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通过痕量分析方法与密度泛函理论计算及合成相结合,鉴定独特的高度杂取代苯为跳虫的化学武器。

Identification of unique highly hetero-substituted benzenes as chemical weapons of springtails by a combination of trace analytical methods with DFT calculations and synthesis.

作者信息

Möllerke Anton, Stell Matthew, Schlawis Christian, Trauer-Kizilelma Ute, Herrmann Jennifer, Leinaas Hans Petter, Scheu Stefan, Schulz Stefan

机构信息

Technische Universität Braunschweig, Institute of Organic Chemistry Hagenring 30 38106 Braunschweig Germany

Umweltbundesamt Boetticherstraße 2 (Haus 19), Dahlemer Dreieck 14195 Berlin Germany.

出版信息

Chem Sci. 2024 Sep 2;15(37):15332-8. doi: 10.1039/d4sc03182b.

Abstract

Springtails (Collembola) are important members of the soil mesofauna. They are small, often less than 1-2 mm in length. A typical escape response of most surface-living species is to jump, using their furca. However, some species also use chemical defence against predators. While the defence chemistry of higher insects has been well studied, reports from the basal Collembola are rare, linked to the difficulties in obtaining enough biomass. We herein report on the identification and repellent activity of compounds detected in . Extracts with various solvents obtained from only 50 individuals were sufficient for analysis by GC/MS, GC/HR-MS, and GC/IR. The large number of candidate structures of the major components were then prioritised by DFT calculations of IR spectra. Finally, the total synthesis of the top candidates confirmed the structures of the three major compounds to be 4-methoxy-5-(methylthio)benzo-1,3-dioxolane, 5,6,7-trimethoxybenzo-1,3-oxathiolane, and 8-amino-5,6,7-trimethoxybenzo-1,3-oxathiolane, the latter being the first naturally occurring fully hetero-substituted benzene. These highly substituted benzenes have no precedence in nature and carry structural motifs rare in nature, such as the benzo-1,3-oxathiolane ring system or the occurrence of O-, N-, and S-substituents at the same benzene core. Another novel natural compound, 2-methyl-1-imidazo[4,5-]pyridine, is used by . 4-Methoxy-5-(methylthio)benzo-1,3-dioxolane showed significant activity in deterrence assays with the ant . The data indicate that the title compounds are used in the chemical defence of these springtails, thus adding a new compound class to the known antipredator defences of arthropods. The results underline the difference in defence chemistry between Collembola and insects.

摘要

弹尾目昆虫(弹尾虫)是土壤中型土壤动物的重要成员。它们体型微小,长度通常不足1-2毫米。大多数地表生活物种典型的逃避反应是利用它们的弹器进行跳跃。然而,一些物种也会使用化学防御来抵御捕食者。虽然高等昆虫的防御化学已得到充分研究,但关于基部弹尾虫的报道却很少,这与获取足够生物量的困难有关。我们在此报告从……中检测到的化合物的鉴定及驱避活性。仅从50只个体中获得的用各种溶剂萃取的提取物就足以进行气相色谱/质谱联用(GC/MS)、气相色谱/高分辨质谱联用(GC/HR-MS)和气相色谱/红外光谱联用(GC/IR)分析。然后通过红外光谱的密度泛函理论(DFT)计算,对主要成分的大量候选结构进行优先级排序。最后,对顶级候选物的全合成证实了三种主要化合物的结构分别为4-甲氧基-5-(甲硫基)苯并-1,3-二氧戊环、5,6,7-三甲氧基苯并-1,3-氧硫杂环戊烷和8-氨基-5,6,7-三甲氧基苯并-1,3-氧硫杂环戊烷,后者是首个天然存在的完全杂原子取代的苯。这些高度取代的苯在自然界中没有先例,且具有自然界中罕见的结构基序,如苯并-1,3-氧硫杂环戊烷环系,或在同一苯环核心上同时存在氧、氮和硫取代基。另一种新型天然化合物2-甲基-1-咪唑并[4,5-]吡啶被……使用。4-甲氧基-5-(甲硫基)苯并-1,3-二氧戊环在针对蚂蚁的威慑试验中表现出显著活性。数据表明这些标题化合物被用于这些弹尾虫的化学防御,从而为节肢动物已知的反捕食防御增添了一类新的化合物。结果强调了弹尾虫和昆虫在防御化学方面的差异。

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