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豆野螟对豌豆花挥发物的趋性。

Attraction of pea moth Cydia nigricana to pea flower volatiles.

机构信息

Bioforsk - Norwegian Institute for Agricultural and Environmental Research, Division of Plant Health and Plant Protection, Høgskoleveien 7, NO-1430 Ås, Norway.

出版信息

Phytochemistry. 2014 Apr;100:66-75. doi: 10.1016/j.phytochem.2014.01.005. Epub 2014 Feb 5.

Abstract

The pea moth Cydia nigricana causes major crop losses in pea (Pisum sativum) production. We investigated attraction of C. nigricana females to synthetic pea flower volatiles in a wind tunnel and in the field. We performed electroantennogram analysis on 27 previously identified pea plant volatiles, which confirmed antennal responses to nine of the compounds identified in pea flowers. A dose-dependent response was found to eight of the compounds. Various blends of the nine pea flower volatiles eliciting antennal responses were subsequently studied in a wind tunnel. A four-compound blend comprising hexan-1-ol, (E)-2-hexen-1-ol, (Z)-β-ocimene and (E)-β-ocimene was equally attractive to mated C. nigricana females as the full pea flower mimic blend. We conducted wind-tunnel tests on different blends of these four pea flower compounds mixed with a headspace sample of non-flowering pea plants. By considering the effects of such green leaf background odour, we were able to identify (Z)- and (E)-β-ocimene as fundamental for host location by the pea moths, and hexan-1-ol and (E)-2-hexen-1-ol as being of secondary importance in that context. In the field, the two isomers of β-ocimene resulted in trap catches similar to those obtained with the full pea flower mimic and the four-compound blend, which clearly demonstrated the prime significance of the β-ocimenes as attractants of C. nigricana. The high level of the trap catches of female C. nigricana noted in this first field experiment gives a first indication of the potential use of such artificial kairomones in pea moth control.

摘要

黑纹粉斑螟 Cydia nigricana 对豌豆(Pisum sativum)生产造成重大作物损失。我们在风洞和田间研究了 C. nigricana 雌虫对合成豌豆花挥发物的吸引力。我们对 27 种先前鉴定出的豌豆植物挥发物进行了电触角图谱分析,证实了对豌豆花中 9 种化合物的触角反应。发现对其中 8 种化合物有剂量依赖性反应。随后,我们在风洞中研究了具有触角反应的 9 种豌豆花挥发物的各种混合物。由己烷-1-醇、(E)-2-己烯-1-醇、(Z)-β-罗勒烯和(E)-β-罗勒烯组成的四化合物混合物对交配的 C. nigricana 雌虫与完整的豌豆花模拟混合物一样有吸引力。我们在不同的风洞中进行了这些四种豌豆花化合物混合物与非开花豌豆植物的顶空样品的混合物的测试。通过考虑这种绿叶背景气味的影响,我们能够确定(Z)-和(E)-β-罗勒烯是豌豆蛾进行宿主定位的基本气味,而己烷-1-醇和(E)-2-己烯-1-醇在这种情况下是次要的。在田间,β-罗勒烯的两种异构体的诱捕量与使用完整的豌豆花模拟物和四化合物混合物获得的诱捕量相似,这清楚地表明β-罗勒烯作为 C. nigricana 的引诱剂具有重要意义。在首次田间试验中,雌性 C. nigricana 的诱捕量很高,这首次表明了这种人工信息素在豌豆蛾控制中的潜在用途。

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