College of Forestry, Northwest A&F University, Yangling, Shaanxi, China; Research Centre for Engineering and Technology of Zanthoxylum State Forestry Administration, Yangling, Xianyang, 712100, China.
College of Forestry, Northwest A&F University, Yangling, Shaanxi, China; Research Centre for Engineering and Technology of Zanthoxylum State Forestry Administration, Yangling, Xianyang, 712100, China.
Plant Physiol Biochem. 2020 May;150:196-203. doi: 10.1016/j.plaphy.2020.01.040. Epub 2020 Feb 7.
Plants can accumulate a large amount of reactive oxygen species under adverse conditions such as drought and high temperature, which seriously affect the normal growth and development of plants. The antioxidant system can scavenge the reactive oxygen species produced under drought conditions and so mitigate oxidative damage. However, the regulation patterns of many miRNAs under drought stress are still unclear. The content of antioxidant enzymes and the expression patterns of miRNAs and their target genes related to antioxidant systems were studied under drought stress in Zanthoxylum bungeanum. The results indicate that under drought stress, POD, CAT, APX, proline, MDA and related genes all show positive responses to drought, while SOD and its genes showed a negative response. It is indicated that in the antioxidant process of Z. bungeanum, POD, CAT, and APX play a major role, and SOD plays a supporting role. In addition, GUS histochemical and RT-qPCR experimental results show that the expression levels of miRNAs and their target genes are basically negatively correlated, indicating that miRNAs can inhibit the expression of related genes and are also important regulators in the antioxidant system of Z. bungeanum. According to the expression patterns of antioxidant enzymes, miRNA and its target genes under drought stress, combined with previous research results, a model of plant antioxidant mechanism was constructed to provide a reference for further understanding of plant antioxidant mechanism.
在干旱和高温等不利条件下,植物会积累大量的活性氧物质,这会严重影响植物的正常生长和发育。抗氧化系统可以清除干旱条件下产生的活性氧物质,从而减轻氧化损伤。然而,许多 miRNA 在干旱胁迫下的调控模式仍不清楚。本研究以花椒(Zanthoxylum bungeanum)为材料,研究了干旱胁迫下抗氧化系统相关的 miRNA 及其靶基因的表达模式。结果表明,在干旱胁迫下,POD、CAT、APX、脯氨酸、MDA 及其相关基因均对干旱表现出正响应,而 SOD 及其基因则表现出负响应。这表明在花椒的抗氧化过程中,POD、CAT 和 APX 起主要作用,而 SOD 起辅助作用。此外,GUS 组织化学和 RT-qPCR 实验结果表明,miRNA 及其靶基因的表达水平基本呈负相关,表明 miRNA 可以抑制相关基因的表达,也是花椒抗氧化系统的重要调控因子。根据抗氧化酶、miRNA 及其靶基因在干旱胁迫下的表达模式,并结合以往的研究结果,构建了植物抗氧化机制模型,为进一步了解植物抗氧化机制提供了参考。