...
首页> 外文期刊>Poultry Science >Expression of the -catenin gene in the skin of embryonic geese during feather bud development
【24h】

Expression of the -catenin gene in the skin of embryonic geese during feather bud development

机译:-catenin基因在羽芽发育过程中在胚胎鹅皮肤中的表达

获取原文
获取原文并翻译 | 示例

摘要

beta-Catenin signaling has been reported to initiate feather bud development. In the present study, beta-catenin gene was isolated and identified from a cDNA library constructed using embryonic goose skin. Expression patterns of beta-catenin gene in the dorsal skin of goose embryos were investigated using the methods of semi-quantitative reverse transcription PCR, Northern blot analysis, and in situ hybridization. The sequence of beta-catenin was found highly conserved at the amino acid level, sharing 100, 99, and 99% identity with chicken, Chinese soft-shell turtle, and human sequences, respectively. Relatively high levels (62.51 +/- 7.11% to 101.74 +/- 7.29%) of beta-catenin mRNA were detected in the dorsal skin samples. The levels of beta-catenin expression were most prominent at the early stage from embryo day (E)10 to E20 and then significantly declined with the embryonic development. In situ hybridization demonstrated that at E10, beta-catenin expression was mainly observed at the surface periderm cells and the localized region of the epidermal layer. Because feather bud forms with an anterior-posterior orientation, strong staining was observed in the periderm layer and in the ectoderm and epidermis with a diffuse distribution within the internal area of the buds. The stronger staining was seen in the barb ridges than in the center pulp of the feather follicles at E18 and E20. In this study, expression of Shh as a marker gene for the bud development was examined paralleling with expression patterns of beta-catenin. It was found that the expression pattern of beta-catenin was almost similar spatially and temporally to that of Shh mRNA at the later stages of bud development. The differential beta-catenin mRNA expression in the goose dorsal skin may be essential for promoting the normal development of embryonic feather bud.
机译:据报道,β-连环蛋白信号传导可启动羽芽发育。在本研究中,β-catenin基因是从使用胚胎鹅皮构建的cDNA文库中分离和鉴定的。使用半定量逆转录PCR,Northern印迹分析和原位杂交方法研究了鹅胚胎背皮肤中β-catenin基因的表达模式。发现β-catenin序列在氨基酸水平上高度保守,分别与鸡,中国soft和人序列具有100%,99%和99%的同一性。在背部皮肤样本中检测到相对较高的β-cateninmRNA水平(62.51 +/- 7.11%至101.74 +/- 7.29%)。 β-catenin表达水平在胚胎第(E)10天到E20的早期最为突出,然后随着胚胎的发育而显着下降。原位杂交表明,在E10,β-catenin表达主要在表皮细胞和表皮层的局部区域观察到。由于羽毛芽的形成具有前后方向,因此在皮层,外胚层和表皮中观察到强烈的染色,在芽的内部区域内弥散分布。在E18和E20处,在倒钩脊上看到的染色比在羽毛毛囊的中央纸浆上更强。在这项研究中,Shh作为芽发育的标记基因的表达与β-catenin的表达模式平行进行了研究。发现在芽发育的后期,β-catenin的表达模式在空间和时间上与Shh mRNA几乎相似。鹅背皮中的β-cateninmRNA差异表达可能对促进胚胎羽芽的正常发育至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号