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510-540 / 651 resultsresearch Two-Stage Machine Learning-Based GWAS for Wool Traits in Central Anatolian Merino Sheep
Machine learning can effectively identify genes to improve wool quality in sheep.
research Screening of Protein Related to Wool Development and Fineness in Gansu Alpine Fine-Wool Sheep
Key proteins and pathways are crucial for wool fineness, but more research is needed.
research Characterisation of Four New Genes in the Ovine KAP19 Family
Four new genes related to sheep wool were discovered, showing genetic diversity.
research Comparative proteomic analysis of male and female androgenetic alopecia: elucidating gender-specific molecular patterns
Male and female pattern hair loss have different molecular pathways, suggesting unique treatment targets for each sex.
research Resequencing Analyses Revealed Genetic Diversity and Selection Signatures during Rabbit Breeding and Improvement
Genetic analysis of rabbits identified key genes for traits like coat color, body size, and fertility.
research Characterisation of the Ovine KRTAP36-1 Gene in Chinese Tan Lambs and Its Impact on Selected Wool Traits
The KRTAP36-1 gene affects wool quality in Chinese Tan lambs.
research Effects of KRTAP20-1 Gene Variation on Wool Traits in Chinese Tan Sheep
Variant G of the KRTAP20-1 gene improves wool curliness in Chinese Tan sheep.
research Ovine KRTAP36-2: A New Keratin-Associated Protein Gene Related to Variation in Wool Yield
The KRTAP36-2 gene in sheep affects wool yield.
research Comparative histomorphometric and transcriptomic analysis reveals potential genetic determinants of pelage variation between hairy and coarse-woolly sheep
Genetic differences in sheep affect wool type, with fat and immune genes influencing hair traits.
research Deletion of an Enhancer in FGF5 is Associated With Ectopic Expression in Goat Hair Follicles and the Cashmere Growth Phenotype
A genetic variant in goats is linked to cashmere growth.
research Deletion of an enhancer in FGF5 is associated with ectopic expression in goat hair follicles and the cashmere growth phenotype
A genetic change in the FGF5 gene affects hair growth in cashmere goats.
research The Endocrine control of fibre growth and shedding in cashmere goats
Hormones and daylight changes control when cashmere goats shed their hair.
research Melatonin promotes Cashmere goat (Capra hircus) secondary hair follicle growth: a view from integrated analysis of long non-coding and coding RNAs
Melatonin helps Cashmere goat hair follicles grow by affecting stem cell signals and the surrounding microenvironment.
research Melatonin promotes Cashmere goat (Capra hircus) secondary hair follicle growth: A view from integrated analysis of long non-coding and coding RNAs
Melatonin helps Cashmere goat hair follicles grow by affecting genes and cell signals important for their development and environment.
research Transcriptomic profiling of dermal papilla cells across growth phases, hair follicle types, and sexes in cashmere goats
Distinct molecular signatures in goat hair cells relate to growth, follicle type, and sex, aiding cashmere improvement.
research Effect of Injecting Melatonin Capsules on Growth of Skin Follicle of Longdong Cashmere Goats
Injecting melatonin improves cashmere yield by enhancing fiber growth in goats.
research Melatonin promotes Cashmere goat (Capra hircus) secondary hair follicle growth: a view from integrated analysis of long non-coding and coding RNAs
Melatonin helps Cashmere goats grow more hair by affecting genes and cell signals important for hair and blood vessel development.
research In vitroFibre production and protein deposition in secondary hair follicles of the cashmere and angora goat
Angora goats produce more hair faster than Cashmere goats.
research Drivers of plateau adaptability in cashmere goats revealed by genomic and transcriptomic analyses
The study found that genetic differences related to hair growth and other traits help cashmere goats adapt to high-altitude environments.
research Gene Expression and Localization of LAMTOR3 in the Skin Cells of Liaoning Cashmere Goats
The LAMTOR3 gene is involved in cashmere goat hair growth and is affected by certain treatments and other genes.
research Differential transcriptomics and metabolomics analyses of the skin of coarse and fine Liaoning cashmere goats
Genes and metabolites affect cashmere fiber thickness, which can improve cashmere quality.
research Influences of IGF-1 and EGF on primary hair follicles of Liaoning cashmere goat in vitro.
IGF-1 and EGF together significantly boost hair follicle growth in cashmere goats.
research Effects of lncRNA MTC on protein expression in skin fibroblasts of Liaoning Cashmere goat based on iTRAQ technique
lncRNA MTC affects protein levels in goat skin cells, impacting hair growth.
research Study on VEGF in the Expression of Skin Hair Follicle and the Relationship with Microvessel Density by Liaoning Cashmere Goat in Fetal Period
VEGF increases in goat hair follicles during fetal development, boosting skin blood vessel density.
research Melatonin promotes the proliferation of dermal papilla cells in cashmere goats via activation of chi-let-7d-5p/WNT2 axis
Melatonin boosts hair growth in cashmere goats by helping certain cells multiply.
research Effects of Estradiol on Cashmere Goat Primary Hair Follicles Cultured in vitro
Higher estradiol levels slow cashmere goat hair growth.
research Productivity of Australian cashmere goats grazing Pangola grass pastures and supplemented with untreated and formaldehyde treated protein meals
Protein supplements helped goats maintain weight and increased fleece growth, but not cashmere growth.
research The role of prolactin in the reactivation of hair follicles in relation to moulting in cashmere goats
Prolactin speeds up hair growth and moulting in cashmere goats.
research Melatonin regulates the mitogen-activated protein kinase ( MAPK ) pathway via the circMPP5-miR-211-MAPK3 axis to induce secondary hair follicle differentiation and development in newborn Cashmere goat kids
Melatonin helps improve Cashmere goat hair quality by promoting hair follicle growth through a specific cell signaling pathway.