首页> 外文期刊>Journal of Plant Nutrition >Magnesium antagonizes pod-zone calcium and zinc uptake by developing peanut pods.
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Magnesium antagonizes pod-zone calcium and zinc uptake by developing peanut pods.

机译:镁通过发育花生荚来拮抗荚果区钙和锌的吸收。

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Excess soil magnesium (Mg) is thought to adversely affect peanut (Arachis hypogaea L.) pod development by inhibiting calcium (Ca) uptake by peanut pods from the pod-zone. A solution culture experiment was therefore conducted to examine the effect of magnesium sulfate (MgSO4.7H2O) concentration (0 to1000 micro M) in a simplified pod-zone solution containing ( micro M); ca. 101 sulfur (S), 100 Ca, 0.5 zinc (Zn), and 4 iron (Fe) on Mg and Ca absorption by developing pods in three peanut lines. There was a net Mg influx into pods from all solutions that contained Mg. The net Mg influx increased as the solution Mg concentration increased, and was accompanied by decreasing Ca influx into the pods which culminated into a net Ca efflux in the treatment with the highest solution Mg concentration (1000 micro M). The pods released substantial amounts of root-absorbed potassium (K) into the pod-zone, the amount of which differed among the lines and with the Mg concentration in the pod zone. The concentration of Mg and S in the pod walls and of Mg (but not S) in the seeds increased strongly with increasing Mg and S concentration in the pod culture solution. This was accompanied by decreasing Ca and Zn concentration in the pod walls and seeds. Thus, the study provided direct evidence for the antagonism of Mg on Ca and Zn absorption from the pod-zone by developing peanut pods.
机译:人们认为,过量的土壤镁(Mg)通过抑制花生豆荚从荚果区吸收的钙(Ca),对花生(Arachis hypogaea L.)荚果的发育产生不利影响。因此,进行了溶液培养实验,以研究简化荚果区域溶液中硫酸镁(MgSO 4 .7H 2 O)浓度(0至1000 micro M)的影响。含(micro M); ca.通过在三个花生品系中发育荚果,镁,钙对101个硫,100个Ca,0.5个锌(Zn)和4个铁(Fe)的吸收。含镁的所有溶液中都有净的镁流入豆荚。净镁流入量随着溶液镁浓度的增加而增加,并伴随着进入豆荚的钙流入量的减少,最终在最高镁溶液浓度(1000 micro M)的处理中最终净钙流出。豆荚将大量的根吸收钾(K)释放到豆荚区域,各系之间的吸收量不同,并且豆荚区域中的​​Mg浓度不同。随着豆荚培养液中Mg和S浓度的增加,豆荚壁中Mg和S的浓度以及种子中Mg(而非S)的浓度会大大增加。这伴随着豆荚壁和种子中钙和锌浓度的降低。因此,该研究为开发花生荚对镁对荚果区钙和锌吸收的拮抗作用提供了直接证据。

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