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1.
本试验旨在研究猪肉质性状功能基因突变位点在野猪群体里面的遗传变异规律。以MC4R基因(D298N G>A)、RYR1基因(c.1843 C>T)、PRKAG3基因(1849 G>A)和IGF2基因(3072 G>A)突变位点为基础,通过PCR-RFLP、PCR-SSCP技术,对72头圈养野猪群体进行突变位点的多态性检测和群体遗传变异分析。结果表明,RYR1基因在c.1843 C>T突变位点的CC基因型为野猪群体内的优势基因型,等位基因C是野猪群体内的优势基因,没有TT基因型,该突变位点处于不平衡状态(P<0.01和P<0.05)。在MC4R基因D298N G>A突变位点上,GG基因型为野猪群体内的优势基因型,等位基因G是野猪群体内的优势基因。而PRKAG3基因(1849 G>A)的突变位点检测结果是GG基因型为野猪群体内的优势基因型,等位基因G是野猪群体内的优势基因,没有发现AA基因型。IGF2基因3072 G>A在野猪群体内没有发现多态性,经测序验证全部为GG基因型。这3个基因突变都处于Hardy-Weinberg平衡状态(P>0.05)。本研究得出该野猪种群体遗传多样性和变异较小,符合其品种特性。  相似文献   

2.
选取了106头莱芜猪核心群及部分后备猪,用PCR-RFLP的方法分别检测了酰基辅酶A合成酶长链4(Acly-CoA synthetase long chain family 4,ACSL4)基因的SNP G2645A位点和心脏型脂肪酸结合蛋白(Heart fatty acid-binding protein,H-FABP)基因的HinfⅠ及MspⅠ位点的多态性。结果显示,在ACSL4的SNP G2645A位点共检测到AG和GG 2种基因型,没有检测到AA基因型;G等位基因是优势等位基因;莱芜猪该位点呈高度多态。在H-FABP的HinfⅠ位点共检测到HH、Hh和hh 3种基因型,莱芜猪在该位点呈中度多态。莱芜猪在上述2个位点均处于Hardy-Weinberg平衡状态。经测序验证,莱芜猪H-FABP基因HinfⅠ位点的多态性是1 324位点T的插入、缺失所造成的。莱芜猪在H-FABP的MspⅠ位点没有多态性。在莱芜猪本品种选育中,可以顺序选择ACSL4G2645A位点GG基因型纯合个体和H-FABP HinfⅠ位点HH基因型纯合个体,提高莱芜猪IMF性状的均一性,将进一步促进莱芜猪种质的保护和利用。  相似文献   

3.
本研究旨在应用"中芯一号"家猪分子育种基因芯片了解试验猪群重要经济性状功能基因遗传变异,为选留优秀育种个体提供有效信息。选择影响猪脂肪沉积、肉质、生长、抗病和被毛表型等性状功能基因有效突变位点作为分子遗传选育标记,以野猪、松辽黑母猪及其杂交一代共计106头个体作为实验动物模型,通过"中芯一号"猪分子育种芯片检测,对试验猪不同性状功能基因有效突变位点进行统计分析。结果表明,猪脂肪沉积性状功能基因(SCD和MYH4)有效突变位点在试验猪群中全部是肌内脂肪沉积有利基因型(CC、TT);肉质性状功能基因(PHKG1、PRKAG3和RYR1)有效突变位点,除了21头猪携带有RYR1功能基因有效突变位点对肉质性状不利的等位基因T外(杂合基因型CT),其他个体全部为肉质性状有利基因型(CC、GG、CC);抗病性状功能基因MUC13有效突变位点的抗病有利等位基因纯合基因型(GG)所占比例高于杂合(GA)和不利等位基因纯合基因型(AA);生长性状功能基因(HMGA1、VRTN和CCKAR)有效突变位点检测发现,猪群中没有增加体长趋势的HMGA1突变位点的TT基因型个体,仅有1个杂合体;肋骨数功能基因VRTN有效突变位点T等位基因频率高,对个体的胸椎数有增加趋势;功能基因CCKAR有效突变位点全部是有利于增加采食及日增重的C等位基因纯合基因型;被毛表型性状KIT功能基因有效突变位点在所有检测猪个体呈现出GG基因型,说明研究猪群中不存在影响白色被毛表型的基因突变位点,与试验猪群被毛表型结果一致。以上结果为猪群进一步育种规划提供了有益信息。  相似文献   

