首页> 外文期刊>Plant and Soil >ALUMINIUM AND CALCIUM TRANSPORT INTERACTIONS IN INTACT ROOTS AND ROOT PLASMALEMMA VESICLES FROM ALUMINIUM-SENSITIVE AND TOLERANT WHEAT CULTIVARS
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ALUMINIUM AND CALCIUM TRANSPORT INTERACTIONS IN INTACT ROOTS AND ROOT PLASMALEMMA VESICLES FROM ALUMINIUM-SENSITIVE AND TOLERANT WHEAT CULTIVARS

机译:铝敏感和耐性小麦品种完整根和根间质膜囊中铝和钙的运输相互作用

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Recent research from our laboratory indicates that aluminium (Al) and calcium (Ca) transport interactions may play an important role in the mechanisms of Al phytotoxicity. In this study, we investigated the effects of Al on Ca2+ transport in intact roots of winter wheat (Triticum aestivum L.) cultivars (Al-tolerant Atlas 66 and Al-sensitive Scout 66). We used both a vibrating Ca2+-microelectrode technique and Ca-45(2+) to monitor Ca2+ influx in intact roots. Root apical Ca2+ uptake was immediately inhibited, when roots were exposed to Al levels that ultimately decreased root growth in Al-sensitive Scout 66. The Al-tolerant cultivar was able to resist this Al inhibition of Ca2+ uptake, and to resist Al inhibition of Ca-45(2+) translocation from roots to shoots. We also studied Ca2+ transport in right-side out plasmalemma vesicles isolated from roots of Al-sensitive and tolerant wheat cultivars. Calcium influx into the vesicles was mediated by a voltage-gated Ca2+ channel. Aluminium blocks the Ca2+ channel equally well in the plasmalemma vesicles isolated from Al-sensitive and Al-tolerant wheat roots. The results indicate that the differential response observed in intact roots is not due to differences in Ca2+ channels. The Al-tolerant wheat cultivar may have an ability to reduce Al3+ activity in the rhizosphere, thus reducing the Al-inhibition of Ca2+ influx.
机译:我们实验室的最新研究表明,铝(Al)和钙(Ca)的运输相互作用可能在铝的植物毒性机理中起重要作用。在这项研究中,我们调查了铝对冬小麦(Triticum aestivum L.)品种(耐铝Atlas 66和铝敏感侦察兵66)完整根中Ca2 +转运的影响。我们使用了振动的Ca2 +微电极技术和Ca-45(2+)来监视完整根中Ca2 +的流入。当根系暴露于Al水平时,根尖的Ca2 +吸收立即被抑制,最终降低了对Al敏感的Scout 66的根的生长。耐铝品种能够抵抗这种对Al抑制Ca2 +吸收的行为,并且可以抵抗Al对Ca的抑制作用。从根到芽的-45(2+)易位。我们还研究了分离自铝敏感和耐性小麦品种根部的右侧质膜囊泡中的Ca2 +转运。钙流入囊泡是通过电压门控的Ca2 +通道介导的。铝在从对铝敏感和耐铝的小麦根中分离出的质膜囊泡中对钙离子通道的阻隔性相同。结果表明,在完整根中观察到的差异反应不是由于Ca2 +通道的差异引起的。耐铝小麦品种可能具有降低根际中Al3 +活性的能力,从而降低了铝对Ca2 +流入的抑制作用。

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