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首页> 外文期刊>Spanish Journal of Agricultural Research >Short communication: Efficacy of a non-pheromone semiochemical for trapping of western flower thrips in the presence of competing plant volatiles in a nectarine orchard
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Short communication: Efficacy of a non-pheromone semiochemical for trapping of western flower thrips in the presence of competing plant volatiles in a nectarine orchard

机译:简短交流:油桃园中存在竞争性植物挥发物的情况下,非信息素化学信息素对捕获西花蓟马的功效

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摘要

Non-pheromone semiochemicals or allelochemicals (kairomones, synomones, allomones) are often derived from, or are similar to, host plant odours and depending on their use, these semiochemicals may have to compete with the same or similar odours emanating from adjacent host plants with unknown consequences on trapping efficacy. The aim of this study was to examine the efficacy of the non-pheromone thrips attractant methyl isonicotinate (MI) as a lure for Western flower thrips (WFT; Frankliniella occidentalis ) over a range of Prunus persicae nectarine plant growth stages (flowering, green fruit, ripe fruit), when competition from different host plant odours may vary, and different numbers of thrips can be present, in a Catalan nectarine orchard in 2014 and 2015. Significant 2.4–3.9 × increases in WFT numbers in traps with MI compared with those without MI were consistent over the season (flowering, green fruit, mature fruit) despite overall differences in thrips numbers on these different occasions. These results suggest that MI is an effective lure throughout the nectarine growth stages despite the presumed presence of competing and changing host plant odours. Trap type and colour and MI release rate may be important for improving overall trap efficacy.
机译:非信息素化学信息素或化感物质(海洛酮,同调素,同位素)通常源自或类似于宿主植物的气味,根据其用途,这些化学信息素可能必须与相邻宿主植物产生的相同或相似气味竞争。诱捕功效的未知结果。这项研究的目的是研究在整个李子油桃植物生长阶段(开花,绿色水果)中非信息素蓟马诱剂异烟酸甲酯(MI)作为西花蓟马(WFT; Frankliniella occidentalis)的诱剂的功效。 (成熟的果实),2014年和2015年,加泰罗尼亚油桃园中来自不同寄主植物气味的竞争可能不同,并且蓟马的数量也可能不同。与那些相比,MI诱捕器中WFT值显着增加2.4–3.9×尽管在这些不同情况下蓟马数量总体不同,但没有MI的季节(开花,绿色水果,成熟水果)在整个季节都是一致的。这些结果表明,尽管推测存在竞争和变化的宿主植物气味,但MI在整个油桃生长阶段都是有效的诱饵。捕集阱的类型和颜色以及MI释放速率对于提高整体捕集阱的功效可能很重要。

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