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一个保守的膜翅目特异性细胞色素 P450 家族保护蜜蜂传粉媒介免受有毒花蜜生物碱的侵害。

A conserved hymenopteran-specific family of cytochrome P450s protects bee pollinators from toxic nectar alkaloids.

机构信息

Crop Science Division, Bayer AG, Alfred Nobel-Strasse 50, Monheim, Germany.

University of Cologne, Department of Chemistry, Institute of Biochemistry, Cologne, Germany.

出版信息

Sci Adv. 2023 Apr 14;9(15):eadg0885. doi: 10.1126/sciadv.adg0885. Epub 2023 Apr 12.

Abstract

Many plants produce chemical defense compounds as protection against antagonistic herbivores. However, how beneficial insects such as pollinators deal with the presence of these potentially toxic chemicals in nectar and pollen is poorly understood. Here, we characterize a conserved mechanism of plant secondary metabolite detoxification in the Hymenoptera, an order that contains numerous highly beneficial insects. Using phylogenetic and functional approaches, we show that the CYP336 family of cytochrome P450 enzymes detoxifies alkaloids, a group of potent natural insecticides, in honeybees and other hymenopteran species that diverged over 281 million years. We linked this function to an aspartic acid residue within the main access channel of CYP336 enzymes that is highly conserved within this P450 family. Together, these results provide detailed insights into the evolution of P450s as a key component of detoxification systems in hymenopteran species and reveal the molecular basis of adaptations arising from interactions between plants and beneficial insects.

摘要

许多植物会产生化学防御化合物,以抵御敌对的草食动物。然而,授粉昆虫等有益昆虫如何应对花蜜和花粉中这些潜在有毒化学物质的存在,目前还知之甚少。在这里,我们描述了膜翅目昆虫中植物次生代谢物解毒的保守机制,膜翅目昆虫包含许多非常有益的昆虫。我们使用系统发生和功能方法表明,细胞色素 P450 酶家族 CYP336 可使生物碱解毒,生物碱是一组强效天然杀虫剂,在 2.81 亿年前分化的蜜蜂和其他膜翅目物种中发挥作用。我们将此功能与 CYP336 酶主进入通道内的天冬氨酸残基联系起来,该残基在该 P450 家族内高度保守。这些结果共同为 P450 作为膜翅目物种解毒系统关键组成部分的进化提供了详细的见解,并揭示了植物和有益昆虫之间相互作用产生的适应的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce76/10096648/4c32a47bcaab/sciadv.adg0885-f1.jpg

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