徐瑞, 郝苑汝, 鱼若萱, 卢璐, 葛香瑞, 孙琳娜, 陈鸿, 翟梅枝. 2023: 陕西3个主产区核桃凋落叶的化感活性及其代谢产物差异分析. 南方农业学报, 54(4): 1198-1206. DOI: 10.3969/j.issn.2095-1191.2023.04.024
引用本文: 徐瑞, 郝苑汝, 鱼若萱, 卢璐, 葛香瑞, 孙琳娜, 陈鸿, 翟梅枝. 2023: 陕西3个主产区核桃凋落叶的化感活性及其代谢产物差异分析. 南方农业学报, 54(4): 1198-1206. DOI: 10.3969/j.issn.2095-1191.2023.04.024
XU Rui, HAO Yuan-ru, YU Ruo-xuan, LU Lu, GE Xiang-rui, SUN Lin-na, CHEN Hong, ZHAI Mei-zhi. 2023: Allelopathic activity and metabolite differences of walnut leaf litter in the three main producing areas of Shaanxi Province. Journal of Southern Agriculture, 54(4): 1198-1206. DOI: 10.3969/j.issn.2095-1191.2023.04.024
Citation: XU Rui, HAO Yuan-ru, YU Ruo-xuan, LU Lu, GE Xiang-rui, SUN Lin-na, CHEN Hong, ZHAI Mei-zhi. 2023: Allelopathic activity and metabolite differences of walnut leaf litter in the three main producing areas of Shaanxi Province. Journal of Southern Agriculture, 54(4): 1198-1206. DOI: 10.3969/j.issn.2095-1191.2023.04.024

陕西3个主产区核桃凋落叶的化感活性及其代谢产物差异分析

Allelopathic activity and metabolite differences of walnut leaf litter in the three main producing areas of Shaanxi Province

  • 摘要: 【目的】探究纬度因子变化对核桃凋落叶化感活性及代谢产物的影响,为核桃凋落叶深度开发利用及核桃林下复合种植提供理论基础。【方法】以陕西3个主产区黄龙、临渭和商州的核桃凋落叶为试验材料,采用室内生物测定法,研究其水提取物及70%乙醇提取物对小麦的化感作用,筛选出最佳提取溶剂,通过液相色谱—串联质谱法(LCMS/MS)鉴定适宜溶剂提取物的成分,进一步探究最佳溶剂提取物对小麦和黑麦草的化感作用,筛选敏感受体。【结果】相同试验条件下,不同产区核桃凋落叶提取物得率不同,2种提取液颜色均随纬度降低而加深。相同浓度处理液的化感活性为醇提物>水提物,乙醇可作为提取凋落叶中化感物质的适宜溶剂;对醇提物化感作用的敏感性程度为黑麦草>小麦,黑麦草可作为后续试验的敏感受体。3个主产区核桃凋落叶的化感活性依次为黄龙>临渭>商州。3个主产区核桃凋落叶70%乙醇提取物共检出13类1139种代谢物,黄龙、临渭和商州分别检出601、716和664种,均以脂类和类脂化合物为主;凋落叶中相对含量大于1%的物质有7类(主要为有机酸类) 27种,其中丁二酸、对羟基苯甲酸、苹果酸、右旋奎宁酸和石竹烯氧化物等5种化合物是已知的化感物质。【结论】不同产区核桃凋落叶提取物的化感活性随采样地纬度降低而减弱,可能是核桃生长环境的变化造成叶片中化感物质种类及含量不同,从而影响其提取物的化感活性。

     

    Abstract: 【Objective】To explore the effects of latitude factor on the allelopathic activity and metabolites of walnut leaf litter, so as to provide a theoretical basis for the deep development and utilization of walnut leaf litter and composite planting under walnut forest.【Method】Taking the leaf litter of walnut from Huanglong, Linwei and Shangzhou, the three main production areas of Shaanxi Province, as research objects, the allelopathic effects of aqueous extract and 70% ethanolic extract on wheat were studied by indoor bioassay. The optimal extraction solvent was selected,and the appropriate solvent extracts components were identified by liquid chromatography-tandem mass spectrometry LC-MS/MS to further explore the allelopathy of the best solvent extracts on wheat and ryegrass and screen the sensitive receptors.【Result】Under the same experimental conditions, the yield of walnut leaf litter extract varied in different producing areas, and the colors of two extracts deepened with decreasing latitude. The allelopathic activity of the same concentration treatment solution was ethanolic extract>aqueous extract, indicating that ethanol could be used as a suitable solvent for extracting allelopathic substances from walnut leaf litter. The sensitivity level to the allelopathic effect of ethanolic extract was ryegrass>wheat, indicating that ryegrass could be used as a sensitive receptor for subsequent experiments. The allelopathic activity of walnut leaf litter in different producing areas was in the order of Huanglong>Linwei>Shangzhou. A total of 1139 metabolites in 13 categories were detected in the 70% ethanolic extract of walnut leaf litter from the three regions. A total of 601, 716 and 664 metabolites were detected in Huanglong, Linwei and Shangzhou respectively, all of which were mainly lipids and lipidlike compounds. There were 7 types and 27 species of metabolites with a relative content greater than 1% in leaf litter, mainly organic acids. Five of these metabolites, including succinic acid,4-hydroxybenzoic acid, malic acid, quinic acid and caryophyllene oxide, were known allelopathic substances.【Conclusion】The synthetic allelopathic effects of walnut leaf litter extracts from the different producing areas decrease with the decrease of sampling latitude, which may be due to changes in the walnut growth environment causing different types and contents of allelopathic substances in the leaves, thereby affecting the allelopathic activity of the extracts.

     

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