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1.
Rh系统单倍型在中国人群中的分布   总被引:1,自引:0,他引:1  
贾旭明  王沥  郝露萍  金锋 《遗传学报》2001,28(5):385-397
对中国已发表的125个人群Rh血型系统表型分布频率数据进行了收集和整理。用累积计算法(Counting method)重新计算单倍型频率,通过各单倍型的分布差异分析中国不同地区不同种族、人群的遗传差异,分组比较了不同地区汉族和少数民族人群的基因多样度和基因分化度,结果表明南方少数民族和北方少数民族民族亚群体基因多样度有明显差异,用不同方法计算中小组遗传距离并进行聚类分析。最后,计算了除维吾尔族和哈萨克族外的68个人群间的遗传距离并聚类比较,结果表明Rh基因单倍型的分布与地理分布基本相符。  相似文献   

2.
翁自力  杜若甫 《遗传》1990,12(1):38-38
分析了我国十二个民族的红细胞血型座位上的杂合度,发现不同民族各座位的平均杂合度不同,北方民族比南方民族的高,而且以维吾尔族的最高,壮族与高山族的最低。不同座位以杂合度大小排列,ABO、ABH、Kidd、MN、Xg、Lewis、Rh(Cc)、Rh(Ee)、P、Rh(Dd)、Duffy、S、Diego、Lutberan、Kell。此外,汉族的平均杂合度略低于白种人,而与黑种人相近。  相似文献   

3.
中国人群遗传结构分析   总被引:1,自引:0,他引:1  
本文根据红细胞血型基因频率,用Harpending和Jenkins(1973)方法计算了中国22个人群间的遗传距离,同时在国内首次运用主坐标分析及其排序方法展示了中华民族的遗传结构,反映出中国东西人群与南北人群间的基因流。  相似文献   

4.
我国汉族人群的乙二醛酶Ⅰ遗传多态性   总被引:1,自引:0,他引:1  
用琼脂糖平板凝胶电泳技术分析了我国六个城市的汉族共1238人的红细胞乙二醛酶I的遗传多态性。每个汉族人群的受检人数和GLO1*1基因频率分别为:郑州200人(0.1023),哈尔滨195人(0.1103),呼和浩特210人(0.1259),贵阳204人(0.1373),兰州210人(0.1476),西安199人(0.1508)。中国不同地区汉族人群之间的GLOI基因频率分布存在显著性差异,但这种差异明显小于中国不同少数民族之间的差异。  相似文献   

5.
利用结构基因座和微卫星标记分析了中国蒙系绵羊4个品种间的基因流动情况。结果显示, 由结构基因座得出的遗传分化系数在0.0164 ~ 0.0455之间, 由微卫星位点得出的遗传分化系数在0.0107 ~ 0.0239之间, 说明遗传变异绝大部分存在于品种内, 蒙系绵羊品种间的遗传分化水平很低。结构基因座(Nm = 7.971)和微卫星位点(Nm = 15.732)都反映出品种间的基因流通畅。品种间的遗传差异与地理距离之间无直接相关关系。初步推断我国蒙系绵羊品种间的遗传分化主要是自然选择(生境异质性)作用的结果。  相似文献   

6.
新疆桑属植物栽培居群的遗传多样性研究   总被引:3,自引:2,他引:1  
应用RAPD分子标记对新疆不同地区栽培的桑属植物2种3个分类群共11个居群进行了遗传多样性研究。结果表明,新疆桑属栽培植物中虽然存在较为丰富的遗传多样性,多态位点比率(PPB)为87.39%,Shannon多样性指数为0.3997,但在栽培居群内的遗传变异水平相对较低;在不同居群间遗传变异水平仔住很人差异,各居群的多态位点比率(PPB)为4.5%至45.95%,Shannon多样性指数为0.0312至0.2339;白桑(Morus alba L.)及其变种鞑靼桑(Morus alba L.var.tatarica)居群内的遗传变异水平远高于黑桑种(Morus nigra)。新疆桑属植物栽培居群内较低的遗传变异水平与其采用扦插等无性繁殖方式有关。分析全部的遗传变异显示,11个栽培居群之间的基因分化系数(Gst)为0.3541,其中桑及其变种9个居群间的基因分化系数为0.4597,黑桑种2个居群问的基因分化系数为0.4728。AMOVA分析表明,在全部遗传变异中,黑桑种和白桑种2个物种之间的遗传变异占59.16%,居群间遗传变异为17.46%。遗传距离和聚类分析也表明,黑桑种和白桑种及其变种鞑靼桑之间存在很大的遗传分化。  相似文献   

