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The development of secondary hair follicles in cashmere goats directly influences the yield and quality of cashmere, and hair follicle morphogenesis is a complex biological process involving multiple signaling pathways and regulatory factors. In recent years, the regulatory role of long non-coding RNAs in hair follicle development has gradually been uncovered. Based on a previously established transcriptome database of embryonic skin tissue from cashmere goats, this study ultimately identified lncRNA MRPS28, which exhibits significant differential expression during the morphogenesis of secondary hair follicles. Our results indicate that lncRNA MRPS28 is a non-coding RNA transcribed from the intron region of the gene. Additionally, it can inhibit the proliferation and migration of dermal fibroblasts while promoting their apoptosis. Further mechanistic studies have shown that lncRNA MRPS28 acts as a competing endogenous RNA, sponging chi-miR-145-5p, thereby relieving its inhibitory effect on the target gene . This, in turn, inhibits the formation of dermal papilla structures and ultimately affects the morphogenesis of secondary hair follicles during the embryonic period. This study provides a novel perspective on dissecting the regulatory network of hair follicle development in cashmere goats and offers potential theoretical insights for breeding new strains of cashmere goats.
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http://dx.doi.org/10.3390/ani15131882 | DOI Listing |
Stress Biol
September 2025
Shaanxi Key Laboratory of Molecular Biology for Agriculture, College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi, China.
Understanding the genetic mechanism of cold adaptation in cashmere goats and dairy goats is very important to improve their production performance. The purpose of this study was to comprehensively analyze the genetic basis of goat adaptation to cold environments, clarify the impact of environmental factors on genome diversity, and lay the foundation for breeding goat breeds to adapt to climate change. A total of 240 dairy goats were subjected to genome resequencing, and the whole genome sequencing data of 57 individuals from 6 published breeds were incorporated.
View Article and Find Full Text PDFFunct Integr Genomics
August 2025
State Key Laboratory of Reproductive Regulation and Breeding of Grassland Livestock, College of Life Sciences, Inner Mongolia University, Hohhot, 010070, China.
CRISPR/Cas9 technology is an efficient tool for site-specific livestock gene editing. However, to minimize potential disruption of host genome function, exogenous genes should be integrated into well-characterized genomic loci, such as H11 or Rosa26, which have been empirically validated for stable transgene expression. This study established a multi-dimensional assessment system to evaluate the biological applicability of the H11 locus and the widely used Rosa26 targeting platform as sites for targeted integration of exogenous genes in goats.
View Article and Find Full Text PDFMol Immunol
October 2025
College of Animal Science, Inner Mongolia Agricultural University, Hohhot 010018, China; Key Laboratory of Mutton Sheep Genetics and Breeding, Ministry of Agriculture, Hohhot 010018, China; Key Laboratory of Goat and Sheep Genetics, Breeding and Reproduction in Inner Mongolia Autonomous Region, Hohh
Background: Inner Mongolia cashmere goat is an excellent local variety of both cashmere and meat. Its cashmere is delicate and soft and has high economic value. The morphogenesis and development of hair follicles directly affect the wool yield and quality of cashmere goats.
View Article and Find Full Text PDFBMC Res Notes
August 2025
Department of Animal Science, Fars Agricultural and Natural Resources Research and Education Center, Agricultural Research, Education & Extension Organization (AREEO), Fars, Iran.
Objective: The Raeini Cashmere goat, native to Kerman Province, Iran, is renowned for its high-quality cashmere fiber, a luxury natural fiber valued for its softness, warmth, and lightweight properties in the textile industry. This breed, adapted to the region's arid climate through long-term natural and artificial selection, supports the local agricultural economy through cashmere, meat, and milk production. This study presents the first whole-genome resequencing dataset for the Raeini Cashmere goat, providing a valuable resource for ecological, evolutionary, and population genomic studies.
View Article and Find Full Text PDFEpigenetics Chromatin
August 2025
Key Laboratory of Animal Genetics, Breeding and Reproduction of Shaanxi Province, College of Animal Science and Technology, Northwest A&F University, Yangling, 712100, China.
Morphogenesis and development of hair follicle fundamentally depend on the interaction between the epidermis and dermis, with dermal papilla cells (DPCs) playing a critical role in these processes. H3K4me3, one of the key histone modifications, is essential for coordinating gene expression. However, the epigenetic modification profile of H3K4me3 in cashmere goat DPCs and its mechanism of action in hair follicle development remain unexplored.
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