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Rhizosphere pH difference regulated by plasma membrane H+-ATPase is related to differential Al tolerance of two wheat cultivars

机译:质膜H + -ATPase调控的根际pH差异与两个小麦品种的铝耐性差异相关

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Aluminum (Al)-tolerance of different cultivars shows considerable differences. Elevation of rhizosphere pH is an external Al-resistant mechanism of plants. To elucidate the correlation between Al tolerance and the capacity of plants to modify the rhizosphere pH at different Al-tolerant levels, a comparative study on the wheat (Triticum aestivum L.) cultivars ET8 (Al-tolerant) and ES8 (Al-sensitive) was performed. Rhizosphere pH of ET8 was much higher than that of ES8 under the same treatment, significant correlations were obtained among all the data of rhizosphere pH and relative root elongation (R2 = 0.9209**), or Al content in root apex (R2 = 0.9321**), which indicated that Al tolerance may be related to pH changes in the rhizosphere. The elevation of rhizosphere pH was inhibited by H+-ATPase specific inhibitor DCCD (dicylcohexylcarbodiimide, 25 mmol). Relative PM (plasma membrane) H+-ATPase activity of ET8 was significantly higher than that of ES8 under the same treatment. Significant correlation between all the data of relative PM H+-ATPase activity and rhizosphere pH (R2 = 0.8319**) were obtained. Taken together, these results suggest that PM H+-ATPase was involved in regulating rhizosphere pH. Under Al stress, the Al-tolerant line showed a stronger capacity of up-regulating rhizosphere pH by PM H+-ATPase than the Al-sensitive line, which may explain the observed differences in Al tolerance between the two wheat cultivars.
机译:不同品种对铝的耐受性差异很大。根际pH升高是植物抗铝的外部机制。为了阐明铝耐性与植物在不同耐铝水平下改变根际pH的能力之间的相关性,对小麦(耐小麦)和ES8(耐铝)品种的比较研究被执行了。在相同处理下,ET8的根际pH值远高于ES8,在根际pH和相对根伸长(R2 = 0.9209 **)或根尖中的Al含量(R2 = 0.9321 *)的所有数据之间均具有显着的相关性。 *),表明铝的耐受性可能与根际pH的变化有关。 H + -ATPase特异性抑制剂DCCD(二甲苯基己基碳二亚胺,25 mmol)抑制了根际pH的升高。在相同处理下,ET8的相对PM(质膜)H + -ATPase活性显着高于ES8。获得了所有相对PM H + -ATPase活性数据与根际pH值之间的显着相关性(R2 = 0.8319 **)。综上所述,这些结果表明,PM H + -ATPase参与了根际pH的调节。在铝胁迫下,耐铝品系比铝敏感品系表现出更强的通过PM H + -ATPase调节根际pH的能力,这可以解释两个小麦品种对铝的耐性差异。

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