7.
采用淀粉/琼脂糖电泳技术对云南省彝族、白族、傣族、哈尼族四个少数民族人群红细胞乙二醛酶I(GLO I)进行分型调查,结果:GLO1 彝族0.1163、白族0.1468、傣族0.1205、哈尼族0.2070。比较上述四个少数民族之间及其与我国汉族和其他少数民族之间,以及与国外不同人种、不同地区人群之间比较,表明GLO I基因在中华民族大群体中具有一定的分布特征;但在我国各民族之间仍然存在着程度不同的差异,而这种民族间差异却明显小于种族间差异。通过对生活在不同地域的同一民族间比较,表明GLO I基因频率的分布无显著性的地域差异。  相似文献   

8.
调查云南泸西县汉族群体17个Y-STR基因座的多态性分布, 探讨其群体遗传学及法医学应用价值。应用AmpF?STR?Yfiler荧光标记复合扩增系统扩增156名汉族无关男性个体的17个Y-STR基因座, 用ABI3100遗传分析仪进行基因检测, 计算等位基因及单倍型频率, 并结合已公开发表的国内外其他16个群体的遗传学资料, 分析各群体间的遗传距离。云南泸西汉族男性群体中, 共观察到154种单倍型, 其中152种为仅观察到1次的单倍型, 2种单倍型观察到2次, 单倍型多样性(HD)值为0.9998, 基因多样性(GD)值在0.3901(DYS437)—0.9632(DYS385a/b)。17个群体遗传距离分析提示, 国内人群云南泸西汉族与湖南汉族的遗传距离最小(0.005), 与闽南汉族的遗传距离最大(0.035); 在中国周边群体中,云南泸西汉族与新加坡华人的遗传距离最小(0.015), 与日本人和马来西亚印度人群的遗传距离最大(0.060)。结果表明, 17个Y-STR基因座在云南泸西汉族中具有较高的遗传多态性, 适用当地的法医学应用。与其他民族群体的遗传多样性比较, 对了解各群体的起源、迁徙及相互关系有重要意义。  相似文献   

9.
不同种源马尾松ISSR遗传结构及影响因素分析   总被引:1,自引:0,他引:1  
杜明凤  丁贵杰 《广西植物》2016,36(9):1068-1075
应用ISSR分子标记技术,对来自广西、贵州3个种源的马尾松开展遗传多样性、遗传结构及遗传距离等研究。结果表明:从100条引物中筛选出12条引物,共扩增出92个条带,86条具有多态性。 POPGENE分析显示:马尾松群体水平上的Nei’ s基因多样性指数的变化范围为0.1824~0.2065,Shannon遗传多样性指数的变化范围为0.2818~0.3178,3个群体的多态性水平差异不大;物种水平上的多态性百分率为93.48%, Nei’ s基因多样性指数为0.2842,Shannon信息指数为0.4381;表明马尾松在物种水平上具有较高水平的遗传多样性。遗传结构分析显示:马尾松的基因分化系数( Gst)为0.3153,表明遗传变异主要来源于群体内;基因流Nm为1.0853,表明不同群体间存在一定的基因流动。 AMOVA分析显示:马尾松的遗传分化指数( Fst)为0.246( P=0.001),表明群体间已出现明显的遗传分化。 UPGMA聚类和Mantel检测结果显示:每个群体内的个体均能很好地首先聚集为一个分支,群体间的遗传距离与地理距离之间存在显著相关性( r=0.972, P=0.001)。这说明马尾松在裸子植物界中具有较高水平的遗传多样性,遗传变异主要分布于群体内,群体间已出现了明显的遗传分化,这种分化并非由遗传漂变引起,可能与地理生境的差异有关。  相似文献   

10.
通过分析37个SSR座位在琼海与三亚两普通野生稻(Oryza rufipogon)居群中的遗传变异, 结果表明, SSR座位在三亚普通野生稻居群中的变异高于其在琼海普通野生稻居群中的变异。根据遗传相似性和遗传距离公式得到琼海与三亚普通野生稻居群间的遗传相似性为0.6385, 遗传距离为0.4486 cM。Wright的FST检验结果表明, 这37个SSR座位在两居群之间存在着中等程度的遗传分化, FST=0.3909。此分化结果主要是由两居群间弱的基因漂移导致的(Nm=0.3895)。  相似文献   

