首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Seminal fluid of honeybees contains multiple mechanisms to combat infections of the sexually transmitted pathogen Nosema apis
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Seminal fluid of honeybees contains multiple mechanisms to combat infections of the sexually transmitted pathogen Nosema apis

机译:蜜蜂的精液含有多种抗击性传播病原体Nosema apis感染的机制

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摘要

The societies of ants, bees and wasps are genetically closed systems where queens only mate during a brief mating episode prior to their eusocial life and males therefore provide queens with a lifetime supply of high-quality sperm. These ejaculates also contain a number of defence proteins that have been detected in the seminal fluid but their function and efficiency have never been investigated in great detail. Here, we used the honeybee Apis mellifera and quantified whether seminal fluid is able to combat infections of the fungal pathogen Nosema apis, a widespread honeybee parasite that is also sexually transmitted. We provide the first empirical evidence that seminal fluid has a remarkable antimicrobial activity against N. apis spores and that antimicrobial seminal fluid components kill spores in multiple ways. The protein fraction of seminal fluid induces extracellular spore germination, which disrupts the life cycle of N. apis, whereas the non-protein fraction of seminal fluid induces a direct viability loss of intact spores. We conclude that males provide their ejaculates with efficient antimicrobial molecules that are able to kill N. apis spores and thereby reduce the risk of disease transmission during mating. Our findings could be of broader significance to master honeybee diseases in managed honeybee stock in the future.
机译:蚂蚁,蜜蜂和黄蜂的社会是基因封闭的系统,在这种系统中,皇后只在正常交往之前的短暂交配过程中交配,因此雄性为皇后提供了终生优质的精子。这些射精还含有许多在精液中检测到的防御蛋白,但从未对其功能和效率进行过详尽的研究。在这里,我们使用了蜜蜂Apis mellifera并量化了精液是否能够抵抗真菌病原体Nosema apis(一种也通过性传播的广泛的蜜蜂寄生虫)的感染。我们提供了第一个经验证据,即精液对N. apis孢子具有显着的抗菌活性,并且抗菌精液成分以多种方式杀死孢子。精液的蛋白质部分诱导胞外孢子萌发,这会破坏长毛猪笼草的生命周期,而精液的非蛋白质部分则引起完整孢子的直接生存力丧失。我们得出的结论是,雄性为其射精提供了有效的抗菌分子,该分子能够杀死N. apis孢子,从而降低了交配过程中疾病传播的风险。我们的发现对于将来管理蜜蜂种群中的蜜蜂疾病可能具有更广泛的意义。

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