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玉米根中钠流入的控制

Controls on na influx in corn roots.

作者信息

Jacoby B, Hanson J B

机构信息

Department of Plant Biology, University of Illinois, Urbana, Illinois 61801.

出版信息

Plant Physiol. 1985 Apr;77(4):930-4. doi: 10.1104/pp.77.4.930.

Abstract

We have investigated the effects of hyperpolarization and depolarization, and the presence of K(+) and/or Ca(2+), on (22)Na(+) influx into corn (Zea mays L.) root segments. In freshly excised root tissue which is injured, Na(+) influx is unaffected by hyperpolarization with fusicoccin, or depolarization with uncoupler (protonophore), or by addition of K(+). However, added Ca(2+) suppresses Na(+) influx by 60%. In washed tissue which has recovered, Na(+) influx is doubled over that of freshly excised tissue, and the influx is increased by fusicoccin and suppressed by uncoupler. This energy-linked component of Na(+) influx is completely eliminated by low concentrations of K(+), leaving the same level and kind of Na(+) influx seen in freshly excised roots. The K(+)-sensitive energy linkage appears to be by the carrier for active K(+) influx. Calcium is equally inhibitory to Na(+) influx in washed as in fresh tissue. Other divalent cations are only slightly less effective. Net Na(+) uptake was about 25% of (22)Na(+) influx, but proportionately the response to K(+) and Ca(2+) was about the same.The constancy of K(+)-insensitive Na(+) influx under conditions known to hyperpolarize and depolarize suggests that if Na(+) transport is by means of a voltage-sensitive channel, the rise or fall of channel resistance must be proportional to the rise or fall in potential difference. The alternative is a passive electroneutral exchange of (22)Na(+) for endogenous Na(+). The data suggest that an inwardly directed Na(+) current is largely offset by an efflux current, giving both a small net uptake and isotopic exchange.

摘要

我们研究了超极化和去极化以及钾离子(K⁺)和/或钙离子(Ca²⁺)的存在对²²Na⁺流入玉米(Zea mays L.)根段的影响。在刚切除且受损的根组织中,Na⁺流入不受用壳梭孢菌素进行超极化、用解偶联剂(质子载体)进行去极化或添加K⁺的影响。然而,添加Ca²⁺可使Na⁺流入减少60%。在已恢复的洗涤过的组织中,Na⁺流入比刚切除的组织增加了一倍,并且该流入量因壳梭孢菌素而增加,因解偶联剂而减少。这种与能量相关的Na⁺流入成分被低浓度的K⁺完全消除,留下了与刚切除的根中所见相同水平和类型的Na⁺流入。对Na⁺流入敏感的K⁺能量联系似乎是通过主动K⁺流入的载体实现的。钙对洗涤过的组织中Na⁺流入的抑制作用与对新鲜组织中的抑制作用相同。其他二价阳离子的效果仅略差一些。净Na⁺摄取量约为²²Na⁺流入量的25%,但对K⁺和Ca²⁺的响应比例大致相同。在已知会发生超极化和去极化的条件下,对K⁺不敏感的Na⁺流入的恒定性表明,如果Na⁺转运是通过电压敏感通道进行的,那么通道电阻的升高或降低必须与电位差的升高或降低成比例。另一种情况是²²Na⁺与内源性Na⁺进行被动电中性交换。数据表明,内向的Na⁺电流在很大程度上被流出电流抵消,从而导致净摄取量小且存在同位素交换。

相似文献

1
Controls on na influx in corn roots.玉米根中钠流入的控制
Plant Physiol. 1985 Apr;77(4):930-4. doi: 10.1104/pp.77.4.930.
2
Reactions of corn root tissue to calcium.玉米根组织对钙的反应。
Plant Physiol. 1984 Oct;76(2):403-8. doi: 10.1104/pp.76.2.403.

本文引用的文献

1
Reactions of corn root tissue to calcium.玉米根组织对钙的反应。
Plant Physiol. 1984 Oct;76(2):403-8. doi: 10.1104/pp.76.2.403.
7
Deferral of leaf senescence with calcium.用钙延缓叶片衰老。
Plant Physiol. 1973 Sep;52(3):236-9. doi: 10.1104/pp.52.3.236.

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