Mao Chenyu, Yin Xuelei, Wang Chu, Huang Xinran, Li Jiawen
Faculty of Biological Science and Technology, Baotou Teacher's College, Baotou, China.
Front Vet Sci. 2025 Mar 19;12:1548681. doi: 10.3389/fvets.2025.1548681. eCollection 2025.
The growth of cashmere in goats was primarily influenced by natural photoperiod. However, whether artificially altering the photoperiod modified the rhythm of cashmere growth still required verification. In this study, the effects of photoperiod change on hormone secretion, hair follicle development, gene expression and skin antioxidant status of goats were studied in non-growth period of cashmere. Eighteen goats were randomly divided into three groups: control group (CG, natural photoperiod), short-day photoperiod group (SDPP, light 8 h/d, dark 16 h/d) and shortening photoperiod group (SPP, illumination duration gradually shortened from 16 h/d to 8 h/d). Experiment lasted for 60 days. Blood samples were taken weekly in first 30 days and every other day in last 30 days to determine hormone concentration. Skin samples were collected on 30 d and 60 d to determine hair follicle morphology, gene expression and skin antioxidant index. The results showed that SDPP and SPP increased the melatonin concentration on 34 d ( < 0.05) and 44 d ( < 0.05), and the epidermal growth factor concentration on 46 d ( < 0.05) and 50 d ( < 0.05), and the T3 concentration on 48 d and 56 d ( < 0.05), but decreased the prolactin concentration on 44 d ( < 0.05) and 56 d ( < 0.05), respectively. Additionally, on the 60 d, SDPP and SPP increased the depth of secondary hair follicle and the width of primary hair bulb ( < 0.05) and SPP increased the width of secondary hair bulb ( < 0.05). Furthermore, on the 60 d, SDPP up-regulated the -catenin expression; SPP up-regulated the -catenin, BMP2 and PDGFA expression ( < 0.05). Besides, on the 30 d, SDPP increased the activity of catalase (CAT) ( < 0.05) and decreased the content of malonaldehyde (MDA) ( < 0.05). On the 60 d, SPP increased the activities of total superoxide dismutase, both SDPP and SPP increased the activities of CAT and glutathione peroxidase (GPx) ( < 0.05), and decreased content of MDA in skin ( < 0.05). In addition, at 60 d, both SDPP and SPP up-regulated the gene expression of SOD1, GPx4 and CAT ( < 0.05). It can be seen that shortened the photoperiod affected the hair follicle activity by altering the secretion of hormone and mediating the expression of key genes, made hair follicle morphological changes. Meanwhile, short photoperiod improved the antioxidant capacity, created favorable conditions for cashmere growth.
山羊绒的生长主要受自然光照周期的影响。然而,人工改变光照周期是否会改变羊绒生长的节律仍需验证。本研究在羊绒非生长时期,研究了光照周期变化对山羊激素分泌、毛囊发育、基因表达及皮肤抗氧化状态的影响。将18只山羊随机分为三组:对照组(CG,自然光照周期)、短日照光照周期组(SDPP,光照8小时/天,黑暗16小时/天)和缩短光照周期组(SPP,光照时长从16小时/天逐渐缩短至8小时/天)。实验持续60天。前30天每周采集血样,后30天每隔一天采集血样以测定激素浓度。在第30天和第60天采集皮肤样本以测定毛囊形态、基因表达及皮肤抗氧化指标。结果表明,SDPP组和SPP组在第34天(P<0.05)和第44天(P<0.05)时褪黑素浓度升高,在第46天(P<0.05)和第50天(P<0.05)时表皮生长因子浓度升高,在第48天和第56天(P<0.05)时T3浓度升高,但分别在第44天(P<0.05)和第56天(P<0.05)时催乳素浓度降低。此外,在第60天时,SDPP组和SPP组次级毛囊深度和初级毛球宽度增加(P<0.05),SPP组次级毛球宽度增加(P<0.05)。再者,在第60天时,SDPP组上调了β-连环蛋白表达;SPP组上调了β-连环蛋白、BMP2和PDGFA表达(P<0.05)。另外,在第30天时,SDPP组过氧化氢酶(CAT)活性增加(P<0.05),丙二醛(MDA)含量降低(P<0.05)。在第60天时,SPP组总超氧化物歧化酶活性增加,SDPP组和SPP组CAT和谷胱甘肽过氧化物酶(GPx)活性均增加(P<0.05),皮肤中MDA含量降低(P<0.05)。此外,在第60天时,SDPP组和SPP组SOD1、GPx4和CAT基因表达均上调(P<0.05)。可见,缩短光照周期通过改变激素分泌和介导关键基因表达影响毛囊活性,使毛囊形态发生变化。同时,短光照周期提高了抗氧化能力,为羊绒生长创造了有利条件。