两种臭虫对混合醛信息素的差异反应(异翅目:杀螨科)

IF 1.6 3区 环境科学与生态学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Chemoecology Pub Date : 2021-07-26 DOI:10.1007/s00049-021-00359-z
Mark Dery, Chow-Yang Lee, Dong-Hwan Choe
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引用次数: 0

摘要

采用双选择嗅觉仪研究了两种臭虫(Cimex lectularius L.)和半翅臭虫(C. hemipterus (F.))对同种或异种淋巴醛混合物的行为反应。从蜕皮液或含有(E)-2-己烯醛、4-氧-(E)-2-己烯醛、(E)-2-辛烯醛和4-氧-(E)-2-辛烯醛的合成混合物中提取挥发性线索进行测试。在这两个物种中,当提供相同的挥发性醛提示时,成虫优先定居在嗅觉处理侧。在异源性挥发性醛提示下,只有成虫对半翅蝉的挥发性醛提示有优先反应。半翅小蠊成虫对白蚁醛混合物无明显反应。讨论了该发现对臭虫生物学和实际害虫管理的潜在意义。
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Differential responses to aldehyde pheromone blends in two bed bug species (Heteroptera: Cimicidae)

The behavioral responses of two bed bug species, Cimex lectularius L. and C. hemipterus (F.), to conspecific or heterospecific nymphal aldehyde blends were examined using a two-choice olfactometer. Volatile cues from exuviae or a synthetic blend containing (E)-2-hexenal, 4-oxo-(E)-2-hexenal, (E)-2-octenal, and 4-oxo-(E)-2-octenal were tested. In both species, the adults settled preferentially on the olfactometer treatment side when conspecific volatile aldehyde cues were provided. When tested with heterospecific volatile aldehyde cues, only adult C. lectularius preferentially responded to C. hemipterus volatile cues. Adult C. hemipterus was indifferent to the aldehyde blend of C. lectularius. Potential implications of the finding on bed bug biology and practical pest management are discussed.

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来源期刊
Chemoecology
Chemoecology 环境科学-生化与分子生物学
CiteScore
4.20
自引率
0.00%
发文量
11
审稿时长
>36 weeks
期刊介绍: It is the aim of Chemoecology to promote and stimulate basic science in the field of chemical ecology by publishing research papers that integrate evolution and/or ecology and chemistry in an attempt to increase our understanding of the biological significance of natural products. Its scopes cover the evolutionary biology, mechanisms and chemistry of biotic interactions and the evolution and synthesis of the underlying natural products. Manuscripts on the evolution and ecology of trophic relationships, intra- and interspecific communication, competition, and other kinds of chemical communication in all types of organismic interactions will be considered suitable for publication. Ecological studies of trophic interactions will be considered also if they are based on the information of the transmission of natural products (e.g. fatty acids) through the food-chain. Chemoecology further publishes papers that relate to the evolution and ecology of interactions mediated by non-volatile compounds (e.g. adhesive secretions). Mechanistic approaches may include the identification, biosynthesis and metabolism of substances that carry information and the elucidation of receptor- and transduction systems using physiological, biochemical and molecular techniques. Papers describing the structure and functional morphology of organs involved in chemical communication will also be considered.
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