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腿部颗粒和相关青霉属为粉虱提供了多种保护。

An at-leg pellet and associated Penicillium sp. provide multiple protections to mealybugs.

机构信息

Institute of Insect Sciences, Key Laboratory of Biology of Crop Pathogens and Insects of Zhejiang Province, Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Ministry of Agriculture and Rural Affairs of the People's Republic of China, State Key Laboratory of Rice Biology, Zhejiang University, Hangzhou, China.

College of Life Sciences, China Jiliang University, Hangzhou, China.

出版信息

Commun Biol. 2024 May 16;7(1):580. doi: 10.1038/s42003-024-06287-2.

Abstract

Beneficial fungi are well known for their contribution to insects' adaptation to diverse habitats. However, where insect-associated fungi reside and the underlying mechanisms of insect-fungi interaction are not well understood. Here, we show a pellet-like structure on the legs of mealybugs, a group of economically important insect pests. This at-leg pellet, formed by mealybugs feeding on tomato but not by those on cotton, potato, or eggplant, originates jointly from host secretions and mealybug waxy filaments. A fungal strain, Penicillium citrinum, is present in the pellets and it colonizes honeydew. P. citrinum can inhibit mealybug fungal pathogens and is highly competitive in honeydew. Compounds within the pellets also have inhibitory activity against mealybug pathogens. Further bioassays suggest that at-leg pellets can improve the survival rate of Phenacoccus solenopsis under pathogen pressure, increase their sucking frequency, and decrease the defense response of host plants. Our study presents evidences on how a fungi-associated at-leg pellet provides multiple protections for mealybugs through suppressing pathogens and host defense, providing new insights into complex insect × fungi × plant interactions and their coevolution.

摘要

有益真菌以帮助昆虫适应多样的栖息地而闻名。然而,昆虫共生真菌的栖息地以及昆虫与真菌相互作用的潜在机制还不是很清楚。在这里,我们展示了粉蚧腿上的一种类似颗粒的结构,粉蚧是一类具有重要经济意义的农业害虫。这种腿上的颗粒是由粉蚧在食用番茄时形成的,但在食用棉花、土豆或茄子时则不会形成,它是由宿主分泌物和粉蚧蜡丝共同形成的。一种真菌菌株青霉(Penicillium citrinum)存在于这些颗粒中,并在蜜露中定殖。青霉可以抑制粉蚧的真菌病原体,并且在蜜露中具有很强的竞争力。颗粒内的化合物也对粉蚧的病原体具有抑制活性。进一步的生物测定表明,腿上的颗粒可以提高烟粉虱在病原体压力下的存活率,增加它们的取食频率,并降低宿主植物的防御反应。我们的研究提供了证据,证明了这种与真菌相关的腿上颗粒如何通过抑制病原体和宿主防御来为粉蚧提供多种保护,为复杂的昆虫 ×真菌 ×植物相互作用及其共同进化提供了新的见解。

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