4.
为了调查兰尼定1型受体(RYR1)基因和黑素皮质素受体4(MC4R)基因[其目前公认的数量性状基因座(QTN)]在新组建的民猪群体内的分布情况,试验采用PCR-RFLP的方法,对黑龙江省农业科学院畜牧研究所收集整理的23头民猪的RYR1基因和MC4R基因进行检测,并与其他已报道的猪种进行比较。结果表明:RYR1基因的N等位基因频率为86.96%,n等位基因频率为13.04%;MC4R的A等位基因频率为76.19%,G等位基因频率为23.81%,与其他猪种相比,n等位基因频率偏高。  相似文献   

5.
试验旨在研究梅山猪白细胞分化抗原14(cluster of differentiation antigen 14,CD14)基因多态性及其对部分免疫指标和繁殖性能的遗传效应。采用PCR-RFLP方法对梅山猪CD14基因-61 bp处多态性进行分析,同时对部分重要细胞因子(IL-1β、IL-4、IL-6、IL-8、IL-10、IFN-γ、TNF-α和TGF-β1)水平及繁殖性能(总产仔数、断奶仔猪数、初生窝重和断奶窝重)进行测定,并分析CD14基因多态性与部分免疫指标和繁殖性能的相关性。结果显示,梅山猪CD14基因-61 bp处经BamHⅠ酶切后共检测到3种基因型,分别定义为:AA、AG和GG;χ2适合性检验显示,梅山猪处于Hardy-Weinberg平衡状态(P>0.05);多态信息含量(PIC)分析显示,梅山猪群体处于中度多态。关联分析结果表明,AA和AG基因型个体的IL-10水平显著高于GG基因型个体(P<0.05);在初产母猪中,3种基因型间的繁殖性能均无显著差异(P>0.05),而在经产母猪中,AA和AG基因型个体的断奶窝重显著高于GG基因型个体(P<0.05)。本试验结果表明,基于CD14基因-61 bp处多态性对梅山猪进行分子选育时,无论是一般抗病力还是繁殖性能,GG基因型可能均为不利基因型,可以将CD14基因-61 bp处作为一个潜在的遗传标记进行深入系统的验证和分析。  相似文献   

6.
本研究旨在利用高分辨率熔解曲线(high resolution melt,HRM)分型方法检测大白猪黑素皮质素受体(melanocortin-4 receptor,MC4R)和细胞分裂周期蛋白16(cell division cycle 16,CDC16)基因的多态性,并对其与大白猪的生长性状进行关联性分析。试验共采集246头大白猪的耳组织样提取基因组DNA,对小群体样本进行PCR扩增后,通过测序方法寻找两个基因在该群体中的多态性位点,针对已发现的多态性位点设计HRM专用引物,利用HRM方法对大群体进行多态性检测,将所得结果与大白猪生长性状进行关联性分析。结果表明,在MC4R基因序列中检测到1个突变位点2207A>G,2个等位基因:A和G,3个基因型:AA、AG和GG;在CDC16基因第18外显子上检测到了1个突变位点837T>C,2个等位基因:T和C,2种基因型:TT和CT。χ~2适合性检验结果显示,2个基因的基因型频率和等位基因频率在2个种群中分布差异不显著,符合Hardy-Weinberg平衡定律(P>0.05)。多态信息含量(PIC)分析显示,MC4R基因在2个群体中均处于中度多态(0.25相似文献   

7.
不同品种猪α1-岩藻糖转移酶基因遗传变异初析   总被引:8,自引:3,他引:8  
本实验采用PCR RFLP方法对 5个瘦肉型猪种杜洛克、长白猪、大白猪、汉普夏猪和皮特兰猪共计 2 5 0头猪的α1 岩藻糖转移酶基因 (FUT1)进行多态性分析。结果表明 :本研究中的 5个猪种在该FUT1基因座位存在多态性 ,均分布着三种基因型 (AA ,AG和GG) ,抗性基因型AA分布频率为 0 .0 2 8,易感基因型AG与GG分布频率分别为0 .2 4 4和 0 .72 8。卡方检验结果表明 ,长白猪与大白猪基因型频率差异极显著 (P <0 .0 1) ,与皮特兰猪之间差异显著(P <0 .0 5 ) ,其它猪种之间差异均不显著。  相似文献   

