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Enhanced Resistance to Leaf Fall Disease Caused by Phytophthora palmivora in Rubber Tree Seedling by Sargassum polycystum Extract

机译:猪Sar提取物对橡胶树幼苗中棕榈疫霉引起的叶落病的抗性增强。

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The brown seaweed ( Sargassum polycystum C. Agardh-Sargassaceae) extract was examined for its bioelicitor properties in the rubber tree seedling ( Hevea brasiliensis (Willd. ex A.Juss.) Müll.Arg. - Euphorbiaceae) and its application to reduce the leaf fall disease caused by Phytophthora palmivora (Edwin John) Butler, 1917 (Peronosporaceae). The major purpose of this study was to apply this seaweed extract (SWE) to improve the disease resistance in rubber tree seedling compared to a chemical fungicide (1% metalaxyl). After foliar spraying of SWE solution, two antioxidant enzymes, catalase (CAT) and peroxidase (POD) and systemic acquired resistance (SAR)-triggered enzyme, β-1,3-glucanase (GLU), were analyzed. Both secondary metabolites, a phytoalexin scopoletin (Scp) and a signaling molecule salicylic acid (SA) were measured by high performance liquid chromatography (HPLC). Both SWE- and metalaxyl-treated plants had a close disease index (DI)-score which were 16.90 ± 1.93 and 15.54 ± 1.25, respectively, while the positive control sprayed with P. palmivora showed DI-score of 29.27 ± 1.89 which was much higher than those treated with SWE or fungicide. CAT, POD, and GLU were increased in rubber tree leaves treated with SWE solution. Furthermore, Scp and SA were significantly increased in SWE-treated leaves. Enhanced systemic acquired resistance induction, 2.09 folds of SA accumulation, was observed in the distal area comparing to the local area of SWE application. In conclusion, the positive effects of SWE elicitation from these studies revealed that SWE could be used as an alternative biocontrol agent for foliar spraying to enhance the defense responses in rubber tree seedling against P. palmivora .
机译:检查了棕色海藻(Sargassum polycystum C.由棕榈疫霉菌引起的秋季病(Edwin John)Butler,1917年(Peronosporaceae)。这项研究的主要目的是,与化学杀菌剂(1%甲霜灵)相比,将这种海藻提取物(SWE)用于提高橡胶树幼苗的抗病能力。叶面喷洒SWE溶液后,分析了两种抗氧化酶,过氧化氢酶(CAT)和过氧化物酶(POD),以及系统获得性抗性(SAR)触发的酶β-1,3-葡聚糖酶(GLU)。通过高效液相色谱(HPLC)测量了二次代谢产物,植物抗毒素scopoletin(Scp)和信号分子水杨酸(SA)。 SWE处理和甲霜灵处理的植物均具有接近的疾病指数(DI)评分,分别为16.90±1.93和15.54±1.25,而喷洒棕榈假单胞菌的阳性对照显示DI评分为29.27±1.89,这在很大程度上高于用SWE或杀菌剂处理的那些。用SWE溶液处理的橡胶树叶片中的CAT,POD和GLU增加。此外,SWE处理的叶片中Scp和SA显着增加。与SWE应用的局部区域相比,在远端区域观察到增强的全身获得性抗性诱导,SA积累为2.09倍。总之,从这些研究中得出的SWE诱导的积极作用表明,SWE可以用作叶面喷洒的替代生物防治剂,以增强橡胶树幼苗对棕榈假单胞菌的防御反应。

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