Department for Bioresources, Fraunhofer Institute for Molecular Biology and Applied Ecology, Ohlebergsweg 12, Gießen, 35392, Germany.
LOEWE Centre for Translational Biodiversity Genomics (TBG), Senckenberganlage 25, Frankfurt am Main, 60325, Germany.
Biol Rev Camb Philos Soc. 2022 Feb;97(1):163-178. doi: 10.1111/brv.12793. Epub 2021 Aug 28.
Spiders are diverse, predatory arthropods that have inhabited Earth for around 400 million years. They are well known for their complex venom systems that are used to overpower their prey. Spider venoms contain many proteins and peptides with highly specific and potent activities suitable for biomedical or agrochemical applications, but the key role of venoms as an evolutionary innovation is often overlooked, even though this has enabled spiders to emerge as one of the most successful animal lineages. In this review, we discuss these neglected biological aspects of spider venoms. We focus on the morphology of spider venom systems, their major components, biochemical and chemical plasticity, as well as ecological and evolutionary trends. We argue that the effectiveness of spider venoms is due to their unprecedented complexity, with diverse components working synergistically to increase the overall potency. The analysis of spider venoms is difficult to standardize because they are dynamic systems, fine-tuned and modified by factors such as sex, life-history stage and biological role. Finally, we summarize the mechanisms that drive spider venom evolution and highlight the need for genome-based studies to reconstruct the evolutionary history and physiological networks of spider venom compounds with more certainty.
蜘蛛是多样化的、掠食性节肢动物,已经在地球上生活了大约 4 亿年。它们以复杂的毒液系统而闻名,这些毒液系统被用来制服猎物。蜘蛛毒液中含有许多具有高度特异性和效力的蛋白质和肽,非常适合用于生物医学或农用化学品应用,但毒液作为一种进化创新的关键作用经常被忽视,尽管这使得蜘蛛成为最成功的动物谱系之一。在这篇综述中,我们讨论了蜘蛛毒液被忽视的生物学方面。我们专注于蜘蛛毒液系统的形态、主要成分、生化和化学可塑性,以及生态和进化趋势。我们认为,蜘蛛毒液的有效性归因于其前所未有的复杂性,多种成分协同作用以提高整体效力。由于蜘蛛毒液是动态系统,会受到性别、生命周期阶段和生物角色等因素的微调与修饰,因此对其进行分析难以标准化。最后,我们总结了驱动蜘蛛毒液进化的机制,并强调需要基于基因组的研究,以更确定的方式重建蜘蛛毒液化合物的进化历史和生理网络。