8.
本研究采用PCR-RFLP方法对苏太猪F18+大肠杆菌抗病育种基础群α-(1,2)岩藻糖转移酶基因1(FUT1)M307位点多态性进行了分析,并探讨了其与部分生长发育性能的相关性。苏太猪F18+大肠杆菌抗病育种基础群FUT1基因M307位点经Hin6Ⅰ酶切后,产生AA、AG和GG 3种基因型,频率分别为0.235、0.609和0.156,群体极显著的偏离了Hardy-Weinberg平衡状态(P<0.01)。总体上AA基因型的个体生长发育优于AG和GG基因型的个体,其中AA基因型个体的60 kg体长显著高于AG和GG基因型的个体(P<0.05),断奶重显著高于GG基因型的个体(P<0.05),体高和后躯宽显著高于AG基因型的个体(P<0.05)。试验结果表明,苏太猪抗病育种基础群中FUT1基因第307位点的AA基因型不仅对仔猪断奶后水肿病和腹泻病具有抗性,而且具有较高的早期生长发育性能。  相似文献   

9.
本研究采用PCR-RFLP方法对苏太猪F18+大肠杆菌抗病育种基础群α-(1,2)岩藻糖转移酶基因1(FUT1)M307位点多态性进行了分析,并探讨了其与部分生长发育性能的相关性。苏太猪F18+大肠杆菌抗病育种基础群FUT1基因M307位点经Hin6Ⅰ酶切后,产生AA、AG和GG 3种基因型,频率分别为0.235、0.609和0.156,群体极显著的偏离了Hardy-Weinberg平衡状态(P<0.01)。总体上AA基因型的个体生长发育优于AG和GG基因型的个体,其中AA基因型个体的60 kg体长显著高于AG和GG基因型的个体(P<0.05),断奶重显著高于GG基因型的个体(P<0.05),体高和后躯宽显著高于AG基因型的个体(P<0.05)。试验结果表明,苏太猪抗病育种基础群中FUT1基因第307位点的AA基因型不仅对仔猪断奶后水肿病和腹泻病具有抗性,而且具有较高的早期生长发育性能。  相似文献   

10.
Previous studies demonstrated significantly lower plasma cortisol level in homozygous halothane-positive (Hal nn) pigs, as compared with homozygous halothane-negative (Hal NN) pigs. To determine whether such difference is attributed to the fundamental alterations in adrenocortical function, F1 offsprings from Pietrain (Hal nn)xErhualian (Hal NN) were intercrossed to produce F2 sibling pigs with segregated genotypes. Adrenocortical cells were isolated from the Hal nn and Hal NN F2 pigs, respectively, and cultured with or without ACTH challenge. Cortisol levels in culture medium, as well as the content of MC2R, cAMP, CREB, phosphorylated CREB (pCREB), StAR and P450scc in adrenocortical cell lysates, were determined. Cortisol, cAMP, StAR and P450scc levels were significantly lower in Hal nn adrenocortical cells under basal condition without ACTH challenge. ACTH significantly increased cortisol level in the medium and the protein content of MC2R, StAR, P450scc in adrenocortical cell lysates, regardless of genotypes. Total CREB protein content was not different between genotypes and treatments, whereas pCREB content exhibited significant effects of genotype and treatment, being higher in Hal NN than in Hal nn under basal condition and in response to ACTH challenge. These results indicate that the compromised cAMP/PKA/pCREB signaling pathway of ACTH and diminished expression of limiting factors in adrenocortical steroidogenesis (StAR and P450scc) may contribute to the significantly lower plasma cortisol levels in Hal nn pigs.  相似文献   

