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当它们的抗真菌武器失灵时,地下白蚁会发出警报。

Subterranean termites raise the alarm when their anti-fungal weapon falters.

机构信息

Department of Biological Sciences, Towson University, 4101 Science Complex, 8000 York Rd, Towson, MD, 21252, USA.

出版信息

Naturwissenschaften. 2023 Dec 27;111(1):1. doi: 10.1007/s00114-023-01887-0.

Abstract

Termicin is an anti-fungal defensin that is disseminated from termite salivary glands. The peptide appears to be critical for the elimination with mutual grooming (allogrooming) of pathogenic spores (conidia) that have attached to the insect cuticle. There has been a recent selective sweep for an advantageous variant of this peptide in the subterranean termite Reticulitermes flavipes. We tested the anti-mycotic activity of a recombinant termicin corresponding with this variant against the conidia of different Metarhizium fungal isolates from soil close to foraging R. flavipes workers. Termicin was most effective against isolates that had previously been shown to elicit a relatively weak alarm response, as indicated by brief bouts of rapid longitudinal oscillatory movement (LOM). These isolates that elicited weak alarm were also the deadliest apparently because the survival of termites exposed to the fungus depends on a strong social immune response (LOMs and allogrooming). The selective pressure for a single termicin variant may have been driven by the most dangerous isolates that elicit a weak behavioral response. The correlation between termicin anti-fungal activity and LOM suggests that pathogen-associated molecular patterns that affect termite recognition of conidial contamination and the onset of elevated allogrooming also affect the vulnerability of conidia to the disruption of their cell membranes by termicin.

摘要

短尾菌素是一种抗真菌防御素,从白蚁的唾液腺中分泌出来。该肽似乎对消除附着在昆虫表皮上的致病性孢子(分生孢子)至关重要,而这种消除是通过相互梳理(异体梳理)来实现的。最近,在地下白蚁 Reticulitermes flavipes 中,这种肽的有利变异体经历了一次选择性清除。我们测试了与这种变异体相对应的重组短尾菌素对来自靠近觅食 R. flavipes 工蚁的土壤中的不同绿僵菌真菌分离物的分生孢子的抗真菌活性。短尾菌素对先前显示出相对较弱报警反应的分离物最有效,这表现为短暂的快速纵向振荡运动(LOM)发作。这些引发较弱报警的分离物也显然是最致命的,因为暴露于真菌的白蚁的存活取决于强烈的社会免疫反应(LOMs 和异体梳理)。单一短尾菌素变异体的选择压力可能是由最危险的分离物驱动的,这些分离物引发较弱的行为反应。短尾菌素的抗真菌活性与 LOM 之间的相关性表明,影响白蚁识别分生孢子污染和增强异体梳理的起始的病原体相关分子模式也会影响分生孢子对短尾菌素破坏其细胞膜的脆弱性。

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