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1.
高温对荷斯坦种公牛精液品质及精清生化指标的影响研究   总被引:5,自引:0,他引:5  
以荷斯坦种公牛为试验牛研究了高温对其精液品质和精清生化指标的影响。结果表明:(1)高温可造成种公牛精液品质显著下降。使原精活力、精子密度、活精子百分数和顶体完整率分别比春季下降3·13%(P<0·05)、34·8%(P<0·01)、15·0%(P<0·01)和17·8%(P<0·01),精子畸形率比春季上升25·5%(P<0·01)。(2)夏季荷斯坦种公牛精清睾酮含量仅为4·31pg/mL,极显著低于非高温季节(P<0·01)。(3)高温环境使得荷斯坦种公牛精清钾、钙、镁处于最低水平(P<0·01),精清碱性磷酸酶(ALP)、酸性磷酸酶(ACP)处于最高水平(P<0·01),使精清钠由春季至夏季呈显著下降趋势。  相似文献   

2.
以利木赞和夏洛来种公牛为试验牛,研究不同季节对其精液品质、冻精产量、生理常值、血清及精清生化指标的影响。结果表明:(1)与其它季节相比,夏季肉用种公牛的原精活力、冻精活力、活精于百分数、顶体完整率均显著降低,而精于畸形率显著升高(P〈0.05)。精子密度以秋季最低。(2)冻精产量夏季处于最低水平,平均每月仅为7388支。(3)夏季肉用种公牛的血清LH、睾酮、T3、皮质醇的含量分别为48.12、4.15、1.11、4.89ng/L,显著低于春、秋、冬季(P〈0.01)。(4)夏季肉用种公牛血清钠、钾、钙、镁均处于最低水平,显著低于其它季节(P〈0.01)。(5)夏季肉用种公牛精清睾酮水平明显下降,显著低于春季、秋季和冬季。(6)精清钠、钾、钙夏季含量最低,分别为83.12mmol/L、18,77mmol/L和4.63mmol/L;精清镁含量由春季至秋季呈显著下降趋势;精清磷含量夏季最高,为4.65mmol/L,显著高于春季、秋季和冬季。(7)肉用种公牛精清ALP夏季含量为1784.3U/L,显著高于春、秋两季,但低于冬季。(8)精清睾酮与精液品质各指标存在显著相关;血清生化指标与精清生化指标存在显著相关;直肠温度、呼吸频率与精液品质及血清生化指标存在显著相关性,与精清生化指标相关性不大。  相似文献   

3.
The present study aimed to evaluate the effect of organic and inorganic selenium (Se) supplementation on semen quality and blood serum profiles of buffalo bulls. Nine mature buffalo bulls were divided into three groups: control (non‐supplemented); organic Se (10 mg Sel‐Plex®/head twice weekly) and inorganic Se (10 mg sodium selenite/head twice weekly). Semen was collected twice a week for 3 months during Se supplementation. Semen properties were evaluated from fresh ejaculate. Moreover, fructose concentration, aspartate and alanine transaminase (AST and ALT) activities, total protein and total cholesterol were assayed in seminal plasma. Additionally AST, ALT, testosterone and Se levels were determined in the blood serum. Results showed that Se supplementation significantly (P < 0.05) influences the semen parameters during 3 months of treatment. Organic Se significantly (P < 0.05) increased the percentage of viable sperms compared to inorganic Se and the control group. Fructose concentration was significantly higher (P < 0.05) in the seminal plasma of organic Se‐treated bulls. Serum testosterone and Se concentrations were significantly (P < 0.05) increased in the Se supplemented groups than the control group. In conclusion, Se supplementation improved the parameters of buffalo bull semen and more precisely, organic Se was more effective for the improvement of semen quality and some blood components than inorganic Se.  相似文献   

