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甘蔗叶的化感作用:最佳提取溶剂、化感活性组分的部分分离及除草活性

Allelopathic Effects of Sugarcane Leaves: Optimal Extraction Solvent, Partial Separation of Allelopathic Active Fractions, and Herbicidal Activities.

作者信息

Krumsri Ramida, Kato-Noguchi Hisashi, Poonpaiboonpipat Thanatsan

机构信息

Department of Agronomy, Faculty of Agriculture, Kasetsart University, Bangkok 10900, Thailand.

Center of Knowledge and Technology for Cane and Sugar, Faculty of Agro-Industry, Kasetsart University, 50 Ngamwongwan Road, Ladyao, Chatuchak, Bangkok 10900, Thailand.

出版信息

Plants (Basel). 2024 Jul 27;13(15):2085. doi: 10.3390/plants13152085.

Abstract

The inhibitory potential of allelopathic plants is the subject of increasing research attention for their application in weed management. The sugarcane leaf is an agricultural waste product that has been reported to have allelopathic potential. Therefore, the present study determined the optimal organic solvent system and fractionation procedure to enhance the quantity of this extract and its allelopathic efficiency. Sugarcane leaves were extracted using five ethanol/water solvent ratios (/): 00:100, 25:75, 50:50, 75:25, and 100:00. Their allelopathic effects on seed germination and seedling growth were assayed in two major weeds, (L.) Beauv. and L. The results showed that the extract concentration, solvent ratio, and their interaction significantly inhibited the growth parameters in . Consequently, a crude ethanol/water ratio of 00:100 was used to separate the active fraction via acid-base solvent partitioning. The acidic fraction (AE) exerted the greatest inhibitory effect and completely (100%) inhibited at all concentrations, followed by the original crude fraction, neutral fraction, and aqueous fraction. Moreover, all of the fractions had selective effects, inhibiting much more than in the laboratory tests. The chemical analysis using gas chromatography/mass spectrometry indicated that the AE fraction contained 20 different compounds. The five major compounds included alkaloids, organic acids, and phenols. Therefore, the AE fraction was selected for formulation in a concentrated suspension and tested for its herbicidal characteristics. The formulation exhibited early post-emergence activities and had a stronger effect on compared to . The physiological mechanism of the formulation was tested against . The thiobarbituric acid reactive substances and HO occurred in the leaf, which suggests lipid peroxidation and cell disruption.

摘要

化感植物的抑制潜力因其在杂草管理中的应用而受到越来越多的研究关注。甘蔗叶是一种农业废弃物,据报道具有化感潜力。因此,本研究确定了最佳有机溶剂体系和分级分离程序,以提高该提取物的产量及其化感效率。使用五种乙醇/水溶剂比例(/)提取甘蔗叶:00:100、25:75、50:50、75:25和100:00。在两种主要杂草马唐(Digitaria sanguinalis (L.) Beauv.)和稗草(Echinochloa crusgalli L.)中测定了它们对种子萌发和幼苗生长的化感作用。结果表明,提取物浓度、溶剂比例及其相互作用显著抑制了马唐的生长参数。因此,采用00:100的粗乙醇/水比例通过酸碱溶剂分配法分离活性组分。酸性组分(AE)的抑制作用最大,在所有浓度下均能完全(100%)抑制马唐,其次是原始粗组分、中性组分和水相组分。此外,所有组分均具有选择性作用,在实验室试验中对马唐的抑制作用远大于稗草。气相色谱/质谱联用的化学分析表明,AE组分含有20种不同的化合物。五种主要化合物包括生物碱、有机酸和酚类。因此,选择AE组分制成浓缩悬浮液并测试其除草特性。该制剂表现出芽后早期活性,对马唐的作用比对稗草更强。针对稗草测试了该制剂的生理机制。稗草叶片中出现了硫代巴比妥酸反应性物质和过氧化氢,这表明发生了脂质过氧化和细胞破坏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d702/11314032/2cbbf70ce241/plants-13-02085-g001.jpg

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