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首页> 外文期刊>Acta Physiologiae Plantarum >Essential oils of two Nepeta species inhibit growth and induce oxidative stress in ragweed (Ambrosia artemisiifolia L.) shoots in vitro
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Essential oils of two Nepeta species inhibit growth and induce oxidative stress in ragweed (Ambrosia artemisiifolia L.) shoots in vitro

机译:两种荆芥属植物的香精油可在豚草(Ambrosia artemisiifolia L.)幼芽中抑制生长并诱导氧化应激

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In vitro shoot cultures of ragweed (Ambrosia artemisiifolia L.), an important weed and allergen species, were established and utilized to explore the phytotoxic effect of essential oils of Nepeta rtanjensis Diklic and Milojevic, and N. cataria L. Ragweed shoots were exposed to the atmosphere enriched with volatile compounds emitted from essential oils which differ in their qualitative and quantitative nepetalactone content. Essential oil of N. rtanjensis, an endemic and critically endangered perennial in Serbia, was characterized by high amounts of 4a alpha, 7 alpha, 7a beta-nepetalactone (trans, cis-nepetalactone), while essential oil of N. cataria, possessed high amounts of 4a alpha, 7 alpha, 7a alpha-nepetalactone (cis, trans-nepetalactone). After 2 weeks of exposure to Nepeta essential oil (2 and 4 %, final nepetalactone concentrations), in vitro morphogenesis of ragweed shoots was significantly altered. Reduction in fresh weight of shoots and roots and rooting inhibition was observed together with prominent discoloration of shoots. Alterations in antioxidative defense system of ragweed shoots as a response to essential oils treatments were characterized by increased peroxidase activity and decreased catalase and superoxide dismutase activity. Generally, essential oil of N. cataria, which possesses cis, trans-stereoisomer of nepetalactone, had stronger inhibitory effect on shoot growth, catalase activity, and was more efficient in stimulating peroxidase activity. N. rtanjensis essential oil, and thus trans, cis-nepetalactone, was more efficient in inhibiting rooting and root growth, and in suppressing superoxide dismutase activity. Therefore, essential oils of N. rtanjensis and N. cataria might find another application as potential bioherbicides against highly invasive species such as ragweed.
机译:建立了豚草(Ambrosia artemisiifolia L。)(一种重要的杂草和过敏原物种)的体外芽培养物,并利用其探索了荆芥双歧和米洛耶维奇精油的植物毒性作用,以及N. cataria L. Ragweed芽暴露于空气中富含从精油中释放出的挥发性化合物,这些化合物的定性和定量内荆芥内酯含量不同。 Rtanjensis的精油是塞尔维亚的一种地方性和极度濒危的多年生植物,其特征是高含量的4a alpha,7 alpha,7aβ-荆芥内酯(反式,顺式荆芥内酯),而加泰罗尼亚烟草的精油具有较高的含量。量的4a alpha,7 alpha,7a alpha-荆芥内酯(顺式,反荆芥内酯)。暴露于荆芥精油2周(最终荆芥内酯浓度为2%和4%)后,豚草枝条的体外形态发生显着改变。观察到芽和根的新鲜重量减少和生根抑制以及芽的显着变色。豚草芽抗氧化防御系统的变化作为对精油处理的响应,其特征是过氧化物酶活性增加,过氧化氢酶和超氧化物歧化酶活性降低。一般而言,具有荆芥内酯的顺式,反式-立体异构体的加那利猪笼草的精油对芽的生长,过氧化氢酶活性具有更强的抑制作用,并且在刺激过氧化物酶活性方面更有效。 N. rtanjensis精油以及反式顺式荆芥内酯在抑制生根和根部生长以及抑制超氧化物歧化酶活性方面更为有效。因此,Rtanjensis和Cat。Naria的香精油可能会作为潜在的抗除草剂,例如豚草等高入侵物种的除草剂。

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