer)幼苗根中多胺腐胺,尸胺和精胺之间的相互作用。百草枯和腐胺涌入的浓度依赖性动力学相似,并且两种动力学曲线都可以分解为线性和饱和组分。先前显示线性成分代表细胞壁/膜结合。百草枯和腐胺摄取的可饱和成分(代表整个质膜的涌入)的Km值分别为98和120微摩尔,每克鲜重每小时的Vmax值分别为445和456纳摩尔。在不同浓度的腐胺存在下,百草枯涌入的饱和成分的Lineweaver-Burk转化表明,二胺竞争性地抑制了百草枯吸收的饱和成分。相互的实验同样证明百草枯竞争性地抑制了腐胺摄取的可饱和成分。二胺尸胺也可以证明对百草枯和腐胺的流入有竞争性抑制作用,其电荷分布与百草枯和腐胺类似。相反,较大的四价多胺精胺似乎非竞争性地抑制百草枯和腐胺的涌入。这些结果强烈表明百草枯通过载体系统进入玉米根细胞,该载体系统通常在二胺的运输中起作用,其电荷分布与百草枯相似。

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