Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8645175 | Gene | 2018 | 27 Pages |
Abstract
Apis cerana cerana, an important endemic honey bee species in China, possesses valuable characteristics such as a sensitive olfactory system, good foraging ability, and strong resistance to parasitic mites. Here, we performed transcriptome sequencing of the antenna, the major chemosensory organ of the bee, using an Illumina sequencer, to identify typical differentially expressed genes (DEGs) in adult worker bees of different ages, namely, T1 (1â¯day); T2 (10â¯days); T3 (15â¯days); and T4 (25â¯days). Surprisingly, the expression levels of DEGs changed significantly between the T1 period and the other three periods. All the DEGs were classified into 26 expression profiles by trend analysis. Selected trend clusters were analyzed, and valuable information on gene expression patterns was obtained. We found that the expression levels of genes encoding cuticle proteins declined after eclosion, while those of immunity-related genes increased. In addition, genes encoding venom proteins and major royal jelly proteins were enriched at the T2 stage; small heat shock proteins showed significantly higher expression at the T3 stage; and some metabolism-related genes were more highly expressed at the T4 stage. The DEGs identified in this study may serve as a valuable resource for the characterization of expression patterns of antennal genes in A. cerana cerana. Furthermore, this study provides insights into the relationship between labor division in social bees and gene function.
Keywords
DEGsFPKMApis cerana ceranasHSPantennaTranscriptomeSraKEGG یا Kyoto Encyclopedia of Genes and Genomes Kyoto Encyclopedia of Genes and GenomesSequence Read ArchiveStemFragments per kilobase of transcript per million mapped readsDevelopmental stagesGene ontologysmall heat shock proteinDifferentially expressed genes
Related Topics
Life Sciences
Biochemistry, Genetics and Molecular Biology
Genetics
Authors
Huiting Zhao, Zhu Peng, Yali Du, Kai Xu, Lina Guo, Shuang Yang, Weihua Ma, Yusuo Jiang,