Mediating a host cell signaling pathway linked to overwinter mortality offers a promising therapeutic approach for improving bee health

介导与越冬死亡相关的宿主细胞信号通路为改善蜜蜂健康提供了一种有希望的治疗方法

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作者:Yi Zhang, Andrew Liu, Shao Kang Huang, Jay D Evans, Steve C Cook, Evan Palmer-Young, Miguel Corona, Mohamed Alburaki, Ge Liu, Ri Chou Han, Wen Feng Li, Yue Hao, Ji Lian Li, Todd M Gilligan, Allan H Smith-Pardo, Olubukola Banmeke, Francisco J Posada-Florez, Ya Hui Gao, Gloria DeGrandi-Hoffman, Hui Ch

Conclusion

Our study suggests that increased energy consumption of overwintering bees for maintaining hive temperature reduces the allocation of energy toward immune functions, thus making the overwintering bees more susceptible to disease infections and leading to high winter colony losses. The novel information gained from this study provides a promising avenue for the development of therapeutic strategies for mitigating colony losses, both overwinter and annually.

Methods

First, pathogen prevalence in overwintering bees were screened between 2015 and 2018. Second, RNA sequencing (RNA-Seq) for transcriptional profiling of overwintering honey bees was conducted and qRT-PCR was performed to confirm the

Results

We identified that sirtuin signaling pathway is the most significantly enriched pathway among the down-regulated differentially expressed genes (DEGs) in overwintering diseased bees. Moreover, we showed that the expression of SIRT1 gene, a major sirtuin that regulates energy and immune metabolism, was significantly downregulated in bees merely exposed to cold challenges, linking cold stress with altered gene expression of SIRT1. Furthermore, we demonstrated that activation of SIRT1 gene expression by SRT1720, an activator of SIRT1 expression, could improve the physiology and extend the lifespan of cold-stressed bees.

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