4.
The study was designed to evaluate the influence of genetic origin on rabbit seminal plasma protein profile variation along the year. Seminal plasma of rabbits from line A (maternal line) and R (paternal line) collected during a natural year was subjected to polyacrylamide gel electrophoresis (SDS‐PAGE). The electrophoretic profile of rabbit seminal plasma resulted in multiple protein bands of different intensity ranging from 9 to 240 kDa. Results showed that seven protein bands were significantly different between genetic lines, and among these, three protein bands were significantly different between seasons. The differentially expressed proteins were identified by MALDI‐TOF/TOF or LC‐MS/MS analysis and were the following ones: FAM115E‐like (220, 113 and 59 kDa), ectonucleoside triphosphate diphosphohydrolase 3 isoform X2 (72 kDa), annexin A5 (32 kDa), lipocalin allergen Ory c 4 precursor (19 kDa), and haemoglobin subunit zetalike (13 kDa) between genetic lines and FAM115E‐like (113 kDa), haemoglobin subunit zetalike (13 kDa) and β‐nerve growth factor (12 kDa) between seasons. These results indicate that proteins from rabbit seminal plasma are under both seasonal control and genetic control. Furthermore, the differential presence of these proteins could be one of the causes explaining the differences observed in fertility and seminal parameters between these two lines in earlier studies.  相似文献   

5.
季节变化对不同品种种公牛精液品质及产能的影响   总被引:1,自引:0,他引:1  
选择年龄在3~4.5岁的不同品种的种公牛20头,观察四季变化对其精液次均采集量、平均密度、平均活力、精液利用率及制冻数量的影响。结果显示,在四个季节中,鲁西牛春、夏季的精液密度极显著高于其他季节(P<0.01),秋季精子活力极显著低于春季(P<0.01),夏、秋季的精液利用率及制冻数量显著低于春季(P<0.05);蒙贝利亚牛在夏季的精液采集量显著高于其他季节(P<0.05),夏、秋季精液密度均显著低于春季(P<0.05,P<0.01),夏季精子活力显著低于春季(P<0.05),夏、秋两季精液利用率及制动数量显著低于春季(P<0.05);德系西门塔尔牛夏季精液采集量有明显上升,显著高于冬季(P<0.05),秋季的精液密度显著低于春季(P<0.05),而夏、秋季精子活力显著低于春、冬季(P<0.01,P<0.05),春季的精液利用率及制冻数量显著高于冬季与夏、秋季(P<0.05,P<0.01)。综上所述,季节变化均会对各品种公牛精液指标产生不同程度的影响,其中对鲁西牛的影响较小。  相似文献   

6.
The aim of this study was to evaluate whether the season of ejaculate collection influences seminal quality parameters of pre‐ and post‐freeze–thawing in Xinong Saanen bucks. Ejaculates were collected from eight bucks throughout the four seasons (spring, summer, autumn and winter) in a 12 months’ time period, identified in the Northern Hemisphere. Semen samples were evaluated by the combinations of conventional and Computer‐Assisted Sperm Analysis (CASA) when fresh and after frozen–thawed, respectively. The results clearly demonstrated that season of ejaculate collection influenced (p < 0.05) fresh semen quality. Highest semen quality was observed during autumn. On the contrary, undesirable indices (significantly lower, p < 0.05) were observed in winter as compared with the other remaining seasons. CASA has clearly shown the influences of seasonal variations on semen motility parameters. Furthermore, season of ejaculate collection was also found to influence sperm freezability. Semen characteristics after frozen–thawed followed a similar pattern with that of fresh ejaculate except in spring. The results revealed that sperm quality was higher (p < 0.01) in summer and autumn than in spring and winter. In conclusion, seasonal variation influences semen quality in Xinong Saanen bucks. In addition to summer and autumn, fresh ejaculates in spring can also be successfully used for AI. Sperm from ejaculates collected during summer and autumn are more suitable for cryopreservation. Hence, it is possible to increase the efficiency of goat breeding by manipulating the seasonal variations of semen quality for immediate AI and/or cryopreservation.  相似文献   

