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芥子油苷就说到这儿:一种多食性昆虫确实能在十字花科植物上存活并发育,但代价是什么呢?

So Much for Glucosinolates: A Generalist Does Survive and Develop on Brassicas, but at What Cost?

作者信息

Jeschke Verena, Zalucki Jacinta M, Raguschke Bettina, Gershenzon Jonathan, Heckel David G, Zalucki Myron P, Vassão Daniel G

机构信息

Max Planck Institute for Chemical Ecology, 07745 Jena, Germany.

Centre for Planetary Health and Food Security, Griffith University, Brisbane 4111, Australia.

出版信息

Plants (Basel). 2021 May 12;10(5):962. doi: 10.3390/plants10050962.

Abstract

While plants produce complex cocktails of chemical defences with different targets and efficacies, the biochemical effects of phytotoxin ingestion are often poorly understood. Here, we examine the physiological and metabolic effects of the ingestion of glucosinolates (GSLs), the frontline chemical defenses of brassicas (crucifers), on the generalist herbivore . We focus on kale and cabbage, two crops with similar foliar GSL concentrations but strikingly different GSL compositions. We observed that larval growth and development were well correlated with the nutritional properties of the insect diets, with low protein contents appearing to exacerbate the negative effects of GSLs on growth, pupation and adult eclosion, parameters that were all delayed upon exposure to GSLs. The different GSLs were metabolized similarly by the insect, indicating that the costs of detoxification via conjugation to glutathione (GSH) were similar on the two plant diets. Nevertheless, larval GSH contents, as well as some major nutritional markers (larval protein, free amino acids, and fat), were differentially affected by the different GSL profiles in the two crops. Therefore, the interplay between GSL and the nitrogen/sulfur nutritional availability of different brassicas strongly influences the effectiveness of these chemical defenses against this generalist herbivore.

摘要

虽然植物会产生具有不同作用靶点和功效的复杂化学防御混合物,但人们对植物毒素摄入的生化影响往往了解甚少。在此,我们研究了十字花科植物(十字花科)的一线化学防御物质——硫代葡萄糖苷(GSLs)的摄入对广食性食草动物的生理和代谢影响。我们重点关注羽衣甘蓝和卷心菜这两种作物,它们叶片中的GSL浓度相似,但GSL组成却显著不同。我们观察到,幼虫的生长和发育与昆虫食物的营养特性密切相关,低蛋白含量似乎会加剧GSLs对生长、化蛹和成虫羽化的负面影响,接触GSLs后,这些参数均会延迟。昆虫对不同的GSLs代谢方式相似,这表明在两种植物性食物上,通过与谷胱甘肽(GSH)结合进行解毒的成本相似。然而,两种作物中不同的GSL谱对幼虫的GSH含量以及一些主要营养指标(幼虫蛋白质、游离氨基酸和脂肪)有不同的影响。因此,GSL与不同十字花科植物氮/硫营养可利用性之间的相互作用,强烈影响了这些化学防御对这种广食性食草动物的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc44/8150600/c45dd709de71/plants-10-00962-g001.jpg

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