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1.
为探究延边黄牛脂蛋白脂肪酶(lipoprteinlipase,LPL)基因遗传多态性及其对肉质性状的影响,本试验以80头健康的30月龄延边黄牛背最长肌作为试验材料,运用PCR直接测序法和高分辨率熔解曲线技术(HRM)对LPL基因的SNP位点进行检测,分析了试验群体的遗传效应,并与延边黄牛的肉质性状数据进行关联分析。PCR直接测序结果表明,延边黄牛LPL基因存在2个多态性位点(g.6215 A>G和g.18341 C>T),其中g.6215 A>G位点表现为2种基因型:AA与AG,优势等位基因为A;g.18341 C>T位点表现为2种基因型:CC和CT,C为优势等位基因;对文献中2个位点的检测结果表明,g.355427 T>A位点表现为2种基因型:AA与AT,A为优势等位基因;c.322 G>A位点的HRM分型结果显示并未分型。这些多态性位点全部呈中度多态(0.25<PIC<0.5),并处于Hardy-Weinberg平衡状态。HRM分型结果显示,这3个SNPs位点与延边黄牛肉质性状存在显著相关:g.6215 A>G位点与延边黄牛胴体重及脂肪、蛋白、水分含量有显著关联,表现为AG基因型个体胴体重、脂肪含量显著高于AA基因型个体(P<0.05),AA基因型个体蛋白及水分含量显著高于AG基因型个体(P<0.05);g.18341 C>T位点与延边黄牛宰前活重、胴体重及背膘厚有显著关联,表现为CT基因型个体这些性状均显著高于CC基因型个体(P<0.05);g.355427 T>A位点AT基因型个体宰前活重、背膘厚和脂肪含量均高于AA基因型个体(P<0.05)。综上,LPL基因g.6215 A>G、g.18341 C>T和g.355427 T>A位点对延边黄牛的肉质有显著影响,LPL基因可以作为延边黄牛品种选育改良工作的优势候选基因和有效分子标记。  相似文献   

2.
本研究旨在探索延边黄牛肌球蛋白重链3(MYH3)和肌球蛋白重链8(MYH8)基因多态性及其与生长性状的关联性,应用DNA直接测序法和高分辨率熔解曲线分型技术对120头24月龄延边黄牛MYH3、MYH8基因的遗传变异进行分析,并结合延边黄牛生长性状数据进行了关联分析。结果显示,在MYH3基因的29602748位点检测到一处T>G突变,包含2个等位基因:T和G,存在3种基因型:TG、TT和GG;在MYH8基因的29406042位点检测到一处C>T突变,包含2个等位基因:C和T,存在3种基因型:CT、CC和TT。关联分析显示,MYH3基因29602748位点T>G突变显著影响24月龄延边黄牛十字部高和腰角宽,表现为GG基因型十字部高显著高于TT基因型(P<0.05),腰角宽显著高于TT和TG基因型(P<0.05)。MYH8基因29406042位点C>T突变显著影响24月龄延边黄牛体重和胸围,表现为CT和TT基因型体重显著高于CC基因型(P<0.05);TT基因型胸围显著高于CC基因型(P<0.05)。本研究结果表明,MYH3、MYH8基因多态性与延边黄牛的部分生长性状相关,可作为现代肉牛育种中分子标记辅助选择的候选基因。  相似文献   

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本研究旨在探索延边黄牛硬脂酰辅酶A去饱和酶1(stearoy-CoA desaturase 1,SCD1)基因多态性及其与经济性状的相关性。以157头36月龄健康无病、体重相近的延边黄牛为研究对象,颈静脉采血提取基因组DNA,根据GenBank中牛SCD1基因序列(登录号:AC_000181.1),利用Oligo 6.0软件设计特异性引物,应用PCR扩增SCD1全长基因后直接测序,分析其多态位点,并应用生物信息学软件分析其蛋白结构;屠宰前测定活体重、胴体重、屠宰率、背膘厚等胴体性状,屠宰后采集背最长肌,测定眼肌面积、蒸煮损失、滴水损失、嫩度、系水力、pH、脂肪酸含量等肉质性状,并通过一般线性模型分析方法对延边黄牛SCD1基因SNPs与肉质性状的相关性进行了分析。结果发现,延边黄牛SCD1基因846 bp处存在A→G突变(g846 A→G)、1 022 bp处存在C→T突变(g1022 C→T),其中g1022 C→T突变导致丙氨酸(A)突变为缬氨酸(V),但未引起三级结构改变。关联分析结果表明,g846 A→G多态位点与延边黄牛宰前活重、胴体重、滴水损失及硬脂酸、亚油酸含量存在显著相关(P<0.05);g1022 C→T多态位点与延边黄牛宰前活重、胴体重及硬脂酸含量存在显著相关(P<0.05),说明上述2个位点与延边黄牛相关肉质性状存在显著相关,该突变位点可作为潜在的分子标记。  相似文献   