11.
Plasma pyruvate kinase (PK) and creatine kinase (CK) activities were increased significantly (P less than 0.001 and P less than 0.05, respectively) in homozygote halothane-reacting pigs (nn), compared with those activities in homozygote nonreacting pigs (NN). Pyruvate kinase activity was less variable within groups than was CK activity, allowing more effective discrimination between nn and NN geno-types. The PK and CK activities in plasma increase with age in halothane-reacting pigs and the nonreacting pigs. Enzyme activities in heterozygote (Nn) nonreacting pigs did not differ significantly (P greater than 0.05) from enzyme activities of homozygote (NN) nonreacting pigs. Although PK was better than CK in identifying stress-susceptible pigs, age-related effects and the failure to identify heterozygotes may restrict the use of plasma PK activity as a diagnostic test for the stress syndrome.  相似文献   

12.
猪氟烷基因型的PCR检测及杂合子氟烷阳性猪的发现   总被引:2,自引:1,他引:1  
对147头猪进行了氟烷测验,测得氟烷阳性猪3头,阳性率为2.04%。运用PCR-RFLP分析法对氟烷阳性猪及其同胞进行了基因型检测,结果4头被测猪中有2头为隐性纯合子,2头为杂合子。结合氟烷测验结果,2头隐性纯合子表现为氟烷阳性,符合一般规律;而2头杂合子中发现1头为氟烷阳性,此前尚未见报道,这一结果证明了氟烷表现与基因型并非完全对应  相似文献   

13.
A mutation in the ryanodine receptor gene (RYR1) of the calcium release channel is responsible for increased stress susceptibility in pigs. In the present study, the relation of a mutation in RYR1 with the neuroendocrine (stress-related hormone) response and the immune defense represented by natural killer cell cytotoxicity (NKCC) during a 4-h restraint and recovery phase in 60 male pigs was investigated. Blood samples were collected from pigs previously divided into RYR1 genotypes (nn, Nn, NN), based on PCR amplification and restriction analyses. The blood samples collected during the restraint and recovery phases of the experiment were used to determine NKCC (51Cr-release assay), large granular lymphocyte number (hematologic method), and plasma concentrations of prolactin (PRL), GH, ACTH, and cortisol (COR) (by specific RIA). The greatest degree of NKCC response (P < 0.05) to restraint stress relative to controls was observed for the stress-susceptible homozygote group (nn). Measures of stress-related hormones were positively correlated with NKCC during the entire experimental period (P < 0.001 for all investigated hormones) in the nn group. Immunostimulatory effects in the early (0–60 min) phase of restraint were associated with increased hormone responses, especially PRL and GH. In the late (180–240 min) phase of stress and the recovery phase (480 min), a decrease in immune response was accompanied by an elevated COR response in all RYR1 genotypes. Moreover, divergent responses of both PRL (greatest in nn, P < 0.001) and GH (greatest in NN, P < 0.001) to the 4-h restraint were observed. Our results suggest that stress-susceptible RYR1-mutated homozygotes develop a greater level of immune defense, including cytotoxic activity of NK cells, and accompanied by more pronounced stress-induced changes in neuroendocrine response than stress-resistant heterozygous (Nn) and homozygous (NN) pigs.  相似文献   

14.
为研究芦花鸡PRKAG3基因的多态性及与肉质性状相关性,采用PCR-SSCP方法检测PRKAG3基因外显子11的遗传多态性。结果检测到TT、TG和GG三种基因型,测序结果证实在2832位点存在T→G突变,为有意突变,统计分析表明,此多态位点与芦花鸡呈显著相关,pH值为GG基因型极显著低于TG基因型和TT基因型(P<0.01),而TG基因型显著低于TT基因型(P<0.05);其它肉质性状在不同基因型间差异不显著。此结果提示,PRKAG3基因对芦花鸡pH值具有较大的遗传效应,可以初步推断PRKAG3是控制这一性状的众多基因之一,可能是影响芦花鸡pH值的一个主效基因或与主效基因相连锁,可作为选育芦花鸡pH值的分子标记,用于标记辅助选择意义重大。  相似文献   

