Lee Seok-Min, Radhakrishnan Ramalingam, Kang Sang-Mo, Kim Jin-Hyo, Lee In-Yong, Moon Bong-Kyu, Yoon Byung-Wook, Lee In-Jung
School of Applied Biosciences, Kyungpook National University, Daegu 702-701, Republic of Korea.
Chemical Safety Division, National Academy of Agricultural Science, RDA, Republic of Korea.
Ecotoxicol Environ Saf. 2015 Dec;122:230-7. doi: 10.1016/j.ecoenv.2015.07.015. Epub 2015 Sep 20.
Bioherbicides from plant extracts are an effective and environmentally friendly method to prevent weed growth. The present investigation was aimed at determining the inhibitory effect of bur cucumber seed extracts (BSE) on lettuce plant growth. Bur cucumber seeds were ground with water, and two different concentrations of seed extracts (10% and 20%) were prepared and applied to lettuce plants. Decreased plant height, number of leaves, leaf length, leaf width, anProd. Type: FTPd leaf area were found in lettuce exposed to BSE as compared with controls. A significant reduction in lettuce biomass was observed in 20% BSE-treated plants due to the presence of higher amounts of phenolic content in the extracts. Moreover, a significant inhibitory chemical, 2-linoleoyl glycerol, was identified in BSE extracts. The mechanism of plant growth inhibition was assayed in lettuce proteins by 2-dimensional electrophoresis (2-DE) and the LC-MS/MS method. In total, 57 protein spots were detected in plants treated with 20% BSE and control plants. Among these, 39 proteins were down-regulated and 18 proteins were up-regulated in plants exposed to 20% BSE as compared with controls. The presence of low levels of chlorophyll a/b binding protein and oxygen-evolving enhancer protein 1 in BSE-exposed plants reduced photosynthetic pigment synthesis and might be a reason for stunted plant growth. Indeed, the plant-growth stimulating hormone gibberellin was inhibited, and synthesis of stress hormones such as abscisic acid, jasmonic acid, and salicylic acid were triggered in lettuce by the effects of BSE. Uptake of essential nutrients, Ca, Fe, Mg, K, S, and Mo, was deficient and accumulation of the toxic ions Cu, Zn, and Na was higher in BSE-treated plants. The results of this study suggest that extracts of bur cucumber seeds can be an effective eco-friendly bioherbicide for weed control that work by inhibiting mechanisms of photosynthesis and regulating phytohormones and nutritional elements.
植物提取物制成的生物除草剂是一种有效且环保的防止杂草生长的方法。本研究旨在确定刺瓜种子提取物(BSE)对生菜植株生长的抑制作用。将刺瓜种子与水研磨,制备了两种不同浓度的种子提取物(10%和20%)并施用于生菜植株。与对照相比,暴露于BSE的生菜植株的株高、叶片数量、叶长、叶宽和叶面积均有所降低。由于提取物中酚类含量较高,在20%BSE处理的植株中观察到生菜生物量显著减少。此外,在BSE提取物中鉴定出一种显著的抑制性化学物质2-亚油酰甘油。通过二维电泳(2-DE)和LC-MS/MS方法分析了生菜蛋白质中植物生长抑制的机制。总共在20%BSE处理的植株和对照植株中检测到57个蛋白质斑点。其中,与对照相比,暴露于20%BSE的植株中有39种蛋白质表达下调,18种蛋白质表达上调。暴露于BSE的植株中叶绿素a/b结合蛋白和放氧增强蛋白1水平较低,这降低了光合色素的合成,可能是植株生长发育不良的一个原因。事实上,植物生长刺激激素赤霉素受到抑制,而脱落酸、茉莉酸和水杨酸等应激激素的合成在BSE的作用下在生菜中被触发。在BSE处理的植株中,必需营养素钙、铁、镁、钾、硫和钼的吸收不足,而有毒离子铜、锌和钠的积累较高。本研究结果表明,刺瓜种子提取物可以成为一种有效的生态友好型生物除草剂,通过抑制光合作用机制、调节植物激素和营养元素来控制杂草。