7.
This study was attempted to identify subfertile bulls by quantifying the endogenous levels of osteopontin (OPN), total antioxidant capacity (TAC) and malondialdehyde (MDA) in seminal plasma of buffalo bulls. On the basis of conception rate, buffalo bulls were classified into two groups: high‐fertile (conception rate >50%) and subfertile bulls (conception rate <40%). A total of 100 ejaculates (10 ejaculates from each bull) were collected through artificial vagina method. The concentration of OPN, TAC and catalase (CAT) of high‐fertile bulls was found to be higher (p < .05) than that of subfertile bulls. Further, MDA level in seminal plasma was found to be lower (p < .05) in high‐fertile bulls compared with subfertile bulls. The fertility status had no effect on the superoxide dismutase (SOD) concentration in seminal plasma of both the groups. The levels of OPN (r = .678, p = 0.013) and TAC (r = .648, p = .042) were found to be positively correlated with bull fertility and the level of MDA (r = ?.718, p = .019) was found to be negatively correlated with bull fertility. However, the fertility of bulls was not found to be significantly correlated with SOD, CAT and sperm motility. In conclusion, seminal OPN, TAC and MDA tended to be more realistic in identification of subfertile bulls from breeding herds.  相似文献   

8.
9.
The aim of this study was to evaluate the effects of breed and season on semen quality parameters of zebu bulls. Data (1,632 registers) of semen production from Gir (n?=?4) and Nelore (n?=?15) bulls were collected between October 2005 and November 2009. The ejaculates were collected twice a week during various seasons (summer, fall, winter, and spring) and evaluated for the following semen parameters: ejaculate volume, sperm concentration, sperm motility, forward progressive motility (FPM), and sperm morphology. Factor analysis was used to determine the relationship among variables. The effect of breed (Gir and Nelore) and season and their cross effect on each parameter and extracted factor were tested using ANOVA. A negative correlation (P?<?0.05) was observed between FPM and proximal droplet, as well as with abnormal loose head, abnormal small head, pouch formation, abnormal mid-peace, and strongly folded tail. Gir bull sperm showed more major defects, detached acrosome, and minor FPM (P?<?0.01), whereas Nelore bulls showed a higher number of sperm with normally loose head.  相似文献   

10.
通过对8头采精夏南横交种公牛和18头本交夏南横交种公牛生产情况调查,夏南横交种公牛具有早熟性,无论是生产冻精还是本交,18月龄的种公牛均可投入生产,夏南横交种公牛生产性能良好,本交年均配种量可达264头,可制冻精细管20 175剂,配种数量、冻精产量、首配准胎率具有明显季节性,以春季最高,夏季最低。  相似文献   

11.
Decreased conception rate of dairy cows in the summer is mainly associated with the deleterious effects of environmental thermal stress on the female reproductive tract. Here, we suggest that decreased reproductive performance might be partially due to inferior-quality semen. Semen from five representative bulls was collected in summer (August to September) and winter (December to January) and evaluated with a computerized sperm-quality analyzer for bulls (SQA-Vb). No seasonal effect was found in fresh ejaculate, but sperm examined post-thawing showed lower velocity, motility and progressive motility (P<0.04) in summer vs. winter samples. Element concentrations in the seminal plasma, determined by inductively coupled plasma-atomic emission spectrometry, differed between seasons, with higher (P<0.01) concentration values of K, Mg, Na and S elements in winter vs. summer samples. Therefore, season-induced alterations in seminal plasma element concentration should be taken into account when using an extender for cryopreservation. Acrosome integrity was assessed by a triple-fluorescence test using Hoechst 33342, fluorescein isothiocyanate-conjugated Pisum sativum agglutinin (FITC-PSA) and propidium iodide. Acrosome reaction was examined by a one-step staining method using FITC-PSA. The proportion of sperm cells with a damaged acrosome post-thawing tended to be higher (P<0.07) in semen collected during the summer vs. winter. Such alterations suggest that seasonal reductions in sperm function might also be involved in the decreased conception rate of dairy cows in summer.  相似文献   

