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首页> 外文期刊>Physiologia plantarum >Relative abundance of Delta 5-sterols in plasma membrane lipids of root-tip cells correlates with aluminum tolerance of rice.
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Relative abundance of Delta 5-sterols in plasma membrane lipids of root-tip cells correlates with aluminum tolerance of rice.

机译:根尖细胞质膜脂质中Delta 5 -甾醇的相对丰度与水稻的铝耐性相关。

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摘要

We investigated variations in aluminum (Al) tolerance among rice plants, using ancestor cultivars from the family line of the Al-tolerant and widely cultivated Japonica cultivar, Sasanishiki. The cultivar Rikuu-20 was Al sensitive, whereas a closely related cultivar that is a descendant of Rikuu-20, Rikuu-132, was Al tolerant. These two cultivars were compared to determine mechanisms underlying variations in Al tolerance. The sensitive cultivar Rikuu-20 showed increased permeability of the plasma membrane (PM) and greater Al uptake within 1 h of Al treatment. This could not be explained by organic acid release. Lipid composition of the PM differed between these cultivars, and may account for the difference in Al tolerance. The tolerant cultivar Rikuu-132 had a lower ratio of phospholipids to Delta 5-sterols than the sensitive cultivar Rikuu-20, suggesting that the PM of Rikuu-132 is less negatively charged and less permeabilized than that of Rikuu-20. We used inhibitors of Delta 5-sterol synthesis to alter the ratio of phospholipids to Delta 5-sterols in both cultivars. These inhibitors reduced Al tolerance in Rikuu-132 and its Al-tolerant ancestor cultivars Kamenoo and Kyoku. In addition, Rikuu-132 showed a similar level of Al sensitivity when the ratio of phospholipids to Delta 5-sterols was increased to match that of Rikuu-20 after treatment with uniconazole-P, an inhibitor of obtusifoliol-14 alpha -demethylase. These results indicate that PM lipid composition is a factor underlying variations in Al tolerance among rice cultivars.
机译:我们使用耐铝家族和广泛栽培的粳稻品种(Sasanishiki)的祖先品种调查了水稻植株对铝(Al)耐性的变异。 Rikuu-20品种对Al敏感,而与Rikuu-20的后代Rikuu-132密切相关的品种对Al耐受。比较了这两个品种以确定铝耐性变异的潜在机制。敏感品种Rikuu-20在铝处理后1小时内显示出质膜(PM)的渗透性增加和铝吸收量增加。这不能用有机酸的释放来解释。这些品种之间PM的脂质组成不同,可能是Al耐性差异的原因。与敏感品种Rikuu-20相比,耐性品种Rikuu-132的磷脂与Delta 5 -甾醇的比率较低,这表明Rikuu-132的PM带负电性和透化性均低于敏感品种。 Rikuu-20。我们使用Delta 5 -甾醇合成抑制剂来改变两个品种中磷脂与Delta 5 -固醇的比例。这些抑制剂降低了Rikuu-132及其耐铝祖先品种Kamenoo和Kyoku中的耐铝性。此外,当用叔丁基叶oli醇抑制剂uniconazole-P处理后,增加磷脂与Delta 5 -甾醇的比例以匹配Rikuu-20时,Rikuu-132表现出相似的Al敏感性水平。 -14α-脱甲基酶。这些结果表明,PM脂质组成是水稻品种耐铝性差异的潜在因素。

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