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Translocation of Manganese Iron Cobalt and Zinc in Tomato

机译:番茄中锰铁钴和锌的转运

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摘要

Tomato plants in solution culture were treated with 0 to 50 μm Mn, Co, or Zn in the presence of 5 μm Fe. Stem exudates were analyzed to determine quantities and forms of the metals translocated.Mn had no effect on exudate volume. Co and Zn at 5 μm and above depressed exudate volumes. Nutrient Mn was concentrated 2 to 5 times in the exudates. Co and Zn concentrations were between 1 and 3.Tomato roots treated with 0 to 10 μm Mn released into the exudate an average of 29% of the Fe they absorbed. They released 21% of the absorbed Fe when treated with 50 μm Mn. On 50 μm Co or Zn, the roots released only about 1% of the absorbed Fe.The exudates contained 12 to 47 μm citrate, which was usually considerably in excess of Fe. Electrophoresis of exudate revealed Fe as the only metal in anionic form. Mn, Co, and Zn migrated as cations.The concentration of Ca was >3 mm and Mg >1.5 mm in the exudates. Estimates based on metal-citrate equilibrium constants and constants of metal displacement caused by Ca and Mg confirmed that Mn, Co, and Zn were transported predominantly as inorganic cations in the stem exudates.
机译:在5μmFe的存在下,用0至50μmMn,Co或Zn处理溶液培养的番茄植株。对茎的分泌物进行分析以测定易位金属的数量和形式。Mn对流出物的体积没有影响。 5μm及以上的Co和Zn降低了渗出液体积。营养性Mn在渗出液中浓缩2至5倍。 Co和Zn的浓度在1-3之间。用0至10μmMn处理的番茄根释放到渗出物中,平均吸收的Fe占29%。当用50μmMn处理时,它们释放了21%的吸收铁。在50μm的Co或Zn上,根仅释放约1%的吸收铁。渗出液中含有12至47μm柠檬酸盐,通常大大超过Fe。渗出液电泳显示,Fe是阴离子形式的唯一金属。 Mn,Co和Zn以阳离子形式迁移。渗出液中Ca的浓度> 3 mm,Mg> 1.5 mm。根据金属柠檬酸盐平衡常数和由Ca和Mg引起的金属置换常数进行的估算证实,Mn,Co和Zn主要作为无机阳离子运入茎分泌物中。

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