Relative response of male Bactrocera frauenfeldi (Diptera: Tephritidae) to phenylbutanoid phytochemicals: implications for fruit fly control and plant–insect interactions

IF 1.6 3区 环境科学与生态学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Chemoecology Pub Date : 2020-07-24 DOI:10.1007/s00049-020-00320-6
S. L. Wee, J. E. Royer, J. Herring, D. G. Mayer, K. H. Tan
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引用次数: 4

Abstract

The interactions between Dacini male fruit flies and phytochemical male lures are unique. Lure response, fate and its effects after consumption on fruit fly mating behaviour are species- and lure-specific. Bactrocera frauenfeldi is known to respond to the phenylbutanoids raspberry ketone (RK) and cue lure (CL), anisyl acetone (AA), and zingerone (ZN), which are produced by some rainforest orchids. Here we compared the relative field responses of B. frauenfeldi males to these phenylbutanoids in two selected locations to determine the most attractive lure for this species. We also performed gas chromatographic-mass spectral analyses of male rectal pheromone glands to understand the fate of the ingested compounds. Results showed that B. frauenfeldi males were most responsive to CL, equally to RK and AA, while poorly to ZN in Cairns, a site with high population density. No significant difference was observed in Lockhart River which has a low population density of B. frauenfeldi. Chemical analyses showed that most of the ingested phenylbutanoids were sequestered into rectal glands, either unchanged or with minimal structural changes except for AA, which is converted to RK via a demethylation of the methoxy- to a hydroxy-moiety and reduced to 4-(4-methoxyphenyl)-2-butanol via the keto-moiety. This study provides both practical and ecological implications: it identified the most attractive lure, which is important for monitoring and management of B. frauenfeldi; and based on the relative responses, conversion and retention rates by B. frauenfeldi males, revealed the ecological significance of these phytochemical lures in plant-fruit fly co-evolution.

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雄性弗氏小实蝇(双翅目:绢蝇科)对类苯丁烷植物化学物质的相对反应:果蝇防治和植物-昆虫相互作用的意义
达西尼雄性果蝇与植物化学雄性诱饵之间的相互作用是独特的。饵的反应、饵的命运及其对果蝇交配行为的影响具有种类和饵的特异性。已知frauenfeldi小实蝇对一些热带雨林兰花产生的苯丁烷类覆盆子酮(RK)和cue lure (CL),茴香基丙酮(AA)和姜酮(ZN)有反应。在此,我们比较了两个选定地点雌白腹小蠊对这些苯丁烷类物质的相对田间反应,以确定对雌白腹小蠊最具吸引力的引诱物。我们还对男性直肠信息素腺体进行气相色谱-质谱分析,以了解摄入化合物的命运。结果表明,在种群密度较高的凯恩斯地区,雌绒螯蟹雄性对氯离子的反应最强烈,对RK和AA的反应相同,对ZN的反应较差。在种群密度较低的洛克哈特河,差异不显著。化学分析表明,大多数摄入的苯基丁醇类化合物都被隔离在直肠腺中,要么保持不变,要么只有很小的结构变化,除了AA,它通过甲氧基-去甲基化为羟基片段转化为RK,并通过酮基片段还原为4-(4-甲氧基苯基)-2-丁醇。本研究具有实际意义和生态意义:确定了最具吸引力的引诱物,对监测和管理白腹小蠊具有重要意义;通过对雌雄雌雄雌雄的相对反应、转化率和保留率的分析,揭示了这些植物化学诱饵在植物-果蝇共同进化中的生态意义。
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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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