12.
In this study, we investigated the susceptibility of frozen-thawed swamp buffalo sperm nuclear DNA to undergo controlled acid-induced denaturation in situ, as analysed by flow cytometry, and aimed to correlate the results with sperm head morphology over three seasons in tropical Thailand. Artificial insemination (AI) doses (n = 218) from 18 AI buffalo sires, prepared between 1980 and 1989 and 2003 and 2005, were tested and compared among three seasons, the rainy season, July-October; winter, November-February; and summer, March-June. The overall mean of DNA fragmentation index (DFI) (+/- SD) was 1.84 +/- 1.68%, range from 0.19 to 7.92%, with 0.221 +/- 0.021 of the x-DFI ranging from 0.190 to 0.350 and 0.023 +/- 0.009 of the SD-DFI ranging from 0.010 to 0.070. The DFI was consistently low (range 1.40 +/- 0.21% to 2.16 +/- 0.21%; LSM +/- SEM), with x-DFI ranging from 0.216 +/- 0.003 to 0.225 +/- 0.003 and SD-DFI ranging from 0.022 +/- 0.001 to 0.024 +/- 0.001 across the seasons. The DFI was low enough to be related to high fertility potential. However, DFI values varied statistically among seasons, being lower in the rainy season (1.40 +/- 0.21%, P < 0.05) than in winter (2.16 +/- 0.21%) or summer (2.00 +/- 0.20%), and were also affected by the year of semen collection and processing (P < 0.001). The proportion of morphologically abnormal sperm head shapes was low, with no significant differences between seasons. However, DFI was significantly related to the proportion of loose abnormal sperm heads (r = 0.27, P < 0.01). In conclusion, frozen-thawed swamp buffalo sperm chromatin integrity is not seriously damaged by cryopreservation or affected by the seasonal variations in temperature and humidity seen in tropical Thailand.  相似文献   

13.
Repeatability (r) value of glutathione (GSH) content was estimated in semen of Tharparkar, Red Dane, their crosses, and Murrah buffalo bulls. Mean GSH values were higher in bovine bull semen as compared to mean GSH values in bubaline bull semen. The r of GSH concentration for the pooled data was 0.1278. This trait is 12.78% repeatable. GSH value in semen of bovine and bubaline bull differed insignificantly. R estimates are expressed for selection of bulls of higher fertility and semen quality.  相似文献   

14.
Seminal plasma of sterlet Acipenser ruthenus was evaluated using comparative proteomics to characterize its protein fractions and to determine any influence of multiple sperm collections on these proteins. An experimental group of fish was used, in which sperm was collected three times at 5 h intervals. Protein fractions of seminal plasma were determined by SDS‐gel electrophoresis (SDS‐PAGE) and two‐dimensional electrophoresis high‐resolution gels (2D). At all stripping times, five protein bands with molecular weights of 93, 53, 48, 33 and 28 kDa were identified using SDS‐PAGE. No significant differences (p > 0.05) in relative mass of protein bands among collections were observed. At the third collection, 20 protein spots were detected from the two‐dimensional gels, compared to 17 found at the first and second collections. Ten protein spots, from the third stripping, were analysed. Screening of these spots by mass spectrometric analysis showed positive results for spot 10. Direct comparison across public databases revealed sequence similarity with two hypothetical proteins, MCAG_00854 and IscW_ISCW011489. Differences in the seminal plasma protein fractions were found at the third stripping compared to the first two. It is hypothesized that these extra proteins after the third collection could be involved in some step of intracellular mechanism which is responsible for regulating of spermatozoa motility. However, protein identification revealed no significant distinction for any protein spot and protein sequences available in public databases. These results highlighted the need for a complete genome sequences for sturgeons.  相似文献   

15.
This study was conducted to evaluate changes in ram seminal plasma composition from ejaculates obtained using artificial vagina (AV) and electroejaculation (EE). To address this question, we assessed the effect of semen collection method on volume, sperm concentration, sodium concentration, potassium concentration, sodium/potassium ratio, total protein content and protein profile using sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) and 2-D polyacrylamide gel electrophoresis. The main findings from this study were: (i) similar volume was obtained, while sperm concentration was significantly lower for EE method; (ii) potassium and sodium/potassium concentration ratio were not influenced by recovery method, while sodium concentration increased significantly when semen was recovered using EE; (iii) approximately 80% of the total relative seminal plasma protein is represented by four protein fractions of molecular weights around 15, 21, 24 and 50 kDa and there were not differences and (iv) focussing the two-dimensional SDS-PAGE gel on the 10–25 kDa rank, the image analysis software detected around 22 spots with isoelectric points ranging from 5.1 to 6.1. Two protein spots (15 kDa and 5.5 and 22 kDa and 5.2 for molecular weight and isoelectric point respectively) increased significantly when semen was recovered using EE. One spot protein with molecular weight around 25 kDa and isoelectric point of 5.2 were only found in the seminal plasma from the semen recovery by AV. As it was demonstrated, ejaculates obtained with EE modify the sodium concentration, alter two proteins concentration and induced the loss of one protein in seminal plasma.  相似文献   

