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揭示羊绒山羊毛囊生物学:从形态分析到转录组景观。

Shedding light on cashmere goat hair follicle biology: from morphology analyses to transcriptomic landascape.

机构信息

School of Pharmacy, University of Camerino, Via Gentile III da Varano, 62032, Camerino, Italy.

Department of Veterinary Medicine, University of Perugia, Via San Costanzo 4, 06126, Perugia, Italy.

出版信息

BMC Genomics. 2020 Jul 2;21(1):458. doi: 10.1186/s12864-020-06870-x.

Abstract

BACKGROUND

Cashmere goat is known for its precious undercoat. Being photoperiod-dictated, cashmere growth has been studied focusing mainly on hair follicle cycle phases (anagen, catagen and telogen). An accurate molecular knowledge of the goat hair follicle cycle, disentangling gene expression changes during phases and recognizing timing boundaries, could be useful to improve cashmere goat management and ultimately cashmere production.

RESULTS

To better describe goat's hair follicle transcriptome we applied RNA-sequencing to isolated hair follicles from five Italian cashmere goats, during the anagen and catagen phase, identifying total of 214 differentially expressed genes (DEGs): 97 were up-regulated while 117 were down-regulated in catagen with respect to anagen. Gene Ontology and pathway analysis were performed. We detected 144 significant pathways spanning from estrogen, pluripotency of stem cells, thermogenesis and fatty acid metabolism that were strongly expressed during the hair follicle phases analysed. Finally, we validated promising DEGs by RT-qPCR in the same set of samples as well as in hair follicles and entire skin biopsies of another cashmere goats cohort accounting for early anagen, anagen, early catagen, and catagen phases.

CONCLUSIONS

As in the isolated hair follicles, some target genes were homogenously modulated during the four hair follicle phases. Ceruloplasmin (CP) and Keratin 4 (K4), confirmed their clear cut expression between growing and resting phase. In fact, K4 was almost absent in catagen phases while CP was barely expressed in anagen phases. In particular, the strong expression of K4 in early anagen makes it an eligible marker to track the beginning of a new hair cycle, and therefore defining the optimum time for cashmere harvesting.

摘要

背景

羊绒羊以其珍贵的底绒而闻名。由于受光周期的影响,羊绒的生长一直是研究的重点,主要集中在毛囊周期的各个阶段(生长期、退行期和休止期)。对山羊毛囊周期的准确分子认识,梳理各阶段的基因表达变化,并识别时间界限,可能有助于改善羊绒羊的管理,最终提高羊绒产量。

结果

为了更好地描述山羊的毛囊转录组,我们应用 RNA 测序技术对来自五只意大利羊绒羊的毛囊进行了分离,分别处于生长期和退行期,共鉴定出 214 个差异表达基因(DEGs):有 97 个基因在退行期上调,117 个基因在退行期下调。进行了基因本体论和途径分析。我们检测到 144 个显著的途径,涵盖了雌激素、干细胞多能性、体温生成和脂肪酸代谢,这些途径在分析的毛囊阶段强烈表达。最后,我们通过 RT-qPCR 在同一组样本中以及在另一组山羊的毛囊和整个皮肤活检中验证了有前途的 DEGs,这些样本代表了早期生长期、生长期、早期退行期和退行期。

结论

与分离的毛囊一样,一些靶基因在四个毛囊阶段均有均匀的调节。铜蓝蛋白(CP)和角蛋白 4(K4)在生长和静止阶段的表达清晰可辨。事实上,K4 在退行期几乎不存在,而 CP 在生长期几乎不表达。特别是 K4 在早期生长期的强烈表达使其成为跟踪新毛发生长周期开始的合适标志物,并因此确定了收获羊绒的最佳时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f61c/7330943/6d21025bd0c2/12864_2020_6870_Fig1_HTML.jpg

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