木瓜粉蚧的性信息素。

IF 2.2 3区 环境科学与生态学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yuma Sugawara, Takumi Uesato, Jun Tabata
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引用次数: 0

摘要

据报道,粉蚧的性信息素来自20多个物种,通常被证明是与短链羧酸酯化的单萜醇。然而,在这里,我们发现并分离了一种不含酸段的醇,作为一种信息素化合物,从木瓜粉蚧(Paracoccus marginatus)的成年雌性中释放出来。通过气相色谱-质谱分析和核磁共振谱分析,鉴定其结构为反式-2-(2-异丙烯-1-甲基环丁基)乙醇,这是一种具有独特环丁烯骨架的单萜烯,通常称为香料醇。利用手性分离柱制备高效液相色谱法将合成的(±)-香樟醇完全分离为各对映体,证实(-)-(1S,2S)-香樟醇是天然的信息素,可作为信息素诱捕诱捕剂在田间吸引较多雄虫。(±)-芳香醇的吸引力与纯(-)-(1S,2S)-对映体相当。这一研究结果不仅为粉蚧的监测和管理提供了有用的信息,而且还揭示了粉蚧信息素结构的巨大多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sex Pheromone of the Papaya Mealybug.

Sex pheromones of mealybugs are reported from more than 20 species and have generally been shown to be monoterpene alcohols esterified with short-chain carboxylic acids. Here, however, we discovered and isolated an alcohol without an acid moiety as a pheromone compound released from adult females of the papaya mealybug, Paracoccus marginatus. By means of gas chromatography - mass spectrometry and nuclear magnetic resonance spectroscopy analyses, the structure was identified to be trans-2-(2-isopropenyl-1-methylcyclobutyl)ethanol, a monoterpene with a unique cyclobutene skeleton, commonly known as fragranol. We then completely separated synthetic (±)-fragranol into each enantiomer by means of preparative high-performance liquid chromatography using a chiral resolution column, and (-)-(1S,2S)-fragranol was definitely confirmed to be the natural pheromone and to attract many males in the field when used as a pheromone trap lure. (±)-Fragranol showed attractiveness comparable to that of the pure (-)-(1S,2S)-enantiomer. This study provides not only useful information for the monitoring and management of P. marginatus but also an interesting exception underlining the great diversity of mealybug pheromone structures.

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来源期刊
Journal of Chemical Ecology
Journal of Chemical Ecology 环境科学-生化与分子生物学
CiteScore
5.10
自引率
4.30%
发文量
58
审稿时长
4 months
期刊介绍: Journal of Chemical Ecology is devoted to promoting an ecological understanding of the origin, function, and significance of natural chemicals that mediate interactions within and between organisms. Such relationships, often adaptively important, comprise the oldest of communication systems in terrestrial and aquatic environments. With recent advances in methodology for elucidating structures of the chemical compounds involved, a strong interdisciplinary association has developed between chemists and biologists which should accelerate understanding of these interactions in nature. Scientific contributions, including review articles, are welcome from either members or nonmembers of the International Society of Chemical Ecology. Manuscripts must be in English and may include original research in biological and/or chemical aspects of chemical ecology. They may include substantive observations of interactions in nature, the elucidation of the chemical compounds involved, the mechanisms of their production and reception, and the translation of such basic information into survey and control protocols. Sufficient biological and chemical detail should be given to substantiate conclusions and to permit results to be evaluated and reproduced.
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