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A sacrificial millipede altruistically protects its swarm using a drone blood enzyme, mandelonitrile oxidase

机译:牺牲性千足虫使用无人机血液酶,扁桃腈氧化酶无私地保护其群

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Soldiers of some eusocial insects exhibit an altruistic self-destructive defense behavior in emergency situations when attacked by large enemies. The swarm-forming invasive millipede, Chamberlinius hualienensis, which is not classified as eusocial animal, exudes irritant chemicals such as benzoyl cyanide as a defensive secretion. Although it has been thought that this defensive chemical was converted from mandelonitrile, identification of the biocatalyst has remained unidentified for 40 years. Here, we identify the novel blood enzyme, mandelonitrile oxidase (ChuaMOX), which stoichiometrically catalyzes oxygen consumption and synthesis of benzoyl cyanide and hydrogen peroxide from mandelonitrile. Interestingly the enzymatic activity is suppressed at a blood pH of 7, and the enzyme is segregated by membranes of defensive sacs from mandelonitrile which has a pH of 4.6, the optimum pH for ChuaMOX activity. In addition, strong body muscle contractions are necessary for de novo synthesis of benzoyl cyanide. We propose that, to protect its swarm, the sacrificial millipede also applies a self-destructive defense strategy-the endogenous rupturing of the defensive sacs to mix ChuaMOX and mandelonitrile at an optimum pH. Further study of defensive systems in primitive arthropods will pave the way to elucidate the evolution of altruistic defenses in the animal kingdom.
机译:在紧急情况下,当受到大敌人攻击时,某些常社会昆虫的士兵表现出利他的自我毁灭防御行为。成群的入侵千足虫,Chamberlinius hualienensis,没有被归类为亲社会动物,散发出刺激性的化学物质,例如苯甲酰氰作为防御性分泌物。尽管人们认为这种防御性化学物质是从扁桃腈转化而来的,但生物催化剂的鉴定在过去的40年中一直没有得到鉴定。在这里,我们确定了新型的血液酶,扁桃腈氧化酶(ChuaMOX),该酶以化学计量方式催化氧气消耗,并由扁桃腈合成苯甲酰氰化物和过氧化氢。有趣的是,在血液的pH值为7时,酶的活性受到抑制,并且该酶被来自扁桃腈的防御性囊膜隔离,该囊的pH为4.6,这是ChuaMOX活性的最佳pH。另外,强烈的身体肌肉收缩对于从头合成苯甲酰氰是必需的。我们建议,为了保护其种群,牺牲的千足虫还应采用自毁防御策略-防御囊的内源性破裂,以在最佳pH值下混合ChuaMOX和扁桃腈。对原始节肢动物防御系统的进一步研究将为阐明动物界利他主义防御的发展铺平道路。

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