首页> 美国卫生研究院文献>Plant Physiology >Aluminum Interactions with Voltage-Dependent Calcium Transport in Plasma Membrane Vesicles Isolated from Roots of Aluminum-Sensitive and -Resistant Wheat Cultivars.
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Aluminum Interactions with Voltage-Dependent Calcium Transport in Plasma Membrane Vesicles Isolated from Roots of Aluminum-Sensitive and -Resistant Wheat Cultivars.

机译:从铝敏感和抗性小麦品种的根中分离的质膜囊泡中铝与电压依赖性钙转运的相互作用。

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摘要

The role of Al interactions with root-cell plasma membrane (PM) Ca2+ channels in Al toxicity and resistance was studied. The experimental approach involved the imposition of a transmembrane electrical potential (via K+ diffusion) in right-side-out PM vesicles derived from roots of two wheat (Triticum aestivum L.) cultivars (Al-sensitive Scout 66 and Al-resistant Atlas 66). We previously used this technique to characterize a voltage-dependent Ca2+ channel in the wheat root PM (J.W. Huang, D.L. Grunes, L.V. Kochian [1994] Proc Natl Acad Sci USA 91: 3473-3477). We found that Al3+ effectively blocked this PM Ca2+ channel; however, Al3+ blocked this Ca2+ channel equally well in both the Al-sensitive and -resistant cultivars. It was found that the differential genotypic sensitivity of this Ca2+ transport system to Al in intact roots versus isolated PM vesicles was due to Al-induced malate exudation localized to the root apex in Al-resistant Atlas but not in Al-sensitive Scout. Because malate can effectively chelate Al3+ in the rhizosphere and exclude it from the root apex, the differential sensitivity of Ca2+ influx to Al in intact roots of Al-resistant versus Al-sensitive wheat cultivars is probably due to the maintenance of lower Al3+ activities in the root apical rhizosphere of the resistant cultivar.
机译:研究了铝与根细胞质膜(PM)Ca2 +通道的相互作用在铝毒性和抗性中的作用。实验方法涉及在源自两个小麦(Triticum aestivum L.)品种(铝敏感侦察兵66和铝耐药图集66)根部的右侧偏出PM囊泡中施加跨膜电势(通过K +扩散)。 。我们先前使用该技术来表征小麦根PM中的电压依赖性Ca 2+通道(J.W. Huang,D.L。Grunes,L.V.Kochian [1994] Proc Natl Acad Sci USA 91:3473-3477)。我们发现Al3 +有效地阻止了该PM Ca2 +通道。然而,Al3 +在对Al敏感和对Al敏感的品种中均能很好地阻断该Ca2 +通道。发现完整的根中Ca 2+转运系统对铝的基因型敏感性与分离的PM囊泡不同,这是由于铝诱导的苹果酸渗出位于耐铝的Atlas中,而不是位于铝敏感的侦察兵中。因为苹果酸可以有效地螯合根际中的Al3 +并将其排除在根尖之外,所以耐Al和耐Al敏感小麦品种的完整根中Ca2 +入渗对Al的差异敏感性可能是由于维持了较低的Al3 +活性。抗性品种的根尖根际。

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