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豌豆两个品种根系抗氧化反应对直接和诱导缺铁的响应。

Root antioxidant responses of two Pisum sativum cultivars to direct and induced Fe deficiency.

机构信息

Laboratory of Extremophile Plants (LPE), Biotechnology Centre of Borj Cedria, (CBBC), Hammam-Lif, Tunisia.

出版信息

Plant Biol (Stuttg). 2014 May;16(3):607-14. doi: 10.1111/plb.12093. Epub 2013 Aug 19.

Abstract

The contribution of antioxidant defence systems in different tolerance to direct and bicarbonate-induced Fe deficiency was evaluated in two pea cultivars (Kelvedon, tolerant and Lincoln, susceptible). Fe deficiency enhanced lipid peroxidation and H2 O2 concentration in roots of both cultivars, particularly in the sensitive one grown under bicarbonate supply. The results obtained on antioxidant activities (SOD, CAT, POD) suggest that H2 O2 accumulation could be due to an overproduction of this ROS and, at the same time, to a poor capacity to detoxify it. Moreover, under bicarbonate supply the activity of POD isoforms was reduced only in the sensitive cultivar, while in the tolerant one a new isoform was detected, suggesting that POD activity might be an important contributor to pea tolerance to Fe deficiency. The presence of bicarbonate also resulted in stimulation of GR, MDHAR and DHAR activities, part of the ASC-GSH pathway, which was higher in the tolerant cultivar than in the sensitive one. Overall, while in the absence of Fe only slight differences were reported between the two cultivars, the adaptation of Kelvedon to the presence of bicarbonate seems to be related to its greater ability to enhance the antioxidant response at the root level.

摘要

在两种豌豆品种(Kelvedon,耐受和 Lincoln,敏感)中评估了抗氧化防御系统对直接和碳酸氢盐诱导的 Fe 缺乏的不同耐受能力的贡献。Fe 缺乏会加剧两种品种根系中的脂质过氧化和 H2O2 浓度,特别是在碳酸氢盐供应下生长的敏感品种中。抗氧化活性(SOD、CAT、POD)的结果表明,H2O2 的积累可能是由于这种 ROS 的过度产生,同时也可能是由于解毒能力差。此外,在碳酸氢盐供应下,仅在敏感品种中检测到 POD 同工酶的活性降低,而在耐受品种中则检测到新的同工酶,表明 POD 活性可能是豌豆耐受 Fe 缺乏的重要因素。碳酸氢盐的存在还导致 ASC-GSH 途径中的 GR、MDHAR 和 DHAR 活性增强,在耐受品种中比在敏感品种中更高。总的来说,在没有 Fe 的情况下,两种品种之间仅报告了一些细微的差异,而 Kelvedon 对碳酸氢盐的适应似乎与其在根水平上增强抗氧化反应的能力更强有关。

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