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Synthesis and plant growth inhibitory activity of N-trans-cinnamoyltyramine: its possible inhibition mechanisms and biosynthesis pathway

机译:N-反式肉桂酰酪胺的合成及植物生长抑制活性:可能的抑制机制及生物合成途径

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ABSTRACTThe search for potent, selective bioherbicides has been the focus of numerous studies for several decades. Developing an economically viable total chemical synthesis procedure has been the challenge for commercial-scale application of these nature-derived chemicals. An efficient and low-cost total synthesis of an allelopathic and antitumor N-trans-cinnamoyltyramine (NTCT) first reported in rice (Oryza sativa L.) was successfully achieved by one-step amidation from trans-cinnamic acid and tyramine. The synthesized NTCT inhibited root and hypocotyl growth of cress (Lepidium sativum L.) and barnyardgrass (Echinochloa crus-galli L.) at concentrations as low as 0.24 μM. The means of ED50 (the effective dose required for 50 plant growth inhibition) levels of the compound on cress and barnyardgrass hypocotyl and root elongations were 0.96 and 0.73 μM, respectively. Potential mechanisms underlying NTCT growth inhibition and its biosynthesis pathway were also suggested. The developed synthesis strategy co...
机译:摘要几十年来,寻找强效、选择性的生物除草剂一直是众多研究的焦点。开发一种经济上可行的全化学合成程序一直是这些天然衍生化学品商业规模应用的挑战。通过反式肉桂酸和酪胺的一步酰胺化,成功实现了在水稻(Oryza sativa L.)中首次报道的化感和抗肿瘤N-反式肉桂酰酪胺(NTCT)的高效和低成本全合成。合成的NTCT抑制了水芹(Lepidium sativum L.)和稗草(Echinochloa crus-galli L.)的根和下胚轴生长,浓度低至0.24 μM。该化合物对水芹和稗草下胚轴和根伸长的ED50(50%植物生长抑制所需的有效剂量)水平分别为0.96和0.73 μM。还提出了NTCT生长抑制的潜在机制及其生物合成途径。开发的合成策略与...

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