15.
采用混合基因池和直接测序方法,寻找猪LHR基因第11外显子区域的SNP;利用PCR-RFLP技术对小梅山猪、枫泾猪和大白猪3个群体218头繁殖母猪进行大规模检测,并采用最小二乘法分析其与616窝小梅山猪繁殖记录的关系。结果表明,在猪LHR基因第11外显子1 351bp处发现1个SNP(C→T);利用错配PCR技术产生1个新的酶切位点SphⅠ,经RFLP分析,在小梅山猪群体中检测到3种基因型:MM、MN、NN,其中MN基因型频率最高(0.69),而枫泾猪和大白猪中只检测到MM型个体;关联分析及方差分析结果表明,对于小梅山猪母猪,2胎以上中,MN型的总产仔数(TNB)显著高于NN型(P〈0.05);所有胎次中,MN型的TNB和活产仔数(NBA)均显著高于NN型(P〈0.05);初步表明,MN基因型为优势基因型,TNB和NBA的遗传主要受基因的显性效应的影响;LHR基因第11外显子可作为小梅山猪辅助选择的遗传标记。  相似文献   

16.
Data on 187 DNA‐tested purebred Landrace pigs were used to compare heterozygous RYR1 genotypes (Nn) and normal homozygotes (NN) in performance (growth, fat deposition rate and feeding behaviour patterns), and carcass, meat and fat quality traits. From 75 to 165 days of age, live body weight (BW), ultrasonic midback (UMB) and loin (ULB) backfat measurements were recorded periodically on the same animal. Individual voluntary feed intake (DFI), number of visits (NVD) and feeding time (FTD) were measured on a daily basis using an automatic feeding system. Polynomial models with random regression coefficients were used to describe BW, UMB, ULB, DFI, NVD and FTD as a function of age. Carcass, meat and fat quality traits were analysed using a mixed model with the RYR1 genotype as a fixed effect. No significant (p < 0.05) differences were observed between NN and Nn genotypes for growth, feed intake and feed efficiency at any age, but the NN pigs showed higher values for UMB and ULB (0.68 ± 0.30 mm and 0.88 ± 0.40 mm, respectively, at 165 days). The Nn pigs had higher predicted carcass lean content (+11.1 ± 3.7 g/kg) and higher proportion of ham in the carcass (+2.9 ± 1.4 g/kg). However, they showed lower values of pH measurements at 45 min post‐mortem (–0.26 ± 0.05 in M. longissimus dorsi, LD), and higher electrical conductivity at 45 min (+1.03 ± 0.17 μs in LD) and 24 h post‐mortem (+1.63 ± 0.29 μs in LD). No significant differences were found between genotypes for intramuscular fat in the M. semimembranosus (SM) and for fatty acid profiles in the subcutaneous backfat and in the intramuscular fat of the SM. The results of this study suggest that Nn pigs would attain their maximum growth rate at later stages than the NN without any relevant change in the feeding behaviour pattern. Also they confirm that Nn pigs are leaner, have greater proportion of high‐priced cuts in the carcass and are more prone to develop pale, soft and exudative meats. However, no effect on fat quality traits was found.  相似文献   

17.
Single nucleotide polymorphisms (SNPs) in exon 2 of insulin-like growth factor Ⅰ receptor (IGF-ⅠR) gene were detected by PCR-RFLP in Bian chicken,which was to find the correlation markers of growth and reproduction traits in Bian chicken.The results showed that AluⅠsite displayed polymorphic, and a G→A mutation at the position of the 376 bp in exon 2 was occurred. There were three genotypes (GG, GA and AA), the genotypes frequencies were 0.687, 0.296 and 0.017, respectively, GG genotype was the dominant genotype, the frequency of G allele was 0.835, which was the dominant allele. This site was in Hardy-Weinberg equilibrium (P>0.05).Correlation analysis showed that GG genotype had significantly higher body weight than those of GA genotype at the age of 8, 14, 16 and 18 weeks (P<0.05);The GG geno type had extremely significantly higher body weight at first egg than those of GA genotype (P<0.01),but it didn't mean that this locus could be used as a genetic marker for reproduction traits in Bian chicken. This results suggested that the AluⅠsite (G→A) in exon 2 of IGF-ⅠR gene could be used as a genetic marker for growth traits in Bian chicken.  相似文献   

