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首页> 外文期刊>Acta Physiologiae Plantarum >Phytotoxicity mechanisms of two coumarin allelochemicals from Stellera chamaejasme in lettuce seedlings
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Phytotoxicity mechanisms of two coumarin allelochemicals from Stellera chamaejasme in lettuce seedlings

机译:两种Stellera chamaejasme香豆素化感物质对生菜幼苗的植物毒性机理

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Stellera chamaejasme, a perennial weed which is an ecological threat, is widely distributed in some grasslands of Central and Eastern Asia. Our previous studies have identified several allelochemicals including two coumarins (umbelliferone and daphnoretin), from S. chamaejasme, and confirmed that allelopathy contributed to the competitive behavior of this weed. In this study, the inhibitory effects of umbelliferone and daphnoretin on lettuce seedlings and the mechanisms of their phytotoxicity were investigated. Results showed that shoot and root elongation and fresh weight of lettuce seedlings were effectively inhibited by umbelliferone in a concentration-dependent manner. Daphnoretin showed a weaker phytotoxicity. Both of the coumarins arrested the mitosis process in lettuce root tips and induced proline overproduction. Additionally, loss of cell viability and overproduction of reactive oxygen species in lettuce root cells were found after treatments with umbelliferone. Moreover, umbelliferone caused lipid peroxidation. These results suggested that umbelliferone displayed stronger phytotoxicity than daphnoretin on lettuce growth, and that the two coumarins had different mechanisms of phytotoxicity. That of daphnoretin was mainly dependent on its inhibitory effects on mitosis. Umbelliferone caused membrane lipid peroxide formation and cell death by inducing ROS overproduction, and impacted cell division, which resulted in growth inhibition of the receptor plant.
机译:Stellera chamaejasme是一种多年生杂草,是一种生态威胁,广泛分布于中亚和东亚的一些草原。我们以前的研究已经鉴定了几种化学物质,包括来自沙门氏菌的香豆素(伞形酮和达福瑞汀),并证实化感作用促进了这种杂草的竞争行为。本研究探讨了伞形酮和瑞香菊酯对生菜幼苗的抑制作用及其植物毒性的机理。结果表明,伞形酮能有效抑制生菜幼苗的茎,根伸长和鲜重,且呈浓度依赖性。瑞香素显示出较弱的植物毒性。两种香豆素都阻止了莴苣根尖的有丝分裂过程,并诱导了脯氨酸的过量生产。另外,在用伞形酮处理后,在生菜根细胞中发现了细胞活力的丧失和活性氧的过量产生。此外,伞形酮引起脂质过氧化。这些结果表明,伞形酮在生菜生长方面显示出比瑞香菊酯更高的植物毒性,并且两种香豆素具有不同的植物毒性机制。瑞香素的含量主要取决于其对有丝分裂的抑制作用。伞形酮通过诱导ROS过量生成而导致膜脂质过氧化物的形成和细胞死亡,并影响细胞分裂,从而导致受体植物的生长受到抑制。

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