4.6 Article

Transcriptomic analysis reveals the regulation network of BmKruppel homolog 1 in the oocyte development of Bombyx mori

期刊

INSECT SCIENCE
卷 28, 期 1, 页码 47-62

出版社

WILEY
DOI: 10.1111/1744-7917.12747

关键词

Kruppel homolog 1; oocyte development; regulatory network; RNA interference; transcriptomics

资金

  1. Chinese National Natural Science Foundation [31872969, 31672494, 31330071]
  2. Guangdong Provincial Natural Science Foundation [2017A030306003]
  3. Guangdong Provincial Special Support Program [2017TQ04N744]
  4. Pearl River S and T Nova Program of Guangzhou [201710010037]

向作者/读者索取更多资源

The study found that Kr-h1 gene is associated with ovarian development and reproduction in Bombyx mori, and its depletion leads to abnormal oocyte development, indicating that Kr-h1 may directly regulate oocyte development through metabolic-related pathways and yolk protein absorption processes.
Kruppel homolog 1 (Kr-h1), a zinc finger transcription factor, is involved in the metamorphosis and adult reproduction of insects. However, the role of Kr-h1 in reproduction of holometabolic insects remains to be elucidated. The regulation network of Kr-h1-associated genes in the reproduction in Bombyx mori was investigated in this study. The higher expression level of BmKr-h1 in the ovaries was detected during the late pupal stage and adults. RNA interference (RNAi)-mediated depletion of BmKr-h1 in the female at day 6 of pupae resulted in abnormal oocytes at 48 h post-double-stranded RNA treatment, which showed less yolk protein deposition and partially transparent chorion. RNA-seq and subsequent differentially expressed transcripts analysis showed that knockdown of BmKr-h1 caused a decrease in the expression of 2882 genes and an increase in the expression of 2565 genes in the oocytes at day 8 of pupae. Totally, 27 genes coding for transcription factors were down-regulated, while six genes coding for other transcription factors were up-regulated. BmKr-h1 bound to the Kr-h1 binding site of the transcription factors AP-1 (activating protein-1) and FOXG1 to increase their messenger RNA transcripts in the BmN cells, respectively. Gene Ontology enrichment and Kyoto Encyclopedia of Genes and Genomes pathway analyses of that positively co-expressed with AP-1 and FOXG1 transcripts showed mainly enrichment in the metabolic-related pathways, the nutrient absorption and the yolk protein absorption processes. These data suggested that BmKr-h1 might directly regulate the metabolic-related pathways, the nutrient absorption and the yolk protein absorption processes or probably through AP-1 and /or FOXG1 to regulate oocyte development.

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