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We try to find some important factors in Inner Mongolia Cashmere goats'' secondary hair follicle and primary hair follicle during catagen to telogen
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创建时间:
2018-01-30
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Identification of potential key genes and pathways associated with the Pashmina fiber initiation using RNA-Seq and integrated bioinformatics analysis. Identification of potential key genes and pathways associated with the Pashmina fiber initiation using RNA-Seq and integrated bioinformatics analysis
In the present study transcriptomic profiling of skin biopsies containing secondary hair follicles were utilized to identify key genes and signaling pathways involved in hair follicle transition from
NIAID Data Ecosystem60
Gene expression profiling of Dermal Papilla (DP) cells isolated from wild type (WT) and DP-specific Smo gain-of-function (Smo*) mutant mice during both telogen (at P20) and anagen (at P28).. Gene expression profiling of Dermal Papilla (DP) cells isolated from wild type (WT) and DP-specific Smo gain-of-function (Smo*) mutant mice during both telogen (at P20) and anagen (at P28).
Gene expression analysis revealed that the DP transcriptome is altered in the Smo* mutant. At P28 the expression of 2226 genes was significantly altered. The expression of 473 genes was altered in the
NIAID Data Ecosystem50
Table 4_Molecular mechanisms underlying cashmere quality differences between Jiangnan cashmere goats and Changthangi pashmina goats.xlsx
Cashmere goats are excellent livestock breeds known for producing high-quality cashmere fibers from secondary hair follicles. In this study, we aimed to explore the key RNA molecules responsible for t
NIAID Data Ecosystem30
Identification and characterization of transcriptomes in the skin during the wool follicle development of Aohan fine wool sheep
To understand the regulation of transcriptomes in the growth of fine wool sheep, we used RNA-seq to identify circRNAs , lincRNAs and mRNAs in sheep shoulder skin at three stages, embryonic day 90 (E90
NIAID Data Ecosystem60
Transcriptome profiling reveals different expression pattern between beard and scalp hair follicle in androgenetic alopecia.. Transcriptome profiling reveals different expression pattern between beard and scalp hair follicle in androgenetic alopecia.
Androgenetic alopecia (AGA) is a progressive dermatological disorder of scalp hair loss, while beard growth in AGA is normally unaffected. In an attempt to identify genes that contribute to the androg
NIAID Data Ecosystem30