11.
Genetic distances were calculated for Han subpopulations in different provinces, cities and au-tonomous regions and ethnic minorities in China by using gene frequency data of 38 loci, and genetic trees were con-structed. The results showed that, among both Han and ethnic minorities, there were two types, i.e. southern and northern Mongoloids, with Yangtze River as boundary. Therefore, both African origin theory and local origin theory about the modern man should answer the question; when did these two types separate and how did they develop. This paper also conclusively proved genetically that the Han subpopulations in different regions are genetically close to the lo-cal ethnic minorities, which indicates that much blood of ethnic minorities has mixed into Han, at the same time, some blood of Han also has mixed into the local ethnic minorities.  相似文献   

12.
Principal components (PCs) were calculated based on gene frequencies of 130 alleles at 38 loci in Chinese populations, and geographic PC maps were constructed. The first PC map of the Han shows the genetic difference between Southern and Northern Mongoloids, while the second PC indicates the gene flow between Caucasoid and Mongoloids. The first PC map of the Chinese ethnic minorities is similar to that of the second PC map of the Han, while their second PC map is similar to the first PC map of the Han. When calculating PC with the gene frequency data from both the Han and ethnic minorities, the first and second PC maps most resemble those of the ethnic minorities alone. The third and fourth PC maps of Chinese populations may reflect historical events that allowed the expansion of the populations in the highly civilized regions. A clear-cut boundary between Southern and Northern Mongoloids in the synthetic map of the Chinese populations was observed in the zone of the Yangtze River. We suggest that the ancestors of Southern and Northern Mongoloids had already separated before reaching Asia. The ancestors of the Southern Mongoloids may result from the initial expansion from Africa or the Middle East, via the south coast of Asia, toward Southeast Asia, and ultimately South China. Upon reaching the Yangtze River, they might even have crossed the river to occupy the nearby regions for a period of time. The ancestors of the Northern Mongoloids probably expanded from Africa via the Northern Pamirs, first went eastward, then towards the south to reach the Yangtze River. The expansion of the Northern Mongoloids toward the south of the Yangtze River happened only in the last 2 or 3 thousand years.  相似文献   

13.
Principal component analysis of gene frequencies of Chinese populations   总被引:6,自引:0,他引:6  
Principal components (PCs) were calculated based on gene frequencies of 130 alleles at 38 loci in Chinese populations, and geographic PC maps were constructed. The first PC map of the Han shows the genetic difference between Southern and Northern Mongoloids, while the second PC indicates the gene flow between Caucasoid and Mongoloids. The first PC map of the Chinese ethnic minorities is similar to that of the second PC map of the Han, while their second PC map is similar to the first PC map of the Han. When calculating PC with the gene frequency data from both the Han and ethnic minorities, the first and second PC maps most resemble those of the ethnic minorities alone. The third and fourth PC maps of Chinese populations may reflect historical events that allowed the expansion of the populations in the highly civilized regions. A clear-cut boundary between Southern and Northern Mongoloids in the synthetic map of the Chinese populations was observed in the zone of the Yangtze River. We suggest that the a  相似文献   

14.
调查了云南省施甸县木老元乡哈寨村104名“本人”的4个细胞血型系统分布。结果表明,“本人”的ABO血型系统分布特点是,基因频率p(0.3069)〉基因频率q(0.1739);在MNSs血型系统中,基因频率m(0.6538)〉基因频率n(0.3462);在P血型系统中,基因频率P1(0.1798)较低。这些均与我国南方少数民族的分布特点基本相符。与我国大部分地区一样。Rh因型系统的单倍型频率中最高的  相似文献   

15.
中国九个人群耵聍的遗传多态性   总被引:6,自引:2,他引:4  
翁自力  金锋 《人类学学报》1990,9(3):236-243
报道了九个人群的耵聍位点基因。计算表明中国各族人群在耵聍位点上的遗传分化程度非常大,固定指数F_(ST)=0.22。本文根据耵聍基因频率在我国和邻近地区的分布趋势,认为亚洲东北地区应是干型基因的起源地,目前世界上耵聍位点基因频率分布格局主要是基因扩散的结果,而非选择作用造成的。  相似文献   