16.
Effect of age and season on semen quality parameters in Sahiwal bulls   总被引:1,自引:1,他引:0  
The objective of the study was to determine the effect of season, period, age, bull, and ejaculate on semen quality in Sahiwal bulls. Semen production records from 1996 to 2006 of 5,483 ejaculates from 46 Sahiwal bulls maintained at Artificial Breeding Complex, NDRI, Karnal, India were analyzed using least square analysis of variance by LSML software package. The overall least squares means of ejaculate volume (VOL), total volume per day (VOLD), mass activity (MA), initial motility (IM), sperm concentration per ml (SPC), and sperm concentration per ejaculate (SPCE) were 3.79 ± 0.02 ml, 5.81 ± 0.06 ml, 2.32 ± 0.01, 55.47 ± 0.001%, 766.69 ± 5.50 × 106/ml and 3023.25 ± 30.15 × 106, respectively. All semen traits (VOL, VOLD, MA, IM and SPCE) were significantly (P < 0.01) affected by age groups, season and period, whereas season had significant effect on VOL at 5% level. During hot-humid season, highest value of VOL, VOLD, MA, IM, SPC, and SPCE were observed followed by summer and cold season. Highest value of VOL, VOLD, IM, and SPCE were observed during period-3 (2004–2006), whereas highest value of MA and SPC were observed during period-1 (1996–1999). However, lowest magnitude of MA, IM, SPC, and SPCE during period-2 (2000–2003) was observed. Ejaculate characteristics like VOL, VOLD, and SPCE increased with the increasing age of bull up to 5 years and then decreased. Significant (P < 0.01) bull to bull variation was found in VOL, VOLD, MA, IM, SPC, and SPCE traits. First ejaculate had significantly (P < 0.01) higher MA, IM, SPC, and SPCE. Hence, it could be concluded that during rainy season and period-1 and period-3 the quality of semen is quantitatively and qualitatively good. Better quality semen was obtained up to 5 years of age in Sahiwal bulls.  相似文献   

17.
[目的]本研究测定了摩拉水牛、尼里水牛和槟榔江水牛的射精量、精子密度、精子活力和畸形率。[方法]精液品质按照《牛冷冻精液》标准和《牛冷冻精液生产技术规程》进行测定。[结果]结果得出,摩拉水牛公牛的射精量为5.1±2.37ml(n=2688)、精子密度为7.8±3.68亿/ml、原精活力57.4±16.42%;冷冻精液解冻活力平均为36.0±2.13%(n=1680)、畸形率为20.62±11.04%(n=873);尼里水牛公牛的射精量为5.3±1.99ml(n=1370)、精子密度为8.4±3.54亿/ml、原精活力62.7±12.51%;冷冻精液解冻活力平均36.5±2.43%(n=1102)、畸形率为15.2±5.71%(n=481);槟榔江水牛公牛的射精量为5.6±2.26ml(n=271)、精子密度为8.6±5.13亿/ml、原精活力65.2±9.19%;冷冻精液解冻活力平均为37.2±2.48%(n=239)、畸形率为19.6±6.08%(n=110)。[结论]本研究获得了水牛精液品质的基础数据。  相似文献   

