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番茄中玉米黄质的组成积累缓解了盐胁迫诱导的光抑制和光氧化。

Constitutive accumulation of zeaxanthin in tomato alleviates salt stress-induced photoinhibition and photooxidation.

机构信息

College of Life Science, State Key Laboratory of Crop Biology, Shandong Agricultural University, Tai'an, Shandong 271018, PR China.

出版信息

Physiol Plant. 2012 Nov;146(3):363-73. doi: 10.1111/j.1399-3054.2012.01645.x. Epub 2012 Jun 19.

Abstract

Zeaxanthin (Z) has a role in the dissipation of excess excitation energy by participating in non-photochemical quenching (NPQ) and is essential in protecting the chloroplast from photooxidative damage. To investigate the physiological effects and functional mechanism of constitutive accumulation of Z in the tomato at salt stress-induced photoinhibition and photooxidation, antisense-mediated suppression of zeaxanthin epoxidase transgenic plants and the wild-type (WT) tomato were used. The ratio of Z/(V + A + Z) and (Z + 0.5A)/(V + A + Z) in antisense transgenic plants were maintained at a higher level than in WT plants under salt stress, but the value of NPQ in WT and transgenic plants was not significantly different under salt stress. However, the maximal photochemical efficiency of PSII (Fv/Fm) and the net photosynthetic rate (Pn) in transgenic plants decreased more slowly under salt stress. Furthermore, transgenic plants showed lower level of hydrogen peroxide (H(2)O(2)), superoxide anion radical (O(2)(•-)) and ion leakage, lower malondialdehyde content. Compared with WT, the content of D1 protein decreased slightly in transgenic plants under salt stress. Our results suggested that the constitutive accumulation of Z in transgenic tomatoes can alleviate salt stress-induced photoinhibition because of the antioxidant role of Z in the scavenging quenching of singlet oxygen and/or free radicals in the lipid phase of the membrane.

摘要

玉米黄质(Z)通过参与非光化学猝灭(NPQ)在耗散过量激发能方面发挥作用,对保护叶绿体免受光氧化损伤至关重要。为了研究在盐胁迫诱导的光抑制和光氧化过程中,玉米黄质组成性积累对番茄的生理效应和功能机制,利用反义介导的玉米黄质环氧化酶转基因植物和野生型(WT)番茄进行了研究。在盐胁迫下,反义转基因植物中 Z/(V+A+Z)和(Z+0.5A)/(V+A+Z)的比例比 WT 植物保持在更高的水平,但盐胁迫下 WT 和转基因植物的 NPQ 值没有显著差异。然而,在盐胁迫下,转基因植物的 PSII 最大光化学效率(Fv/Fm)和净光合速率(Pn)下降得更慢。此外,转基因植物表现出较低的过氧化氢(H2O2)、超氧阴离子自由基(O2(•-))和离子渗漏水平,丙二醛含量较低。与 WT 相比,在盐胁迫下,转基因植物中 D1 蛋白的含量略有下降。我们的结果表明,由于 Z 在清除膜脂相中单线态氧和/或自由基方面的抗氧化作用,转基因番茄中 Z 的组成性积累可以缓解盐胁迫诱导的光抑制。

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