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首页> 外文期刊>Acta Physiologiae Plantarum >The physiological mechanism of enhanced oxidizing capacity of rice (Oryza sativa L.) roots induced by phosphorus deficiency
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The physiological mechanism of enhanced oxidizing capacity of rice (Oryza sativa L.) roots induced by phosphorus deficiency

机译:缺磷诱导水稻根系氧化能力增强的生理机制

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摘要

Plants show various responses to phosphorus (P) deficiency. Root oxidizing capacity enhancement is one of adaptive mechanisms for rice (Oryza sativa L.) to P deficiency. However, it remains unclear how P deficiency enhances the root oxidizing capacity. In this study, rice seedlings were treated in P-deficient nutrient solution for different periods. Variations of reactive oxygen species (ROS), antioxidant enzyme activity, root lignin content, root porosity, root oxygen release, total oxidative substances and root structural changes in rice roots in response to P-sufficient and P-deficient treatments were investigated. Results indicated that P deficiency induced the production of H2O2 and O 2 - in roots significantly, which reached their maximum after 1- to 2-day P-deficient treatment. Interestingly, the endogenous total oxidative substances kept stable in rice roots. P deficiency increased the activities of peroxidase and superoxide dismutase by 89.5 and 51.8 % after 4-day P-deficient treatment, respectively. Moreover, one-day P deficiency elevated lignin accumulation. Root porosity of rice seedling under 2-day P-deficient treatment was 19.8 % higher than that under P-sufficient treatment. P deficiency also enhanced the release of both O2 and total oxidative substances after 1- to 4-day P deficiency. In addition, results from electronic microscopy indicated that the thickness of root cell wall tended to increase after 2-day P-deficient treatment. Taken together, our results suggested that P-deficiency-induced enhancement of root oxidizing capacity in rice roots was probably associated with ROS production, antioxidant enzyme activity increment in root tissues, and the release of O2 and oxidative substances from root inside to rhizosphere.
机译:植物显示出对磷(P)缺乏的各种反应。根系氧化能力的提高是水稻对缺磷的适应机制之一。然而,目前尚不清楚磷缺乏如何增强根系氧化能力。在这项研究中,水稻幼苗在缺磷的营养液中处理了不同的时期。研究了水稻对磷充足和缺磷处理后活性氧(ROS),抗氧化酶活性,根木质素含量,根孔隙度,根氧释放,总氧化物质和根结构变化的变化。结果表明,磷缺乏会显着诱导根中H2O2和O 2-的生成,在缺磷1至2天后达到其最大值。有趣的是,内源性总氧化物质在稻根中保持稳定。缺磷4天后,缺磷会使过氧化物酶和超氧化物歧化酶的活性分别增加89.5和51.8%。而且,一天缺磷会增加木质素的积累。缺磷2d处理的水稻幼苗根部孔隙度比充足磷处理高19.8%。缺磷1到4天后还增强了O2和总氧化物质的释放。另外,电子显微镜的结果表明,在缺磷2天的处理后,根细胞壁的厚度趋于增加。两者合计,我们的结果表明,磷缺乏引起的水稻根系根系氧化能力增强可能与ROS的产生,根系组织中抗氧化酶活性的增加以及O2和氧化性物质从根系内部向根际的释放有关。

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