Universite Rennes 1, UMR 6552 CNRS EthoS, 35042 Rennes, France.
Instituto de Investigaciones Bioquimicas de La Plata "Profesor Doctor Rodolfo R. Brenner", 60 y 120 s/n. La Plata, Buenos Aires, Argentina.
Comp Biochem Physiol B Biochem Mol Biol. 2021 Feb-Mar;252:110541. doi: 10.1016/j.cbpb.2020.110541. Epub 2020 Dec 5.
Cuticular lipids in terrestrial arthropods are not only essential for desiccation resistance; they also play an important role as chemical signals for intra- and interspecific communication (pheromones and kairomones, respectively). Most of the studies on cuticular lipid research was dedicated to one class of arthropods, the insects. This type of research on the class arachnids is poorly developed, and the majority of studies has listed the compounds present in cuticular extracts, and, in some cases, compared the lipid profiles of different life stages (juveniles, adults). Consequently, we reviewed in relation to lipids description, biosynthesis, and transport of spiders. To illustrate a novel concept of lipid transportation, a scheme is now presented to show the hypothetical transport pathways of hydrocarbon and free fatty acids to cuticle in spiders. These concepts are taken from the knowledge of different arachnids to obtain a general illustration on the biosynthesis and transport of hemolymphatic lipids to the cuticle in spider.
陆生节肢动物的表皮脂质不仅对抵抗干燥至关重要;它们还分别作为种内和种间通讯的化学信号(信息素和利它素)发挥着重要作用。大多数关于表皮脂质研究的工作都集中在节肢动物的一个类群——昆虫上。关于蛛形纲动物的这类研究尚不完善,而且大多数研究都列出了表皮提取物中的化合物,并在某些情况下比较了不同生命阶段(幼虫、成虫)的脂质图谱。因此,我们综述了蜘蛛的脂质描述、生物合成和运输。为了说明脂质运输的新概念,现在提出了一个方案,以显示蜘蛛表皮中碳氢化合物和游离脂肪酸的假想运输途径。这些概念取自对不同蛛形纲动物的了解,以获得关于血液脂质向蜘蛛表皮生物合成和运输的一般说明。