Modulatory Mechanism of the piR-Ame-1128833/Amlachesin Axis in the Immune Defense of Honey Bee Larvae against Fungal Invasion
Mengyi Wang, Kaiyao Zhang, Tao Wu, Xinrui Chen, Yuwei Zhang, Yaqin Gao, Sijia Deng, Genchao Gan, Shuai Zhou, Jianfeng Qiu, Qingwei Tan, Dafu Chen, Rui Guo
Journal:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
IF:6.7
DOI:10.1021/acs.jafc.5c17312
PMID:
Published:2026-05-21
research field:分子生物学微生物致病性昆虫学免疫遗传学表观遗传学
Abstract
The western honey bee is a typical social insect and a vital pollinator for numerous wild plants and crops. Chalkbrood is a fungal disease in honey bees caused by Ascosphaera apis. We recently investigated the role of piR-ame-1128833 in regulating the response of A. mellifera worker larvae to A. apis infection. Herein, we assessed the interaction between piR-ame-1128833 and its potential target gene Apis mellifera lachesin (Amlachesin) and investigated their regulatory relationship by inducing overexpression and knockdown of piR-ame-1128833. Furthermore, RNA interference was used to analyze the regulatory function of Amlachesin in the gut tissue of larvae infected with A. apis. Results revealed that the piR-ame-1128833/Amlachesin axis served as a core regulatory pathway in the immune defense of A. mellifera worker larval guts against A. apis infection. These findings not only provide novel insights into piRNA-mediated epigenetic regulation in honey bees but also improve the understanding of bee–pathogen interactions.
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