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首页> 外文期刊>Annals of the Entomological Society of America >Establishment and Gene Expression Characteristics of the Silk Gland Cell Line BmSG-SWU1 of Bombyx mori (Lepidoptera: Bombycidae)
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Establishment and Gene Expression Characteristics of the Silk Gland Cell Line BmSG-SWU1 of Bombyx mori (Lepidoptera: Bombycidae)

机译:家蚕丝腺细胞系BmSG-SWU1的建立及基因表达特征

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A BmSG-SWU1 cell line was established from the silk gland tissues of newly hatched Bombyx mori L. larvae by performing primary cultures for 2 yr. The cell line was comprised of long and thin shuttle cells. The percentage of cells with the chromosome number 2n = 56 was 76.28%. Therefore, the cell line was considered a diploid cell line. Fingerprint analysis of BmSG-SWU1 cells and four other cell lines indicated that BmSG-SWU1 cells had a specific fingerprint, and that the genetic relationship between BmSG-SWU1 cells and the original silk gland tissue was the closest. We used whole genome microarray data, reverse transcription-polymerase chain reaction and fluorescence quantitative real-time-polymerase chain reaction to analyze the expression profile of BmSG-SWU1 cells. On day 3 of the fifth instar silk gland, the two known silk gland-specific genes Fib-L and P25 as well as 18 other highly expressed genes were found in the whole genome microarray data. Only some of these were expressed in the BmSG-SWU1 cell line, which showed that this cell line had maintained some gene expression characteristics of silk gland. The key cell cycle-control genes BmCyclinB and BmCyclinB3 of the G2 and M phase were expressed at low levels in silk glands. Contrarily, they were highly expressed in BmSG-SWU1cells, in the ovaries and other cell lines, which suggested that BmCyclinB and BmCyclinB3 are important for the transformation of BmSG-SWU1 cell line from endoreduplication to the mitotic cycle
机译:通过进行2年的原代培养,从新孵化的家蚕幼虫的丝腺组织中建立BmSG-SWU1细胞系。细胞系由长而细的穿梭细胞组成。染色体编号2n = 56的细胞百分比为76.28%。因此,该细胞系被认为是二倍体细胞系。 BmSG-SWU1细胞和其他四个细胞系的指纹分析表明,BmSG-SWU1细胞具有特定的指纹,并且BmSG-SWU1细胞与原始丝腺组织之间的遗传关系最接近。我们使用了全基因组微阵列数据,逆转录聚合酶链反应和荧光定量实时聚合酶链反应来分析BmSG-SWU1细胞的表达谱。在第五龄蚕丝腺的第3天,在整个基因组微阵列数据中发现了两个已知的蚕丝特异性基因Fib-L和P25,以及其他18个高表达基因。其中只有一些在BmSG-SWU1细胞系中表达,表明该细胞系保持了丝腺的某些基因表达特征。 G2和M期的关键细胞周期控制基因BmCyclinB和BmCyclinB3在丝腺中低水平表达。相反,它们在BmSG-SWU1细胞,卵巢和其他细胞系中高表达,这表明BmCyclinB和BmCyclinB3对于BmSG-SWU1细胞系从核内复制到有丝分裂周期的转化很重要。

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