首页> 外文期刊>Mathematical research letters: MRL >Salicylic acid application alleviates the adverse effects of triclosan stress in tobacco plants through the improvement of plant photosynthesis and enhancing antioxidant system
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Salicylic acid application alleviates the adverse effects of triclosan stress in tobacco plants through the improvement of plant photosynthesis and enhancing antioxidant system

机译:水杨酸应用减轻了通过改善植物光合作用和增强抗氧化系统的烟草植物中三氯烷胁迫的不良反应

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摘要

Triclosan (TCS) is a chlorophenol which is highly bacteriostatic and used in a wide array of consumer products. TCS is now one of the most commonly detected organic pollutants in the sewage sludges. The sludge utilization for fertilizers on agricultural land would pose the risk of causing adverse effects on plant growth and yield by TCS. However, the toxicity of TCS toward plants is comparatively less understood. In this study, we assessed the effects of TCS on tobacco plants which were grown in MS medium or soils containing various concentrations of TCS. Our results indicated that TCS at the concentration of 2 mg/L could strongly inhibit the tobacco seed germination. TCS could suppress tobacco plant growth in soil with different concentrations (10, 20, and 50 mg/kg) of TCS through the downregulation of chlorophyll contents, restricting photosynthesis and increasing generation of reactive oxygen species (ROS). Salicylic acid (SA) plays important roles in the stress response of plants. The role of exogenous SA application in protecting tobacco plants from TCS stress was also investigated in this study. SA application could significantly increase net photosynthesis, enhance antioxidant enzyme activity, and thereby enhancing tobacco plant tolerance to TCS. Moreover, the activation of MPK3 and MPK6 induced by TCS was downregulated in plants with the treatment of SA. It was thus referred that mitogen-activated protein kinases (MAPKs) might play a key role in the signal transduction of TCS stress, and this process might be regulated by SA signaling. Overall, our results demonstrated that TCS had negative impacts on tobacco plants and SA played a protective role on tobacco plants against TCS stress.
机译:三胞嘧啶(TCS)是一种氯酚,其高度抑菌,在各种消费产品中使用。 TCS现在是污水污染中最常见的有机污染物之一。农业用地肥料的污泥利用将造成对植物生长和TCS产生不利影响的风险。然而,TCS对植物的毒性相对较低。在这项研究中,我们评估了TCS对烟草植物对含有各种浓度TCS的培养基或土壤中生长的烟草植物的影响。我们的结果表明,2mg / L浓度的TCS可以强烈抑制烟草种子萌发。通过叶绿素含量的下调,TCS可以抑制具有不同浓度(10,20,20和50mg / kg)的土壤中的烟草植物生长,限制光合作用和增加的反应性氧(ROS)。水杨酸(SA)在植物的应力响应中起重要作用。本研究还研究了外源SA应用在保护TCS应激中保护烟草植物的作用。 SA应用可以显着增加净光合作用,增强抗氧化酶活性,从而增强烟草植物耐受TCS。此外,通过治疗SA的植物中TCS诱导的MPK3和MPK6的激活在植物中下调。因此,提到了丝裂原激活的蛋白激酶(MAPK)可能在TCS应力的信号转导中发挥关键作用,并且该过程可以通过SA信号调节。总体而言,我们的结果表明,TC对烟草植物产生负面影响,SA对烟草植物的保护作用对抗TCS应力。

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