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Metabolic Implications in the Biochemical Responses to Iron Deficiency in Cucumber (Cucumis sativus L.) Roots.

机译:黄瓜(Cucumis sativus L.)根中对铁缺乏的生化反应的代谢影响。

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摘要

Strategy I plants respond to Fe deficiency by inducing morphological and biochemical modifications at the root level that are apt to make iron available for uptake. Cucumber (Cucumis sativus L.) grown in the absence of Fe has been shown to increase the capacity to acidify the rhizosphere and Fe3+ reduction activity. We have determined in these roots some metabolic activities that might be correlated with the increased proton extrusion. Proton efflux from roots may be followed by a mechanism regulating the cytosolic pH according to the pH-stat theory. Roots grown in the absence of Fe showed an increase in dark 14CO2 fixation and organic acid synthesis and a 6-fold increase in the extractable phosphoenolpyruvate carboxylase activity with respect to the control roots. Dehydrogenase activities producing cytosolic NAD(P)H were also increased under Fe deficiency. The presence of Fe2+, but not Fe3+, inhibited dark 14CO2 fixation in a range between 24 and 52% but did not show any effect on the in vitro phosphoenolpyruvate carboxylase activity.
机译:策略I植物通过在根水平上诱导易于使铁吸收的形态和生化修饰来应对铁缺乏症。在没有铁的情况下生长的黄瓜(Cucumis sativus L.)已显示出增加了对根际酸化的能力和Fe3 +还原活性。我们已经在这些根中确定了一些代谢活动,这些活动可能与质子挤出的增加有关。根的质子外排可以遵循根据pH-stat理论调节细胞质pH的机制。在没有铁的情况下生长的根表明,与对照根相比,深色14CO2固定和有机酸合成增加,可提取的磷酸烯醇丙酮酸羧化酶活性提高6倍。铁缺乏时,产生胞质NAD(P)H的脱氢酶活性也增加。 Fe 2+而不是Fe 3+的存在抑制了深色14CO 2的固定,其固定范围为24%至52%,但对体外磷酸烯醇丙酮酸羧化酶活性没有任何影响。

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