4.
试验旨在探究延边黄牛解耦联蛋白2(uncoupling protein 2,UCP2)和解耦联蛋白3(uncoupling protein 3,UCP3)基因多态性及其与生长性状的相关性。以120头24月龄的延边黄牛为试验对象,提取血液基因组DNA后构建混池,运用DNA测序法对UCP2、UCP3基因进行测序分析,应用高分辨率熔解曲线分型技术对延边黄牛UCP2、UCP3基因进行分型检测,并结合生长性状数据进行关联分析。结果显示,在24月龄延边黄牛群体中,UCP2基因53 412 568 bp处存在C>G突变(g.53412568 C>G),产生2个等位基因:C和G,形成3种基因型:CG (0.358)、GG (0.125)和CC (0.516);UCP3基因53 443 536 bp处存在C>T突变(g.53443536 C>T),产生2个等位基因:C和T,形成3种基因型:CT (0.383)、CC (0.450)和TT (0.167)。关联分析显示,UCP2基因g.53412568 C>G位点CC基因型体重、腰角宽均显著高于GG基因型,CG基因型个体背高显著高于GG基因型(P<0.05);UCP3基因g.53443536 C>T位点CC基因型胸围显著高于TT基因型(P<0.05)。以上结果表明,UCP2和UCP3基因在延边黄牛生长发育过程中起到一定作用,可为延边黄牛现代分子育种后续研究提供参考。  相似文献   

5.
【目的】 研究中国草原红牛丙酮酸脱氢酶激酶4(pyruvate dehydrogenase kinase 4,PDK4)基因多态性与肉质性状的关系。【方法】 挑选120头中国草原红牛为研究对象,采用Sanger测序法检测PDK4基因第1~11外显子的单核苷酸多态性(SNP)位点,分析SNP位点的基因型频率、基因频率及群体遗传参数等。利用SPSS 21.0软件对中国草原红牛PDK4基因SNP位点多态性与肉质性状(熟肉率、肉嫩度、失水率、pH、滴水损失、肌内脂肪含量、初水分含量、蛋白质含量)进行关联分析。【结果】 在中国草原红牛PDK4基因外显子8和外显子11上共检测到3个SNPs;PDK4基因第8外显子57 bp处存在1个SNP位点(G57C),且引起编码氨基酸的改变,存在GG、GC和CC 3种基因型;PDK4基因第11外显子在330和389 bp处存在2个SNPs位点(G330T和C389T),在G330T位点上存在GG、GT和TT 3种基因型;在C389T位点上存在CC、CT和TT 3种基因型。卡方适合性检验结果显示,中国草原红牛第8外显子G57C位点偏离Hardy-Weinberg平衡状态(P<0.05),第11外显子的G330T和C398T符合Hardy-Weinberg平衡状态(P>0.05);群体遗传参数分析发现,第8外显子G57C突变位点属于低度多态性位点(PIC<0.25),等位基因数为1.1429,表明其在中国草原红牛中的变异较小;第11外显子G330T和C398T属于中度多态性位点(0.25<PIC<0.5),等位基因数分别为1.6431和1.6447,说明该遗传标记能够提供遗传信息。关联分析结果表明,PDK4基因第8外显子中G57C位点GG和CC基因型个体肌内脂肪含量显著高于GC基因型(P<0.05);第11外显子G330T位点GG基因型滴水损失和初水分量显著高于GT基因型(P<0.05);GG基因型肉嫩度显著高于TT基因型(P<0.05);GT基因型肌内脂肪含量显著高于TT基因型(P<0.05),C389T处CT基因型失水率显著低于TT基因型(P<0.05)。【结论】 PDK4基因多态性与中国草原红牛肉质性状相关,可作为肉质性状的候选基因。  相似文献   

