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基于微阵列的分析表明,短光照周期促进阿尔巴斯绒山羊毛发的生长。

A Microarray-Based Analysis Reveals that a Short Photoperiod Promotes Hair Growth in the Arbas Cashmere Goat.

作者信息

Liu Bin, Gao Fengqin, Guo Jun, Wu Dubala, Hao Bayasihuliang, Li Yurong, Zhao Cunfa

机构信息

Institute of Animal Husbandry, Academy of Agriculture and Stockbreeding Sciences, Hohhot, Inner Mongolia, China.

Kunming Institute of Animal Science, Chinese Academy of Sciences, Kunming, Yunna, Inner Mongolia, China.

出版信息

PLoS One. 2016 Jan 27;11(1):e0147124. doi: 10.1371/journal.pone.0147124. eCollection 2016.

Abstract

Many animals exhibit different behaviors in different seasons. The photoperiod can have effects on migration, breeding, fur growth, and other processes. The cyclic growth of the fur and feathers of some species of mammals and birds, respectively, is stimulated by the photoperiod as a result of hormone-dependent regulation of the nervous system. To further examine this phenomenon, we evaluated the Arbas Cashmere goat (Capra hircus), a species that is often used in this type of research. The goats were exposed to an experimentally controlled short photoperiod to study the regulation of cyclic cashmere growth. Exposure to a short photoperiod extended the anagen phase of the Cashmere goat hair follicle to increase cashmere production. Assessments of tissue sections indicated that the short photoperiod significantly induced cashmere growth. This conclusion was supported by a comparison of the differences in gene expression between the short photoperiod and natural conditions using gene chip technology. Using the gene chip data, we identified genes that showed altered expression under the short photoperiod compared to natural conditions, and these genes were found to be involved in the biological processes of hair follicle growth, structural composition of the hair follicle, and the morphogenesis of the surrounding skin appendages. Knowledge about differences in the expression of these genes as well as their functions and periodic regulation patterns increases our understanding of Cashmere goat hair follicle growth. This study also provides preliminary data that may be useful for the development of an artificial method to improve cashmere production by controlling the light cycle, which has practical significance for livestock breeding.

摘要

许多动物在不同季节表现出不同的行为。光周期会对迁徙、繁殖、毛发(羽毛)生长及其他生理过程产生影响。由于神经系统的激素依赖性调节,光周期分别刺激了一些哺乳动物和鸟类物种毛发和羽毛的周期性生长。为了进一步研究这一现象,我们评估了阿尔巴斯绒山羊(Capra hircus),这是一种常用于此类研究的物种。让山羊暴露于实验控制的短光周期下,以研究绒山羊绒毛周期性生长的调节机制。暴露于短光周期会延长绒山羊毛囊的生长期,从而增加羊绒产量。组织切片评估表明,短光周期显著促进了羊绒生长。使用基因芯片技术比较短光周期与自然条件下基因表达的差异,支持了这一结论。利用基因芯片数据,我们鉴定出了在短光周期下与自然条件相比表达发生改变的基因,这些基因被发现参与了毛囊生长、毛囊结构组成以及周围皮肤附属器形态发生的生物学过程。了解这些基因表达的差异及其功能和周期性调控模式,增进了我们对绒山羊毛囊生长的理解。本研究还提供了初步数据,这些数据可能有助于开发一种通过控制光周期来提高羊绒产量人工方法,这对家畜育种具有实际意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/413d/4731399/9823fcf477bc/pone.0147124.g001.jpg

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