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首页> 外文期刊>Acta Physiologiae Plantarum >In vivo and in vitro effects of copper and cadmium on the plasma membrane H+-ATPase from cucumber (Cucumis sativus L.) and maize (Zea mays L.) roots
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In vivo and in vitro effects of copper and cadmium on the plasma membrane H+-ATPase from cucumber (Cucumis sativus L.) and maize (Zea mays L.) roots

机译:铜和镉对黄瓜(Cucumis sativus L.)和玉米(Zea mays L.)根系质膜H + -ATPase的体内外影响

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The plasmalemma vesicles isolated from cucumber and maize roots were used to study the effect of Cu2+ and Cd2+ on the hydrolytic and proton pumping activities of ATPase. In vivo application of metal ions to the plant growth solutions resulted in stimulation of the proton transport in maize. In cucumber roots the action of metals was not the same: cadmium stimulated the H+ transport through plasmalemma whereas Cu2+ almost completely inhibited it. Copper ions decreased the hydrolytic activity of H+-ATPase in cucumber, without any effect on this activity in membranes isolated from maize roots. The effect of cadmium on the hydrolytic activities was opposite: ATP-hydrolysis activity in plasmalemma was not altered in cucumber, whereas in maize its stimulation was observed. The amount of accumulated metals was not the main reason of different influence of metals on H+-ATPase activity in tested plants. In in vitro experiments Cu2+ inhibited H+ transport in the cucumber, to a higher degree than Cd2+ and both metals did not change this H+-ATPase activity of plasmalemma isolated from corn roots. Cu2+ added into the incubation medium reduced the hydrolytic activity of ATPase in the plasma membrane isolated from cucumber as well as from corn roots. Cd2+ diminished the hydrolytic activity of ATPase in cucumber, and no effect of Cd2+ in the plasmalemma isolated from corn roots was found. Our results indicated different in vitro and in vivo action of both metals on H+-ATPase and different response of this enzyme to Cu2+ and Cd2+ in maize and cucumber.
机译:利用黄瓜和玉米根系的质膜囊泡,研究Cu2 + 和Cd2 + 对ATPase水解和质子泵浦活性的影响。金属离子在体内向植物生长溶液中的应用导致玉米中质子运输的刺激。在黄瓜根中,金属的作用不同:镉刺激了血浆中的H + 转运,而Cu2 + 几乎完全抑制了它。铜离子降低了黄瓜中H + -ATPase的水解活性,而对从玉米根部分离的膜中的这种活性没有任何影响。镉对水解活性的影响是相反的:黄瓜中血浆中的ATP水解活性没有改变,而在玉米中观察到了它的刺激。积累的金属量不是受试植物中金属对H + -ATPase活性影响不同的主要原因。在体外实验中,Cu2 + 抑制黄瓜中H + 的迁移的程度高于Cd2 + ,并且两种金属均未改变分离自玉米的质膜的H + -ATPase活性根。添加到培养液中的Cu2 + 降低了从黄瓜以及玉米根中分离出的质膜中ATPase的水解活性。 Cd2 + 降低了黄瓜中ATPase的水解活性,未发现Cd2 + 对从玉米根分离出的质膜有影响。我们的结果表明,两种金属对H + -ATPase的体外和体内作用不同,并且该酶对玉米和黄瓜中Cu2 + 和Cd2 + 的响应不同。

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