18.
为了寻找与边鸡生长性状和繁殖性状相关的遗传标记,本试验采用PCR-RFLP技术检测边鸡类胰岛素生长因子Ⅰ受体(insulin-like growth factor Ⅰreceptor,IGF-ⅠR)基因Alu Ⅰ位点的多态性,并分析该多态位点对边鸡生长性状和繁殖性状的遗传效应。结果显示,边鸡IGF-ⅠR基因Alu Ⅰ位点存在多态性,在外显子2的376 bp处有1个G→A突变,产生了GG、GA和AA 3种基因型,基因型频率分别为0.687、0.296和0.017,GG为优势基因型;G等位基因频率为0.835,为优势等位基因。卡方适合性检验结果表明,该基因座位在边鸡群体中处于哈代-温伯格平衡状态(P>0.05)。相关分析结果表明,在8、14、16和18周龄时,GG基因型个体的体重显著高于GA基因型(P<0.05),GG基因型个体的开产体重极显著高于GA基因型个体(P<0.01),但并不能说明该位点可以作为影响边鸡繁殖性状的遗传标记。IGF-ⅠR基因外显子2的Alu Ⅰ位点(G→A)可能是影响边鸡生长性状的一个遗传标记。  相似文献   

19.
试验旨在研究不同品系大白猪骨形态发生蛋白受体ⅠB(bone morphogenetic protein receptor-ⅠB,BMPR-ⅠB)基因多态性及其与繁殖性状的相关性。采用Hi-SNP中高通量基因分型技术对BMPR-ⅠB基因多态位点进行分型,利用SPSS统计软件,采用最小二乘法将各位点不同基因型与总产仔数、产活仔数、死胎数、畸形头数进行相关性分析。结果显示,不同品系大白猪在BMPR-ⅠB基因746A > G和852G > A位点均未检测到多态性,804G > C位点上均表现为GG基因型为优势基因型,G为优势等位基因;960C > T位点在美系大白猪中以CC基因型频率较高,而在英系大白猪中以TT基因型频率较高,在加系大白猪中CT基因型频率较高,3个不同品系大白猪群体在804G > C和960C > T位点均处于Hardy-Weinberg平衡状态(P > 0.05)。804G > C位点在3个不同品系大白猪中对总产仔数、产活仔数、死胎数、畸形数等繁殖性状均无显著影响(P > 0.05)。960C > T位点在美系大白猪群体中TT基因型死胎数极显著低于CC基因型1.027头(P < 0.01);英系大白猪群体中TT基因型总产仔数显著高于CC基因型1.976头(P < 0.05),极显著高于CT基因型2.118头(P < 0.01);加系大白猪中TT基因型产活仔数显著高于CC基因型0.886头(P < 0.05),死胎数、畸形头数显著低于CC基因型0.707和0.337头(P < 0.05)。960C > T位点中TT基因型可作为3个不同品系大白猪繁殖性状的标记基因型。  相似文献   

20.
为探索H-FABP和LPIN1基因在不同猪种中的多态性分布情况,应用PCR-RFLP技术检测了61头军牧1号白猪、51头杜洛克猪和51头藏猪H-FABP和LPIN1基因的多态性分布。结果发现,军牧1号白猪、杜洛克猪和藏猪在H-FABP基因的Hinf Ⅰ多态性位点上均表现为单一的HH型,而Hea Ⅲ多态性位点上均表现出多态性,等位基因D的基因频率分别为0.1475、0.2255和0.7647,Msp Ⅰ多态位点上,军牧1号白猪表现为单一的aa型,杜洛克猪和藏猪则表现为多态性,等位基因A的基因频率分别为0.6078和0.4609。在LPIN1基因的Eco88 Ⅰ多态性位点上,杜洛克猪表现为单一的AA型,军牧1号白猪和藏猪表现为多态性,等位基因A的基因频率分别为0.4262和0.2059;在Bsh1236 Ⅰ多态性位点上,杜洛克猪表现为单一的TT型,军牧1号白猪和藏猪则表现为多态性,等位基因T的基因频率分别为0.7459和0.2059。  相似文献   

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