16.
广西巴马瑶族红细胞血型及ABH分泌型的基因频率   总被引:5,自引:2,他引:3  
金锋  黎惠琼 《人类学学报》1993,12(2):166-174
  相似文献   

17.
Genetic demographic characteristics and immunogenetic markers (blood groups ABO, Rhesus, MNSs, P, Duffy, Kidd, and Kell) have been studied in a group of 132 Russian cosmonauts and test subjects (CTSG). Analysis of pedigrees has shown a high exogamy in the preceding generations: almost half of the subjects have mixed ethnic background. According to the results of genetic demographic analysis, a sample from the Moscow population was used as control group (CG). Comparison between the CTSG and CG has demonstrated significant differences in genotype frequencies for several blood group systems. The CTSG is characterized by a decreased proportion of rare interlocus genotypic combinations and an increased man heterozygosity. Analysis of the distributions of individual heterozygosity for loci with codominant expression of alleles has shown that highly heterozygous loci are more frequent in the CTSG. Taking into account that the CTSG has been thoroughly selected from the general population, it is concluded that heterozygosity is related to successful adaptation to a space flight.  相似文献   

18.
The genetic structure of five natural populations of common wild rice Oryza rufipogon Griff. from China, was investigated with 21 microsatellite loci and compared to estimates of genetic diversity and genetic differentiation detected by 22 allozyme loci. Microsatellite loci, as expected, have much higher levels of genetic diversity (mean values of A = 3.1, P = 73.3%, Ho = 0.358 and He = 0.345) than allozyme loci (mean values of A = 1.2, P = 12.7%, Ho = 0.020 and He = 0.030). Genetic differentiation detected by microsatellite loci ( FST = 0.468, mean I = 0.472) was higher than that for allozyme loci ( FST =0.388, mean I = 0.976). However, microsatellite markers showed less deviation from Hardy-Weinberg expectation (Wright's inbreeding coefficient FIS = -0.069) than do allozymes ( FIS = 0.337). These results suggest that microsatellite markers are powerful high-resolution tools for the accurate assessment of important parameters in population biology and conservation genetics of O. rufipogon, and offer advantages over allozyme markers.  相似文献   

19.
宁夏回族红细胞血型的研究   总被引:8,自引:3,他引:5  
调查了219名宁夏回族的 ABO、MNSs、Rhesus、P、Lewis、Duffr、Kidd Diego 、Kell、Lutheran和Xg等11种系统的红细胞血型。结果表明,宁夏回族有较高的q(0.2530)、Fy~a(0.9270)、CDe(0.6225) 和E(0.2660) 等基因或染色体频率;d(0.0557)、s(0.0594)、P_1(0.1316)和 Le~a(0.3882)等基因频率较低;而未发现K和Lu~a基因;Di~a的频率为0.0349,也处于低水平;Ns(0.4984)连锁率高于 Ms(0.4422);Xg~a基因频率为0.4432。11个系统的红细胞血型的分布和遗传距离分析均反映了宁夏回族的遗传组成具有我国北方民族的特征,尤其接近于北方汉族和蒙古族,与新疆维吾尔族则存在较大的差异。  相似文献   

20.
中国红原鸡和泰国红原鸡遗传多样性分析   总被引:9,自引:0,他引:9  
利用29个微卫星DNA标记对来自中国的红原鸡Gallus gallus spadiceus亚种和来自泰国的红原鸡Gallus gallus gallus亚种进行遗传多样性分析, 评估亚种内的遗传变异和亚种间的遗传分化, 结果表明: 共检测到168个等位基因, 每个位点的等位基因数从2到13不等, 所有位点平均的期望杂合度和PIC值分别为0.5780和0.53。中国和泰国红原鸡29个微卫星位点平均有效等位基因数分别为3.79和4.79, 平均基因杂合度为0.5379和0.6385, 两个红原鸡亚种均表现出较高的群体杂合度和丰富的遗传多样性。群体分化系数为19.4%(P<0.01), 两个红原鸡亚种间的Reynolds’遗传距离和Nm值分别为0.157和1.040。由此可见, Gallus gallus spadiceus亚种和Gallus gallus gallus亚种群体具有不同的群体遗传结构, 群体之间存在明显的遗传分化, 并不能将其认定为是同一亚种, 这也为中国家鸡具有独立的起源提供了一定的佐证。  相似文献   

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