6.
为探索胰高血糖素样肽-2受体(glucagon-like peptide-2 receptor,GLP2R)基因多态性与绵羊肉质性状的相关性,试验选用68只南非肉用美利奴羊×东北细毛羊和102只杜泊羊×小尾寒羊的杂交后代为研究对象,采用Sanger测序方法寻找GLP2R基因外显子11序列的突变位点,根据测序结果分析该突变位点的基因型频率和基因频率及卡方适合性检验、纯合度(Ho)、杂合度(He)和多态信息含量(PIC)。结果显示,绵羊GLR2R基因外显子11处存在C/T突变,存在3种基因型:CC、TC和TT,2种等位基因:C和T,其中在南非肉用美利奴羊×东北细毛羊群体中,TC基因型为优势基因型,在杜泊羊×小尾寒羊群体中,CC基因型为优势基因型;2个群体中C均为优势等位基因。卡方适合性检验结果显示,2个群体的C/T位点均处于Hardy-Weinberg平衡状态(P>0.05);C/T突变位点在群体内变异较小且处于中度多态(0.25 < PIC < 0.5),有一定遗传学意义。不同基因型肉质性状差异结果显示,南非肉用美利奴羊×东北细毛羊TC基因型剪切力显著高于CC和TT基因型,TT基因型失水率显著高于CC和TC基因型(P<0.05);杜泊羊×小尾寒羊CC基因型剪切力显著高于TC和TT基因型,TT基因型失水率显著高于CC和TC基因型(P<0.05)。本研究在GLP2R基因外显子处发现C/T突变,可能是影响肉质性状的潜在位点,是否能够作为遗传标记还需要进一步探索。  相似文献   

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为探究寡腺苷酸合成酶1(oligoadenylate synthase 1,OAS1)基因多态性与松辽黑猪繁殖性状的关联性,试验选取130头松辽黑猪母猪为研究对象,利用Sanger直接测序法测序查找OAS1基因外显子1~8的SNP位点,使用SPSS 19.0软件分析OAS1基因SNP位点与松辽黑猪繁殖性状的关联性。结果显示,在松辽黑猪OAS1基因外显子2、3和6上共检测到33个突变位点;其中在外显子2的110 bp处存在1个SNP位点(G110C),存在3种基因型:GG、GC和CC;在外显子3的176 bp处存在1个SNP位点(C176T),存在3种基因型:CC、CT和TT;在外显子6的145 bp处存在1个SNP位点(C145T),存在3种基因型:CC、CA和AA;在166 bp处存在1个SNP位点(G166A),存在3种基因型:GG、GA和AA;在206 bp处存在1个SNP位点(A206G),存在3种基因型:AA、AG和GG。卡方适合性检验结果显示,松辽黑猪OAS1基因G110C突变位点符合Hardy-Weinberg平衡状态,C176T、C145A、G166A和G206A位点均偏离Hardy-Weinberg平衡状态。群体遗传参数分析结果显示,各SNPs位点遗传杂合度均位于中等水平,为中度多态(0.25<PIC<0.5)。关联分析结果发现,G110C位点GC基因型个体总产仔数、产活仔数和断奶仔猪数均显著高于GG基因型个体(P<0.05);C176T位点CT基因型个体断奶仔猪数显著高于CC基因型个体(P<0.05);C145T位点CC基因型个体总产仔数和产活仔数均显著高于AA基因型个体(P<0.05);G166A位点GA基因型个体断奶仔猪数显著高于GG基因型个体(P<0.05);A206G位点GG基因型个体总产仔数和产活仔数显著高于AA基因型个体(P<0.05)。结果表明,OAS1基因外显子区存在突变位点,对松辽黑猪部分繁殖性状有显著性影响。  相似文献   

10.
选取105头延边黄牛为研究对象,利用克隆测序的方法寻找延边黄牛甲状腺球蛋白(thyroglobulin,TG)基因多态性,采用PCR-RLFP方法进行多态性检测,并与胴体和肉质性状进行了关联分析。结果表明,在TG基因第48外显子上发现C218T和A430G2个突变位点,其中C218T位点的不同基因型与大理石花纹存在显著相关,CC基因型个体大理石花纹等级显著高于CT型个体(P<0.05)。A430G位点的不同基因型与宰前活重和眼肌面积存在显著相关,GG基因型个体的宰前活重和眼肌面积显著高于AA型和AG型个体(P<0.05)。其他性状在2个位点的不同基因型间差异不显著。因此,C218T和A430G位点可能是影响延边黄牛胴体和肉质性状的分子标记。  相似文献   

