首页> 外文期刊>Plant Physiology and Biochemistry >Aluminium toxicity and phosphate deficiency activates antioxidant systems and up-regulates expression of phosphate transporters gene in ryegrass (Lolium perenne L.) plants
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Aluminium toxicity and phosphate deficiency activates antioxidant systems and up-regulates expression of phosphate transporters gene in ryegrass (Lolium perenne L.) plants

机译:铝毒性和磷酸盐缺乏激活抗氧化体系和UP-CMMINATE在Ryegrass(Lolium Perenne L.)植物中的磷酸盐转运蛋白基因的表达

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摘要

Soil acidity, associated with aluminium (Al) toxicity and low phosphorus (P) availability, is considered the most important problem for agricultural production. Even though the Al-P interaction has been widely investigated, the impact of P-nutrition on Al-toxicity still remains controversial and poorly understood. To elucidate further insights into the underlying mechanisms of this interaction in ryegrass (Lolium perenne L.), P uptake, antioxidant responses and the gene expression of phosphate transporters were determined. Two ryegrass cultivars with different Al resistances, the Al-tolerant Nui cultivar and the Al-sensitive Expo cultivar were hydroponically grown under low (16 mu M) and optimal (100 mu M) P doses for 16 days. After P treatments, plants were exposed to Al doses (0 and 200 mu M) under acidic conditions (pH 4.8) for 24 h. Al and P accumulation were higher in the roots of Nui than that of Expo. Moreover, lower Al accumulation was found in shoots of Nui independent of P supplies. Oxidative stress induced by Al-toxicity and P-deficiency was more severe in the Al-sensitive Expo. Expression levels of L. perenne phosphate transporters were higher in Nui than they were in Expo. While LpPHT1 expression was up-regulated by P deficiency and Al toxicity in both cultivars, LpPHT4 expression only increased in the Al-tolerant cultivar. This report shows that the higher Al-tolerance of Nui can be attributed to a greater antioxidant system under both P conditions. The observation of higher P and Al accumulation in roots of Nui might indicate that the Al-tolerance of Nui is a consequence of Al immobilization by P mediated by the high expression of phosphate transporters.
机译:与铝(Al)毒性和低磷(P)可用性相关的土壤酸度被认为是农业生产最重要的问题。尽管Al-P互动已被广泛调查,但P营养对Al毒性的影响仍然存在争议性和知之甚少。确定进一步见解Ryegrass(Lolium Perenne L.),p吸收,抗氧化反应和磷酸铁转运蛋白的基因表达的进一步见解。两种具有不同Al抗性的黑麦草栽培品种,耐普拉特Nui栽培品种和al敏感的世博会品种在低(16μm)和最佳(100μm)p剂量下为16天。在P处理后,在酸性条件下暴露于Al剂量(0和200μm)的植物(pH 4.8)24小时。 NUI的根部和P累积比世博会的根本更高。此外,在Nui的芽面独立于P耗材,发现了较低的Al积累。 Al毒性和P缺乏诱导的氧化应激在AL敏感性博览会中更严重。 NUI的L. perenne磷酸盐转运蛋白的表达水平高于世博会。虽然LPPHT1表达在两个品种中的P缺乏和Al毒性上调,但LPPHT4表达仅在耐抗体的栽培品种中增加。本报告表明,NUI的较高耐受性可以归因于P条件下更大的抗氧化系统。 Nui根中较高的p和Al积累的观察可能表明Nui的耐抗性是通过高表达磷酸盐转运蛋白的高表达介导的抗体的结果。

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