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髭毛象甲(Rhinostomus barbirostris)(鞘翅目:象甲科)的聚集信息素:鉴定、合成、绝对构型及生物活性

Aggregation Pheromone of the Bearded Weevil, Rhinostomus barbirostris (Coleoptera: Curculionidae): Identification, Synthesis, Absolute Configuration and Bioactivity.

作者信息

Reis Analú C, Neta Palmira L S, Jordão Jéssica P, Moura José Inácio L, Vidal Diogo M, Zarbin Paulo H G, Fávaro Carla F

机构信息

Department of Exact and Technological Sciences, State University of Santa Cruz, Ilhéus, BA, 45662-900, Brazil.

Department of Agrarian and Environmental Sciences, State University of Santa Cruz, Ilhéus, BA, 45662-900, Brazil.

出版信息

J Chem Ecol. 2018 May;44(5):463-470. doi: 10.1007/s10886-018-0957-x. Epub 2018 Apr 16.

DOI:10.1007/s10886-018-0957-x
PMID:29658050
Abstract

The bearded weevil, Rhinostomus barbirostris (Coleoptera: Curculionidae: Dryophthorinae), attacks coconut trees, oil palms and other species of Arecaceae. Besides direct damage, R. barbirostris may be a vector of diseases in coconut and oil palms, such as stem bleeding (resinosis) and red ring disease. Currently, the only method to control this weevil is by visual observation of damage and removal of infected plants. Semiochemical-based trapping could improve the effectiveness of monitoring and management of R. barbirostris. In comparisons of volatiles released by R. barbirostris males and females by gas chromatography (GC) two male-specific compounds were observed. GC-mass spectrometry (MS) and GC-Fourier transform-infrared (FTIR) analyses of the natural compounds suggested these were diastereoisomers of 5-hydroxy-4-methylheptan-3-one, also known as sitophilure, a pheromone component of other dryophthorine species. Synthesis of the mixture of all four stereoisomers of sitophilure was performed in two steps, and the chemical structures were confirmed by comparing GC retention times and MS and FTIR spectra of natural and synthetic compounds. The absolute configurations of the two male-specific compounds were elucidated by enantioselective GC; the major component was the (4S,5R)-isomer, and the minor component (4S,5S)-sitophilure. In analyses by GC-electroantennography (EAG) the antennae of male and female R. barbirostris only responded to the (4S,5R)-isomer of the synthetic sitophilure. The stereoisomeric mixture of sitophilure was attractive to both sexes of R. barbirostris in laboratory experiments in the presence of sugar cane volatiles, and a similar result was obtained in a preliminary field trapping test.

摘要

具须象鼻虫,即Rhinostomus barbirostris(鞘翅目:象甲科:干象亚科),会侵害椰子树、油棕及其他棕榈科植物。除直接损害外,具须象鼻虫可能是椰子和油棕疾病的传播媒介,如树干流胶病(树脂病)和红环病。目前,控制这种象鼻虫的唯一方法是通过目视观察损害情况并清除受感染植株。基于信息素的诱捕可提高具须象鼻虫监测和管理的有效性。通过气相色谱法(GC)比较具须象鼻虫雄性和雌性释放的挥发物时,观察到两种雄性特异性化合物。对这些天然化合物进行气相色谱-质谱联用(GC-MS)和气相色谱-傅里叶变换红外光谱(GC-FTIR)分析表明,它们是5-羟基-4-甲基庚-3-酮的非对映异构体,5-羟基-4-甲基庚-3-酮也被称为谷象素,是其他干象亚科物种的一种信息素成分。谷象素所有四种立体异构体的混合物分两步合成,通过比较天然化合物和合成化合物的GC保留时间以及MS和FTIR光谱来确认化学结构。通过对映选择性GC阐明了两种雄性特异性化合物的绝对构型;主要成分是(4S,5R)-异构体,次要成分是(4S,5S)-谷象素。在气相色谱-触角电位图(GC-EAG)分析中,具须象鼻虫雄性和雌性的触角仅对合成谷象素的(4S,5R)-异构体有反应。在存在甘蔗挥发物的实验室实验中,谷象素的立体异构体混合物对具须象鼻虫的雌雄两性都有吸引力,并且在初步的田间诱捕试验中也得到了类似结果。

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