首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Attraction of New Zealand Flower Thrips, Thrips obscuratus, to cis-Jasmone, a Volatile Identified from Japanese Honeysuckle Flowers
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Attraction of New Zealand Flower Thrips, Thrips obscuratus, to cis-Jasmone, a Volatile Identified from Japanese Honeysuckle Flowers

机译:新西兰花蓟马(Thrips obscuratus)吸引顺式茉莉酮(一种从日本金银花中鉴别出的挥发物)

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This work was undertaken to identify floral compound(s) produced by honeysuckle flowers, Lonicera japonica (Thunberg), that mediate the attraction of New Zealand flower thrips Thrips obscuratus (Crawford). Volatiles were collected during the day and night and analyzed by gas chromatography-mass spectrometry (GC-MS) to determine their emission over these two periods. Nine compounds were identified in the headspace; the main compound was linalool, and the other compounds were germacrene D, E,E-alpha-farnesene, nerolidol, cis-jasmone, cis-3-hexenyl acetate, hexyl acetate, cis-hexenyl tiglate, and indole. There was a quantitative difference between day and night volatiles, with cis-3-hexenyl acetate, hexyl acetate, cis-hexenyl tiglate, and cis-jasmone emitted in higher amounts during the day compared to the night. When the compounds were tested individually in field trapping experiments, only cis-jasmone attracted New Zealand flower thrips in a significant number. In another field trapping experiment, cis-jasmone caught similar numbers of New Zealand flower thrips compared to a floral blend formulated to mimic the ratios of the compounds emitted during the day, while catch with the night-emitted floral blend was not significantly different from the control. Subsequently, two field trapping experiments were conducted to determine the optimal attraction dose for cis-jasmone, a range of 1-100 mg loaded onto a red rubber stopper was tested, and the highest catches were in traps baited with 100 mg loading. A higher range of 100-1000 mg loaded into polyethylene vials was tested, and the highest catch was in traps baited with 500 mg. In another experiment aimed at comparing the attraction efficacy of cis-jasmone with the two other known thrips attractants (ethyl nicotinate and p-anisaldehyde), ethyl nicotinate showed the highest trap catch followed by cis-jasmone. A smaller number of Thrips tabaci (Lindeman) was attracted to traps baited with cis-jasmone. These results suggest that cis-jasmone might act as a kairomone that mediates the attraction of New Zealand flower thrips to the flowers of the Japanese honeysuckle.
机译:进行这项工作以鉴定由金银花(忍冬)(Thunberg)产生的花香化合物,它们介导了新西兰花蓟马(Thrips obscuratus)(克劳福德)的吸引力。在白天和晚上收集挥发物,并通过气相色谱-质谱法(GC-MS)进行分析,以确定这两个时期的挥发物。在顶空发现了九种化合物;主要化合物为芳樟醇,其他化合物为germ烯丁二烯D,E,E-E-法呢烯,橙花醇,顺式茉莉酮,顺式-3-己烯基乙酸酯,醋酸己酯,顺式己烯基tiglate和吲哚。白天和晚上的挥发物之间存在定量差异,与白天相比,白天排放的顺式-3-己烯基乙酸酯,乙酸己酯,tig-顺式己烯基酯和顺式茉莉酮含量更高。在田间诱集实验中对化合物进行单独测试时,只有顺式茉莉酮吸引了大量新西兰花蓟马。在另一个田间诱集实验中,与模拟日间排放化合物比例的花卉混合物相比,顺式茉莉花可捕获相似数量的新西兰蓟马,而夜间排放的花卉混合物的捕获量与新西兰烟蓟马的捕获量无显着差异。控制。随后,进行了两次野外诱捕实验以确定顺式茉莉酮的最佳引诱剂量,测试了在红色橡胶塞上加载1-100 mg的范围,并在诱捕100 mg诱饵的诱捕器中捕获量最高。测试了向聚乙烯小瓶中上样的100-1000 mg的较高范围,并且最大捕获量是在用500 mg诱饵捕获的陷阱中。在另一个旨在将顺式茉莉酮与其他两种已知的蓟马引诱剂(烟酸乙酯和对茴香醛)的吸引力进行比较的实验中,烟酸乙酯显示出最高的诱捕量,其次是顺式茉莉酮。少量的烟粉虱(Lindeman)被诱因用顺式茉莉酮诱捕的诱集器。这些结果表明,顺式茉莉酮可能是介导新西兰花蓟马对日本金银花的吸引力的海洛酮。

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