Federico Gabriel Galassi, Maria Ines Picollo, Paola González-Audino
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引用次数: 0
摘要
人类头虱(Pediculus humanus capitis (De Geer))(毛虱科:Phthiraptera: Pediculidae)是一种严格的强制性人类体外寄生虫,其整个生命周期都在宿主体内度过,会造成皮肤刺激和衍生感染。尽管这些昆虫对健康非常重要,但很少有研究对它们之间的化学交流进行评估。在这里,我们使用两种不同极性的溶剂(正己烷和甲醇)评估了雌雄虱子对角质萃取物的反应。通过气相色谱-质谱联用仪(GC-MS)分析了对头虱产生吸引反应的角质层提取物,以确定角质层脂质概况。两种性别的虱子都会被正己烷提取物吸引,而甲醇提取物则不会,这表明角质层中的化合物具有非极性。对雄性和雌性的正己烷提取物进行的化学分析显示,主要化合物的相似性很高。这项研究首次证明了虱子对角质层提取物的反应,这对了解虱子的聚集行为可能很重要。
Cuticular extracts induce aggregation in head lice
The human head lice Pediculus humanus capitis (De Geer) (Phthiraptera: Pediculidae) are strict, obligate human ectoparasites that spends their entire life cycle in the host and cause skin irritation and derived infections. Despite the health-related importance, few studies have evaluated the chemical communication among these insects. Here, we evaluate the response of lice of both sexes to cuticular extracts using two solvents of different polarity (hexane and methanol). Cuticular extracts that elicited an attraction response towards head lice were analysed by gas chromatography–mass spectrometry (GC–MS) to determine the cuticular lipid profile. Both lice sexes were attracted to the hexane extracts but not the methanol extracts, suggesting the non-polarity of the compounds present in the cuticle. Chemical analyses of hexane extracts from males and females showed high similarity in major compounds. This study provides the first evidence that lice respond to cuticle extracts, which may be important to understand aggregation behaviour.
期刊介绍:
Medical and Veterinary Entomology is the leading periodical in its field. The Journal covers the biology and control of insects, ticks, mites and other arthropods of medical and veterinary importance. The main strengths of the Journal lie in the fields of:
-epidemiology and transmission of vector-borne pathogens
changes in vector distribution that have impact on the pathogen transmission-
arthropod behaviour and ecology-
novel, field evaluated, approaches to biological and chemical control methods-
host arthropod interactions.
Please note that we do not consider submissions in forensic entomology.