Zhang J, Suh Y, Choi Y M, Chen P R, Davis M E, Lee K
Department of Animal Sciences, The Ohio State University, Columbus, OH, 43210, USA.
Department of Animal Science and Biotechnology, Kyungpook National University, Sangju, South Korea.
Lipids. 2015 Oct;50(10):965-76. doi: 10.1007/s11745-015-4032-x. Epub 2015 May 29.
Hyperplastic growth and hypertrophic growth within adipose tissue is tightly associated with cell cycle activity. In this study, CCNG2 and CDKN2C were found to be correlated with cell cycle inhibition during fat cell differentiation, whereas CCND3, CCNA1, and ANAPC5 were positively associated with cell cycle activity during fat cell proliferation after selection based on GEO datasets available on the NCBI website. The findings were validated through comparison of expressions of these genes among different tissues/fractions in broiler chickens and time points during primary cell culture using quantitative real-time PCR. Development of broiler subcutaneous adipose tissue was investigated on embryonic days 15 and 17 and on post-hatch days 0, 5, 11, and 33 using H&E staining and PCNA immunostaining with DAPI counter stain. In addition, mRNA expressions of five cell cycle regulators as well as precursor cell and adipocyte markers were measured at those time points. The results suggest that cellular proliferation activity decreased as the fat pad grows, but a population of precursor cells seemed to be maintained until post-hatch day 5 despite increasing differentiation activity. Hypertrophic growth gradually intensified despite a slight cessation on post-hatch day 0 due to increased energy expenditure during hatching and delayed food access. From post-hatch day 5 to day 11, most of the precursor cells may become differentiated. After post-hatch day 11, hyperplastic growth seemed to slow, while hypertrophic growth may become dominant. This study provides further understanding about broiler fat tissue development which is imperative for effective control of fat deposition.
脂肪组织内的增生性生长和肥大性生长与细胞周期活性密切相关。在本研究中,基于NCBI网站上可用的GEO数据集进行筛选后发现,CCNG2和CDKN2C与脂肪细胞分化过程中的细胞周期抑制相关,而CCND3、CCNA1和ANAPC5与脂肪细胞增殖过程中的细胞周期活性呈正相关。通过定量实时PCR比较这些基因在肉鸡不同组织/组分以及原代细胞培养过程中不同时间点的表达情况,对研究结果进行了验证。使用苏木精-伊红染色和PCNA免疫染色并以DAPI复染,在胚胎第15天和第17天以及出壳后第0天、第5天、第11天和第33天对肉鸡皮下脂肪组织的发育进行了研究。此外,在这些时间点测量了五种细胞周期调节因子以及前体细胞和脂肪细胞标志物的mRNA表达。结果表明,随着脂肪垫的生长,细胞增殖活性降低,但尽管分化活性增加,仍有一群前体细胞似乎维持到出壳后第5天。尽管由于孵化期间能量消耗增加和食物获取延迟,出壳后第0天有轻微停滞,但肥大性生长逐渐增强。从出壳后第5天到第11天,大多数前体细胞可能会分化。出壳后第11天之后,增生性生长似乎减缓,而肥大性生长可能占主导地位。本研究为肉鸡脂肪组织发育提供了进一步的认识,这对于有效控制脂肪沉积至关重要。