1 citations
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January 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” This study provided a detailed molecular profile of Cashmere goat hair follicle development using single-cell RNA sequencing, revealing unique cell populations and conserved developmental programs compared to mouse models.
This review summarizes how single-cell omics technologies have advanced understanding of cellular regulatory programs in sheep and goats, but highlights limitations in genomic annotation and integration with population genetics for molecular breeding.
3 citations
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May 2024 in “Poultry Science” This study identified key genes involved in feather follicle development in Wannan chickens, finding that genes such as LAMC2, COL6A3, and WNT7A are crucial in the regulation processes, potentially aiding molecular breeding programs for improved carcass appearance traits.
6 citations
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October 2023 in “Animal Biotechnology” This study found that a 22-bp InDel polymorphism in the FGF7 gene was significantly associated with growth traits in goats, with genotypes ID and/or II linked to better growth compared to genotype DD, indicating its potential as a molecular marker in breeding programs.
1 citations
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October 2020 in “Research Square (Research Square)” This study identified a 505-bp indel variant in the FGF5 gene associated with cashmere growth in goats, which may serve as a molecular marker in cashmere goat breeding programs.
25 citations
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January 2004 in “The International Journal of Developmental Biology” This review discusses the molecular mechanisms involved in hair and epidermal development, highlighting how studies on human inherited diseases and mouse models have deepened our understanding; it reports no new results.
1 citations
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September 2025 in “Frontiers in Veterinary Science” This study observed structural and molecular changes in Ganxi goat skin that adapt to hot and humid climates and suggested that GSDMA might play a role in hair follicle regulation and skin homeostasis, though further research is needed to confirm its function in environmental adaptation.
83 citations
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May 2013 in “International Journal of Molecular Sciences” This review explores embryonic epidermal development and discusses key molecular regulators and roles of the sub-epidermal mesenchyme, but reports no new experimental results.
December 2010 in “HAL (Le Centre pour la Communication Scientifique Directe)” This study found that the corneal epithelium differentiation program can proceed independently of lens formation, suggesting the corneal program is the default in eye development.
November 2025 in “Frontiers in Cell and Developmental Biology” This study mapped a detailed genetic profile of goat hair follicle apoptosis, identifying key genes and regulatory factors involved in the hair cycle, offering new insights into programmed cell death.
28 citations
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April 2024 in “Immunity” In this study, researchers found that hair follicle stem cells activate an immune-modulatory program during wound healing, promoting Treg cell expansion and aiding skin repair, while deleting certain immune components impaired healing and increased inflammation in a mouse model.
17 citations
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May 2018 in “BMC genomics” This study found that miR-432 inhibits KRT83 expression, revealing potential molecular mechanisms for the formation of curly fleece in Tan sheep and suggesting implications for understanding curly hair formation in humans.
46 citations
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August 2020 in “International Journal of Genomics” This review examines over 271 candidate genes associated with economic traits in goats, highlighting their potential use in genetic markers and future breeding programs, and reports no new experimental results.
14 citations
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June 2022 in “BMC genomics” This study identified key genes involved in hair follicle development in Merino sheep, offering insights for improving wool production and providing a basis for future breeding programs.
13 citations
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July 2024 in “Circulation Research” In this review, researchers highlighted the pivotal role of the epicardium in heart regeneration and repair, particularly through its cellular programs and signaling during myocardial infarction, though they noted challenges in replicating these processes in nonregenerative mammals, suggesting pathways for innovative cardiovascular therapies.
1 citations
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September 2023 in “Animals” This study found that genetic variants in the goat KRTAP22-2 gene are associated with the mean fiber diameter of cashmere in Longdong Cashmere goats, suggesting these variants could serve as molecular markers for improving cashmere traits.
November 2023 in “BMC genomics” Using a multi-omics analysis, this study identified key regulators like PLA2G12A, KRT79, and prostaglandin B2 that influence cashmere fineness, providing crucial data for understanding the molecular mechanisms behind this trait in Liaoning cashmere goats.
September 2025 in “Genes” In this study, researchers reported that specific gene polymorphisms in Jiangnan cashmere goats, particularly SNPs in the HOXC13 and WNT4 genes, were significantly associated with key economic traits like birth weight and yearling weight, providing molecular markers for breeding and enhancing economic trait stability.
14 citations
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April 2008 in “PROTEOMICS” This study suggests that the down-regulation of 14-3-3 proteins in wild-type keratinocytes, absent in Smad4 mutant keratinocytes, might contribute to the failure of hair follicles to initiate catagen in Smad4 knockout mice.
In this study, researchers used transcriptome sequencing to identify 1543 differentially expressed genes between cashmere and normal goats, implicating several signaling pathways and key regulators in the distinct gene expression profiles linked to cashmere fiber production, which advances understanding of cashmere goat genetics.
16 citations
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January 2021 in “BMC Genomics” This study found that high wool-producing Wan Strain Angora rabbits had higher hair follicle density and identified potential regulatory long noncoding RNAs that may influence this trait.
5 citations
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January 2015 in “Genetics and Molecular Research” This study found that gene-regulatory interactions among parental alleles contribute significantly to heterosis in early stages of maize development, with many differentially expressed genes showing non-additive expression in hybrids.
2 citations
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December 2025 in “Nature Communications” This study found that the repressive histone mark H2AK119ub links inhibitory FGF signals with the quiescent state in hair follicle stem cells, revealing a signaling-epigenetic axis crucial for maintaining stem cell quiescence and tissue homeostasis.
255 citations
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September 2016 in “Frontiers in plant science” This article reviews recent insights into the regulatory role of reactive oxygen species in plant development, highlighting that their mechanisms and signaling pathways remain partially understood.
15 citations
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January 1996 in “Adelaide Research & Scholarship (AR&S) (University of Adelaide)” This review discusses the structural knowledge of wool keratin proteins and genes, reports no new findings, and highlights promising directions such as keratin gene regulation.
133 citations
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June 2016 in “Nature Neuroscience” Zeb2 is crucial for nerve repair by controlling Schwann cell function.
December 2024 in “Veterinary Sciences” In this study of Zhexi Angora rabbits, researchers found that the fine-wool group exhibited lower fiber diameters and a higher hair follicle density than the coarse-wool group, and they identified key candidate genes potentially regulating wool quality through RNA-seq and genome resequencing techniques.
82 citations
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October 2019 in “Frontiers in Immunology” This review discusses the features of regulatory T cells and the modulation of Foxp3, emphasizing post-translational modifications' impact on Treg function but reports no new clinical results.
9 citations
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December 2018 in “Journal of Natural Fibers” This study found that K33A was significantly upregulated in lustrous Magra wool follicles, while other keratin and KAP genes showed downregulation, impacting wool's physical properties like luster.
1 citations
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August 2023 in “Nature communications” In this study, researchers found that Hdac1 and Hdac2 are crucial for maintaining the quiescence and survival of dermal papilla cells in the hair follicle, regulating the hair cycle by controlling cell-cycle genes and Wnt signaling.