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Physiological Characterization of a Single-Gene Mutant of Pisum sativum Exhibiting Excess Iron Accumulation: I. Root Iron Reduction and Iron Uptake

机译:过量铁积累的豌豆单基因突变体的生理特性:I。根铁还原和铁吸收

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摘要

Root systems of mutant (E107) and parental (cv `Sparkle') Pisum sativum genotypes were studied to determine the basis for excess Fe accumulation in E107. Plants were grown with (+Fe-treated) or without (−Fe-treated) added Fe(III)-N,N'-ethylenebis[2-(2-hydroxyphenyl)glycine] in aerated nutrient solutions. Daily measurements of Fe(III) reduction indicated a four-to seven-fold higher reduction rate in +Fe- or −Fe-treated E107, and −Fe-treated Sparkle, when compared with +Fe-treated Sparkle. An agarose-based staining technique used to localize Fe(III) reduction, revealed Fe(III) reduction over most of the length of the roots (but not at the root apices) in both E107 treatments and −Fe-treated Sparkle. In +Fe-treated Sparkle, Fe(III) reduction was either nonexistent or localized to central regions of the roots. Measurements of short-term Fe influx (with 0.1 millimolar 59Fe(III)-ethylenediaminetetraacetic acid) was also enhanced (threefold) in +Fe- or −Fe-treated E107 and −Fe-treated Sparkle, relative to +Fe-treated Sparkle. The physiological characteristics of E107 root systems, which are similar to those seen in Fe-deficient Sparkle, have led us to conclude that the mutation causes E107 to act functionally as an Fe-deficient plant, and appears to explain the excess Fe accumulation in E107.
机译:研究了突变体(E107)和亲本(cv'Sparkle')豌豆(Pisum sativum)基因型的根系,以确定E107中过量铁积累的基础。在充气营养液中添加(+ Fe处理)或不添加(-Fe处理)Fe(III)-N,N'-亚乙基双[2-(2-羟基苯基)甘氨酸]的植物生长。每日测量的Fe(III)还原度表明,与+ Fe处理的火花相比,+ Fe-或-Fe处理的E107和-Fe处理的火花的还原率高4至7倍。一种基于琼脂糖的染色技术,用于确定Fe(III)的还原情况,发现在E107处理和-Fe处理的Sparkle中,Fe(III)在大部分根部长度上都还原了(但在根尖处没有)。在+ Fe处理的火花中,Fe(III)还原不存在或位于根的中心区域。相对于+ Fe处理的火花,在+ Fe处理或-Fe处理的E107和-Fe处理的火花中,短期Fe流入量(用0.1毫摩尔的59Fe(III)-乙二胺四乙酸)的测量也提高了(三倍)。 E107根系的生理特性类似于在缺铁的火花中看到的那些,使我们得出结论,该突变导致E107在功能上充当缺铁植物,并似乎可以解释E107中过量的铁积累。

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