11.
This experiment was conducted to explore the association between perilipin (PLIN) gene and carcass and meat quality traits in Yanbian Yellow cattle.In this study,70 30-month-old healthy Yanbian Yellow cattle were used as experimental materials,the blood of jugular vein and its 12-13 intercostal longissimus muscle dorsi were collected to extract DNA samples of Yanbian Yellow cattle,and determine the carcass and meat quality characteristics.The SNP of PLIN gene was detected by direct sequencing,and the correlation analysis was conducted based on the carcass and meat quality data of Yanbian Yellow cattle and the genetic polymorphism of PLIN gene.The results showed that there were 2 SNPs of PLIN gene exon 3 in Yanbian Yellow cattle:g.103 C→T and g.156 T→C,both of them were missense mutations.g.103 C→T contained two genotypes:CC and CT,CC genotype was the dominant genotype,the genotype frequency was 0.81,C was the dominant allele,the gene frequency was 0.90.The intramuscular fat,pre slaughter weight,carcass weight and back fat thickness of CT genotype was significantly higher than those of CC genotype(P<0.05).g.156 T→C contained two genotypes:TT and TC,TT genotype was the dominant genotype,the genotype frequency was 0.83,T was the dominant allele,the gene frequency was 0.92.The pre slaughter weight,carcass weight and back fat thickness of TC genotype were significantly higher than those of TT genotype (P<0.05).Chi square test showed that the two SNPs of PLIN gene in Yanbian Yellow cattle reached Hardy-Weinberg equilibrium (P>0.05),and belonged to low polymorphism (PIC<0.25).In conclusion,g.103 C→T and g.156 T→C of PLIN gene had potential effect on carcass and meat quality traits in Yanbian Yellow cattle,and could be used as a candidate gene and potential molecular marker of Yanbian Yellow cattle.  相似文献   

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The genetic polymorphisms in PLIN gene were detected by PCR-RFLP method in four Chinese local chickens including Jining Bairi chicken,Laiwu Black chicken et al.,and one breeding strain.The correlations between the SNP and the carcass and fatness traits were analyzed.As a result,a novel G→A mutation at 2 467 bp in PLIN gene was identified in the five populations.Three genotypes (A1A1,A1A2 and A2A2) were detected,and allele A1 was predominant in all the five experimental populations.The statistical analysis showed that the 2 467 bp polymorphism locus was significant association with some carcass and fatness traits (P<0.05).The living body weight,carcass weight,eviscerated weight,abdominal fat weight and percentage of abdominal fat of A1A1 genotype was higher than A2A2 genotype in chickens (P<0.05).The breast intramuscular fat of A1A2 genotype was higher than that of A1A1 and A2A2 genotypes in chickens (P<0.05).The results showed that PLIN gene had effect on carcass and fatness traits in chickens.  相似文献   

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试验采用PCR-RFLP方法检测脂滴包被蛋白(perilipin,PLIN)基因内含子6在济宁百日鸡、莱芜黑鸡等4个地方鸡种和1个培育品系中的遗传多态性,分析了多态位点不同基因型与鸡胴体及脂肪性状的相关性。结果发现,在5个供试群体中检测到1个多态位点,测序证实为新发现的鸡PLIN基因2 467 bp处G→A突变,该突变位点在供试群体中检测到3种基因型:A1A1、A1A2和A2A2,2个等位基因:A1和A2。等位基因A1在所有供试群体中均表现为优势等位基因。关联分析结果表明,PLIN基因2 467 bp位点对鸡部分胴体性状和脂肪性状影响显著(P<0.05)。多重比较结果表明,A1A1基因型个体活体重、屠体重、全净膛重、腹脂重和腹脂率均显著高于A2A2基因型个体(P<0.05)。A1A2基因型个体的胸肌肌内脂肪含量显著高于A1A1和A2A2基因型个体(P<0.05)。研究结果表明,PLIN基因对鸡胴体及脂肪性状有一定影响。  相似文献   

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The purpose of this study was to explore the polymorphism of exon 3 of fibroblast growth factor 14 (FGF14) gene and its effect on growth traits in Yanbian Yellow cattle.The third exon of FGF14 gene was sequenced and analyzed by DNA direct sequencing method,and the genotyping of FGF14 gene was detected by HRM typing technique with high resolution melting curve,so as to explore the relationship between different genotypes of FGF14 gene and growth traits of 16 and 24 months of age in Yanbian Yellow cattle.The results showed that one A>G mutation was detected at position 631 947 bp of FGF14 gene,two alleles of A and G,and three genotypes of AA,AG,and GG.The results of χ2 test showed that the distribution of genotype frequency and allele frequency of FGF14 gene in two Yanbian Yellow cattle populations of 16 and 24 months of age conformed to Hardy-Weinberg equilibrium (P>0.05).Polymorphic information content (PIC) analysis results showed that FGF14 gene was moderately polymorphic in both groups (0.25 < PIC < 0.5).The results of association analysis with growth traits showed that the different genotypes of FGF14 gene had significant influence on the traits of height at back and rump length of Yanbian Yellow cattle at 16 months of age (P<0.05),and had significant influence on the traits of body height,body weight and height at hip cross of Yanbian Yellow cattle at 24 months of age (P<0.05).In conclusion,it was speculated that FGF14 gene had a certain influence on the growth and development of Yanbian Yellow cattle,and provided reference for the subsequent modern molecular breeding and breeding of meat traits in Yanbian Yellow cattle.  相似文献   

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