首页> 美国卫生研究院文献>Plant Physiology >Growth and Nutrient Uptake by Barley (Hordeum vulgare L. cv Herta): Studies Using an N-(2-Hydroxyethyl)ethylenedinitrilotriacetic Acid-Buffered Nutrient Solution Technique (II. Role of Zinc in the Uptake and Root Leakage of Mineral Nutrients).
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Growth and Nutrient Uptake by Barley (Hordeum vulgare L. cv Herta): Studies Using an N-(2-Hydroxyethyl)ethylenedinitrilotriacetic Acid-Buffered Nutrient Solution Technique (II. Role of Zinc in the Uptake and Root Leakage of Mineral Nutrients).

机译:大麦(Hordeum vulgare L.cv Herta)的生长和营养吸收:使用N-(2-羟乙基)亚乙基二三氟三乙酸缓冲营养液技术的研究(II。锌在矿质营养吸收和根漏中的作用)。

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摘要

Barley seedlings (Hordeum vulgare L. cv Herta) were grown in N-(2-hydroxyethyl)ethylenedinitrilotriacetic acid-buffered nutrient solutions with or without adequate Zn supplies. Fifteen-d-old Zn-deficient seedlings contained higher concentrations of Mn, Ca, Mg, and P in their shoots and more Fe, Mn, Cu, K, Ca, and P in their roots than did similar Zn-adequate seedlings, confirming results reported in our companion study (W.A. Norvell and R.M. Welch [1993] Plant Physiol 101: 619-625). Zn-deficient roots leaked greater quantities of K, Mn, Cu, and Cl than did roots supplied adequately with Zn; they also leaked significant amounts of Zn even though the seedlings were not supplied Zn during growth. Calculated uptake rates of P, Mn, and Na were sharply reduced, but uptake rates of K and Mg were stimulated by increasing the Zn2+ activity in nutrient solutions. Intact roots of Zn-deficient seedlings contained lower concentrations of 5,5[prime] -dithio-bis(2-nitrobenzoic acid) reactive sulfhydryl groups in comparison to Zn-adequate roots. Apparently, Zn is required for the uptake and retention of several mineral nutrients by roots, possibly by playing a protective role in preventing the oxidation of sulfhydryl groups to disulfides in root-cell plasma membrane proteins involved in ion channel-gating phenomena.
机译:大麦幼苗(大麦(Hordeum vulgare L. cv Herta))在N-(2-羟乙基)亚乙基二三三乙酸乙酸缓冲的营养液中生长,有或没有充足的锌供应。与类似的锌充足的幼苗相比,15天缺锌的幼苗的茎中含有更高浓度的Mn,Ca,Mg和P,根中含有更多的Fe,Mn,Cu,K,Ca和P。结果在我们的伴随研究中报道(WA Norvell和RMWelch [1993] Plant Physiol 101:619-625)。缺锌根系比充足供应锌的根系泄漏更多的K,Mn,Cu和Cl。即使幼苗在生长过程中没有供应锌,它们也泄漏了大量的锌。计算得出的P,Mn和Na的吸收速率急剧降低,但通过增加营养液中Zn2 +的活性来刺激K和Mg的吸收速率。与缺锌的根相比,缺锌幼苗的完整根含有较低浓度的5,5 [prime]-二硫代-双(2-硝基苯甲酸)反应性巯基。显然,锌是根吸收和保留几种矿质养分所必需的,可能是通过在防止离子通道门控现象所涉及的根细胞质膜蛋白中巯基氧化为二硫化物起保护作用。

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