18.
Cryopreservation process reduces lipids and phospholipids from buffalo bull spermatozoa. It was therefore hypothesized that supplementation of fatty acid to extender may improve the post‐thaw quality of buffalo semen. The objective was to evaluate the effect of arachidic acid supplementation in extender on post‐thaw quality of buffalo bull (Bubalus bubalis) spermatozoa. Semen was collected from three adult Nili‐Ravi buffalo bulls of similar age group with artificial vagina (42°C) for 3 weeks (replicate). Qualified semen ejaculates (n = 18) were split into four aliquots and diluted in triscitric acid extender containing 0.0 (control), 5.0, 10.0 and 20.0 ng/ml at 37°C having approximately 50 × 106 spermatozoa/ml. Diluted semen was cooled to 4°C in 2 h and equilibrated for 4 h at 4°C. Cooled semen was filled in 0.5‐ml straws at 4°C, kept on liquid nitrogen vapours for 10 min and plunged in liquid nitrogen for storage. Thawing of frozen semen was performed after 24 h at 37°C for 30 s. Sperm progressive motility (%) was improved in a dose‐dependent manner by supplementing arachidic acid at 5.0, 10.0 and 20.0 ng/ml compared with control. Structural and functional integrity of sperm plasma membrane (%), number of acrosome‐intact live sperm (%) and sperm chromatin integrity (%) were better (p < 0.05) in extender having 5.0 ng/ml of arachidic acid compared with control. At 10.0 ng/ml, these values did not vary (p > 0.05) from those at 5.0 ng/ml. Further improvement in structural and functional integrity of sperm plasma membrane, number of acrosome‐intact live sperm and chromatin integrity was observed at 20.0 ng/ml of arachidic acid in extender. In conclusion, arachidic acid supplementation in extender improved the post‐thaw quality parameters of cryopreserved Nili‐Ravi buffalo bull spermatozoa. Among the arachidic acid concentrations studied, maximum improvement in post‐thaw semen quality parameters was observed at 20.0 ng/ml.  相似文献   

19.
The objectives of this study were to evaluate the effects of season in southeast of Brazil comparing genotypes on semen characteristics, freezability and peripheral plasma concentrations of testosterone. Ejaculates of five Bos indicus bulls and six Bos taurus bulls were evaluated over a period of 27 months, which was divided into winter (July, August, September), spring (October, November, December), summer (January, February, March) and autumn (April, May, June). Semen was evaluated according to standard procedures for ejaculate volume, sperm concentration, gross-motility, progressive motility and sperm morphology. After preparing and freezing the ejaculates according to commercial procedures, the straws were stored in liquid N2 until post-thaw evaluation. Ejaculate volume, sperm concentration, gross-motility, progressive sperm motility, vigor and morphological sperm defects were significantly influenced by season and genotype (p < 0.05). Heat tolerance was better in B. indicus bulls than in B. taurus bulls characterized by lower values of sperm abnormalities throughout the observation period. The highest values were recorded for abnormal heads followed by cytoplasmatic droplets in B. taurus bulls. The proportion of ejaculates which were eliminated before freezing for reasons of bad quality was lower in the B. indicus bulls. Temporal changes in peripheral plasma testosterone concentrations were higher in B. indicus bulls than in B. taurus bulls not revealing seasonal influences. The results of this study show clear genotype differences regarding semen quality. Freezability of B. taurus semen varies considerably throughout the year, leading to a high proportion of eliminated ejaculates. Collecting semen from B. taurus bulls during the summer in an artificial insemination centre may not be profitable.  相似文献   

20.
Twenty-two buffalo bulls suffering from three different types of infertility were slaughtered and used for this study. Except for the reproductive system, no signs of localised or generalised disease were observed. Microbiological investigations were negative for brucellosis, vibriosis, mycoplasma and other non-specific microorganisms. Nine bulls with type 1 infertility had low bodyweights and underdevelopment of testes, accessory sex glands and endocrine glands. This picture suggests a total dysfunction of the pituitary-growth-gonadal axis. One bull of this type also showed bilateral epididymitis. Four out of 11 bulls with type 2 infertility had low bodyweights and most suffered from underdevelopment of testes, accessory sex glands and endocrine glands. Six bulls of this type had lesions of either epididymitis or orchitis or both. Two of these animals showed adhesions of periorchitis. One also showed seminal vesiculitis. In two bulls with type 3 infertility, bodyweights, reproductive organs and endocrine glands were normal. In later life, they yielded poor quality semen. Semen samples collected a few months before slaughter from nine bulls with type 2 and type 3 infertility were of poor quality and had higher percentages of abnormal spermatozoa in most cases.  相似文献   

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