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Physiological Characteristics of Fe Accumulation in the `Bronze' Mutant of Pisum sativum L., cv `Sparkle' E107 (brz brz) 1

机译:豌豆(Pisum sativum L.,cv'Sparkle'E107(brz brz)1)的铜突变体中铁积累的生理特征

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摘要

The pea (Pisum sativum L.) mutant, E107 (brz, brz) accumulated extremely high concentrations of Fe in its older leaves when grown in light rooms in either defined nutrient media or potting mix, or outdoors in soil. Leaf symptoms (bronze color and necrosis) were correlated with very high Fe concentrations. When E107 plants were grown in nutrient solutions supplied 10 μm Fe, as the Fe(III)-N,N′-ethylenebis[2-(2-hydroxyphenyl)glycine] chelate, their roots released higher concentrations of Fe(III) reducing substances to the nutrient media than did roots of the normal parent cv, `Sparkle.' Reciprocal grafting experiments demonstrated that the high concentrations of Fe in the shoot was controlled by the genotype of the root. In short-term 59Fe uptake studies, 15-day-old E107 seedlings exhibited higher rates of Fe absorption than did `Sparkle' seedlings under Fe-adequate growth conditions. Iron deficiency induced accelerated short-term Fe absorption rates in both mutant and normal genotypes. Iron-treated E107 roots also released larger amounts of both protons and Fe(III) reductants into their nutrient media than did iron-treated `Sparkle' roots. Furthermore, the mutant translocated proportionately more Fe to its shoot than did the parent regardless of Fe status.
机译:豌豆(Pisum sativum L.)突变体E107(brz,brz)在规定的养分培养基或盆栽混合物中的光照室中或在室外的土壤中生长时,在其较老的叶片中会积累极高浓度的铁。叶片症状(青铜色和坏死)与非常高的铁含量相关。当E107植物在提供10μmFe的营养液中生长时,由于Fe(III)-N,N'-亚乙基双[2-(2-羟苯基)甘氨酸]螯合,它们的根部释放出更高浓度的Fe(III)还原物质在营养培养基中的比例要比正常父级简历“ Sparkle”的根部要高。相互嫁接实验表明,枝条中高浓度的铁受根的基因型控制。在短期的59Fe吸收研究中,在铁充足的条件下,生长15天的E107幼苗的铁吸收率比“闪闪”幼苗高。铁缺乏引起突变和正常基因型的短期Fe吸收速率加快。铁处理过的E107根也比铁处理过的“ Sparkle”根释放出更多量的质子和Fe(III)还原剂。此外,无论铁的状态如何,突变体都比亲本按比例向其芽中转移更多的铁。

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