首页> 外文期刊>BioControl: Journal of the International Organization for Biological Control >Attraction behaviors: are synthetic volatiles, typically emitted by insect-damaged Brassica nigra roots, navigation signals for entomopathogenic nematodes (Steinernema and Heterorhabditis)?
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Attraction behaviors: are synthetic volatiles, typically emitted by insect-damaged Brassica nigra roots, navigation signals for entomopathogenic nematodes (Steinernema and Heterorhabditis)?

机译:吸引力行为:是合成挥发物,通常由昆虫损伤的芸薹属NIGRA根,导航信号为昆虫致病线虫(Steinernema和Heterorhabditis)?

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摘要

We tested the chemotactic response of infective juveniles (IJs) of the entomopathogenic nematodes (EPNs) Steinernema feltiae, S. kraussei, Heterorhabditis bacteriophora, and S. carpocapsae, to the synthetic volatiles (dimethyl sulfide [DMS], dimethyl disulfide [DMDS], dimethyl trisulfide [DMTS], allyl isothiocyanate [AITC], phenylethyl isothiocyanate [PITC], and benzonitrile [BN]) typically emitted by insect-damaged Brassica nigra roots. We hypothesized that attraction behavior exhibited by the EPNs toward the tested volatile compounds (VOCs) could be related to the species and would vary with foraging strategy, VOC, time of exposure and temperature. Steinernema kraussei was the most mobile species in our assay, and at 20 degrees C, more than 35% of S. kraussei IJs moved to the outer circles of the Petri dishes, while among the other tested EPN species, the greatest movement was observed in H. bacteriophora (10%). The movement of different EPNs species towards VOCs was influenced by temperature. All of the compounds tested in our assay repelled S. kraussei at both experimental temperatures, suggesting that sulfur compounds and glucosinolate breakdown products could play an important role in EPNs navigation.
机译:我们测试了昆虫疗法线虫(EPNS)Steinernema Feltiae,S.Kraussei,杂菌炎菌病毒和S.Ackpocaps的感染性幼虫(EJS)的趋化响应对合成挥发物(二甲基硫化物[DMS],二甲基二硫化物[DMDS],三甲基三硫化物[DMT],烯丙基异硫氰酸酯[AITC],苯基乙基异硫氰酸酯[PITC]和苯腈[BN])通常由昆虫损伤的芸苔NIGRA根发出。我们假设EPNS向测试的挥发性化合物(VOC)表现出的吸引力可能与物种有关,并且会因觅食​​策略,VOC,暴露时间和温度而异。 Steinernema Kraussei是我们的测定中最具手机种类,在20摄氏度,35%以上的S.Kraussei IJS移动到培养皿的外圈,而其他测试的EPN种类中,观察到最大的运动H.细菌(10%)。不同EPNS物种对VOC的运动受到温度的影响。在我们的测定中测试的所有化合物在我们的测定中都在实验温度下检测到的S.Kraussei,表明硫化合物和葡糖苷崩解产品可以在EPNS导航中发挥重要作用。

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