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The Juvenile-Hormone-Responsive Factor AmKr-h1 Regulates Caste Differentiation in Honey Bees.


ABSTRACT: Honey bees are typical model organisms for the study of caste differentiation, and the juvenile hormone (JH) is a crucial link in the regulatory network of caste differentiation in honey bees. To investigate the mechanism of JH-mediated caste differentiation, we analyzed the effect of the JH response gene AmKr-h1 on this process. We observed that AmKr-h1 expression levels were significantly higher in queen larvae than in worker larvae at the 48 h, 84 h, and 120 h larval stages, and were regulated by JH. Inhibiting AmKr-h1 expression in honey bee larvae using RNAi could lead to the development of larvae toward workers. We also analyzed the transcriptome changes in honey bee larvae after AmKr-h1 RNAi and identified 191 differentially expressed genes (DEGs) and 682 differentially expressed alternative splicing events (DEASEs); of these, many were related to honey bee caste differentiation. Our results indicate that AmKr-h1 regulates caste differentiation in honey bees by acting as a JH-responsive gene.

SUBMITTER: Gong ZX 

PROVIDER: S-EPMC10669509 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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The Juvenile-Hormone-Responsive Factor <i>AmKr-h1</i> Regulates Caste Differentiation in Honey Bees.

Gong Zhi-Xian ZX   Cheng Fu-Ping FP   Xu Jia-Ning JN   Yan Wei-Yu WY   Wang Zi-Long ZL  

Biomolecules 20231117 11


Honey bees are typical model organisms for the study of caste differentiation, and the juvenile hormone (JH) is a crucial link in the regulatory network of caste differentiation in honey bees. To investigate the mechanism of JH-mediated caste differentiation, we analyzed the effect of the JH response gene <i>AmKr-h1</i> on this process. We observed that <i>AmKr-h1</i> expression levels were significantly higher in queen larvae than in worker larvae at the 48 h, 84 h, and 120 h larval stages, and  ...[more]

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