首页> 美国卫生研究院文献>PLoS Clinical Trials >Sodium alginate potentiates antioxidant defense and PR proteins against early blight disease caused by Alternaria solani in Solanum lycopersicum Linn.
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Sodium alginate potentiates antioxidant defense and PR proteins against early blight disease caused by Alternaria solani in Solanum lycopersicum Linn.

机译:海藻酸钠增强了抗番茄白斑病中由链格孢菌引起的早疫病的抗氧化防御能力和PR蛋白。

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摘要

The use of biopolymers as elicitors in controlling plant diseases is gaining momentum world-wide due to their eco-friendly and non-toxic nature. In the present study, we have used an algal biopolymer (sodium alginate) and tested its applicability as an elicitor in inducing resistance factors against Alternaria solani, which causes early blight disease in Solanum lycopersicum (tomato plant). We have pre-treated tomato plants with different concentrations of sodium alginate (0.2%, 0.4%, and 0.6%) before A. solani infection. We found that sodium alginate has effectively controlled the growth of A. solani. In addition, a significant increase in the expression levels of SOD was observed in response to pathogen infection. The increased protease inhibitors activity further suggest that sodium alginate restrict the development of A. solani infection symptoms in tomato leaves. This corroborates well with the cell death analysis wherein increased sodium alginate pre-treatment results in decreased cell death. Also, the expression profile analyses reveal the induction of genes only in sodium alginate-pretreated tomato leaves, which are implicated in plant defense mechanism. Taken together, our results suggest that sodium alginate can be used as an elicitor to induce resistance against A. solani in tomato plants.
机译:由于生物聚合物的生态友好和无毒性质,将其用作控制植物病害的引发剂已在世界范围内获得发展。在本研究中,我们使用了藻类生物聚合物(海藻酸钠),并测试了其作为诱导诱变剂对番茄黑斑病菌(Alternaria solani)的抗性因子的适用性,该病菌在番茄(番茄植物)中引起早疫病。我们已经对番茄植株进行了预处理,在番茄土壤杆菌感染前用不同浓度的海藻酸钠(0.2%,0.4%和0.6%)处理过。我们发现海藻酸钠已经有效地控制了茄。曲霉的生长。另外,观察到响应病原体感染,SOD的表达水平显着增加。增加的蛋白酶抑制剂活性进一步表明藻酸钠限制了番茄叶片中茄黑曲霉感染症状的发展。这与细胞死亡分析非常吻合,其中藻酸钠的预处理增加导致细胞死亡减少。此外,表达谱分析揭示了仅在藻酸钠预处理的番茄叶片中诱导了基因,这与植物防御机制有关。两者合计,我们的结果表明藻酸钠可以用作引发剂,以诱导对番茄植物中的茄sol曲霉的抗性。

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