首页> 外文期刊>Environmental Science and Pollution Research >Citrus aurantifolia essential oil for the potential biocontrol of Colocasia esculenta (taro) leaf blight caused by Phytophthora colocasiae]]>
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Citrus aurantifolia essential oil for the potential biocontrol of Colocasia esculenta (taro) leaf blight caused by Phytophthora colocasiae]]>

机译:<![CDATA [使用<重点类型=“斜体”>柑橘AURANTIFOLIA <重点类型=“斜体”> CONCOCASIS ESCULOURA 植物磷阵挛性Colocasiae ]]>

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摘要

The aim of this work was to evaluate the antimicrobial activities of leaves and epicarp of Citrus aurantifolia essential oil against Phytophthora colocasiae , the causative agent of taro leaf blight. Oils were extracted by hydrodistillation, and their chemical composition was determined by gas chromatography and gas chromatography coupled with mass spectrometry. Antimicrobial activities of oils were tested in vitro against mycelium growth and sporangium production. In situ tests were done on healthy taro leaves, and the necrosis symptoms were evaluated. Results showed that the essential oil extraction yields from leaves and epicarp were 0.61 and 0.36%, respectively. Limonene (48.96%), bornyl acetate (14.18%), geraniol (10.53%), geranial (3.93%), and myrcene (3.14%) were the main components in leaf oil, while limonene (59.09%), cis -hydrate sabinene (7.53%), geranial (5.61%), myrtenol (5.02%), and terpinen-4-ol (3.48%) were the main components in epicarp oil. Both oils exhibited antimicrobial activities with total inhibition of the mycelium growth at 500 and 900?ppm for leaf and epicarp, respectively. The highest inhibitory concentration of sporangium production was 400 (72.84%) and 800?ppm (80.65%) for leaf and epicarp oil, respectively. For the standard fungicide (metalaxyl), the total inhibition value of mycelial growth and sporangium production was 750?ppm. In situ tests showed that, at 5000?ppm, total inhibition (100%) was obtained for a preventive test, while 50% of the inhibition was observed for a curative test when leaf oil was applied. When epicarp essential oil was applied at 5000?ppm, 47.5 and 16.66% of the reduction of leaf necrosis were observed for the preventive and curative test, respectively. There were positive correlations between both the oil concentration and the reduction of necrosis caused by P. colocasiae . These findings suggest that the C. aurantifolia essential oil could serve as an eco-friendly biocontrol for the management of taro leaf blight.
机译:这项工作的目的是评估柑橘Aurantifolia精油对植物对植物孢子瘤的叶片和表皮的抗菌活性,芋头叶枯萎病的致病剂。通过氢化物萃取油,通过与质谱法偶联的气相色谱和气相色谱法测定它们的化学组成。在体外测试油的抗微生物活性对菌丝体生长和孢子园生产进行了测试。原位测试是在健康的芋头叶上完成的,并评估坏死症状。结果表明,叶片和表皮的精油提取产量分别为0.61和0.36%。柠檬烯(48.96%),乙酸二乙酸(14.18%),大竺葵(10.53%),大竺葵(3.93%)和牛甲炔(3.14%)是叶油的主要成分,而柠檬烯(59.09%),Cis-rydrateSabinene (7.53%),大血管(5.61%),myrtenol(5.02%)和Terpinen-4-Ol(3.48%)是Epicarp油中的主要成分。两种油分别表现出抗菌活性,分别具有500和900μm的菌丝体生长的抗菌活性,分别用于叶和表皮的PPM。 Sporangium产量的最高抑制浓度分别为400(72.84%)和800μlPPM(800℃),分别用于叶子和表皮油的叶片和表皮油的PPM(80.65%)。对于标准杀菌剂(金属钠),菌丝体生长和孢子园产量的总抑制值为750μppm。原位测试表明,在5000℃下,获得预防性试验的总抑制(100%),而在施加叶油时,观察到50%的抑制作用。当Epicarp精油以5000施用时,分别观察到预防和治疗试验的47.5和16.66%的叶坏死的减少。石油浓度与P.Colocasiae引起的坏死之间存在正相关性。这些研究结果表明,C. Aurantifolia精油可以作为生态友好的生物管制,用于管理芋头叶枯萎病。

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