温度会改变植物萜类化合物对多食模式食草动物 Vanessa cardui 的毒理影响。

IF 2.2 3区 环境科学与生态学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Chemical Ecology Pub Date : 2023-12-01 Epub Date: 2023-09-11 DOI:10.1007/s10886-023-01449-8
Mari R Irving, Eric W Goolsby, Hannah Stanford, Simone Lim-Hing, Maria Urrea, Chase M Mason
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引用次数: 0

摘要

萜烯是存在于所有植物中的一类主要次级代谢产物,长期以来一直被认为是植物与食草动物相互作用的产物。食草动物是一种主要的生物交互作用,这种作用跨越广泛的时空尺度,在温度机制方面差异巨大,这既是由于不同地理位置的气候差异,也是由于季节性的影响。此外,人们逐渐认识到,全球气候变化将在未来几个世纪继续改变地球上几乎所有栖息地的温度机制。无论来源如何,温度变化都可能影响食草动物,特别是通过植物防御化学的功效和影响的变化。本研究旨在描述温度对模式食草动物 Vanessa cardui(画眉淑女蝶)中几类萜烯结构的毒性效应的变化。我们观察到,在较高温度下,单萜烯对幼虫、蛹和成虫的毒性普遍增加,而且随着萜烯浓度的增加,发育时间也会延长。这项研究的结果使人们对植物萜烯生产季节性变化的可能驱动因素有了更深入的了解,并为全球气温升高对植物-昆虫相互作用的影响提供了信息。鉴于气候变化对植物与食草动物相互作用的其他已知影响,如碳肥化和补偿性取食,温度驱动的植物化学防御功效变化可能会使气候变化对食草动物基本生态过程的影响预测变得更加复杂。
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Temperature alters the toxicological impacts of plant terpenoids on the polyphagous model herbivore Vanessa cardui.

Terpenes are a major class of secondary metabolites present in all plants, and long hypothesized to have diversified in response to specific plant-herbivore interactions. Herbivory is a major biotic interaction that plays out across broad temporal and spatial scales that vary dramatically in temperature regimes, both due to climatic variation across geographic locations as well as the effect of seasonality. In addition, there is an emerging understanding that global climate change will continue to alter the temperature regimes of nearly every habitat on Earth over the coming centuries. Regardless of source, variation in temperature may influence herbivory, in particular via changes in the efficacy and impacts of plant defensive chemistry. This study aims to characterize temperature-driven variation in toxicological effects across several structural classes of terpenes in the model herbivore Vanessa cardui, the painted lady butterfly. We observed a general increase in monoterpene toxicity to larvae, pupa, and adults at higher temperatures, as well as an increase in development time as terpene concentration increased. Results obtained from this study yield insights into possible drivers of seasonal variation in plant terpene production as well as inform effects of rising global temperatures on plant-insect interactions. In the context of other known effects of climate change on plant-herbivore interactions like carbon fertilization and compensatory feeding, temperature-driven changes in plant chemical defense efficacy may further complicate the prediction of climate change impacts on the fundamental ecological process of herbivory.

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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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