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1.
本研究利用20对微卫星引物对鳜(Siniperca chuatsi)原种群体和养殖群体进行遗传多样性分析。结果表明,在鳜原种群体中检测到多态性位点14个,养殖群体11个。在两个群体中共检测到等位基因数96个,其中原种群体检测到等位基因数53个,每个位点的等位基因数在1~7之间,平均有效等位基因数为2.7390;养殖群体检测到等位基因数43个,每个位点的等位基因数在1~6之间,平均有效等位基因数为2.1284。原种群体的平均观察杂合度0.5708,Nei氏期望杂合度0.5295,平均多态信息含量PIC0.5353;养殖群体的平均观察杂合度0.3839,Nei氏期望杂合度0.4011,平均多态信息含量PIC0.5043。因此,与养殖群体相比,鳜原种群体仍有丰富的遗传多样性。本研究可为鳜种质资源的保护、监测和遗传育种提供分子水平上的数据。  相似文献   

2.
虹鳟6个养殖群体遗传多样性的微卫星分析   总被引:12,自引:0,他引:12  
赵莹莹  朱晓琛  孙效文 《遗传》2006,28(8):956-962
利用14对微卫星分子标记对虹鳟的6个养殖群体进行遗传多样性分析。结果表明:6个群体的平均等位基因数A为 2.89~4.22,平均有效等位基因数Ne 为2.15~2.78,平均观察杂合度Ho 为0.4801~0.6786,平均期望杂合度He 为0.5052~0.6211,平均多态信息含量PIC 为0.4298~0.5762;其中渤海站群体的等位基因数最多、多态信息含量最高,有效种群最大,通过基因型的P值发现6个群体只在位点AF375034符合Hardy-Weinberg平衡,在其他位点都不同程度的偏离平衡,同时对6个群体的遗传距离进行了估算,聚类分析发现挪威群体与其他群体遗传距离最远。  相似文献   

3.
长江中上游两个鲢群体遗传变异的微卫星分析   总被引:9,自引:0,他引:9       下载免费PDF全文
王长忠  梁宏伟  邹桂伟  罗相忠  李忠  田华  呼光富 《遗传》2008,30(10):1341-1348
对长江中上游2个鲢群体使用39个微卫星标记进行了遗传多样性分析, 计算并统计了平均观测等位基因数、平均有效等位基因数、多态信息含量、遗传杂合度、Hardy-Weinberg平衡偏离指数、遗传相似系数、遗传距离等遗传参数。结果表明: 万州鲢和监利鲢群体所检测微卫星位点的平均观测等位基因数分别为6.128和4.974; 平均有效等位基因数分别为4.107和3.395; 多态位点百分率分别为100和94.87; 39个微卫星标记共有等位基因259个, 173个等位基因为两群体所共有; 多态微卫星位点的PIC在0.077~0.865之间变动,平均为0.617; 两群体所检测位点平均观测杂合度为0.834和0.775, 平均期望杂合度为0.713和0.623; 两个群体间的遗传相似系数为0.618, 群体间的遗传距离为0.482。结果显示长江中上游两个鲢群体间存在显著遗传分化, 应隶属于不同的种群。  相似文献   

4.
利用17个微卫星标记分析鳙鱼的遗传多样性   总被引:23,自引:5,他引:18  
选用本实验室克隆的17个鳙鱼微卫星分子标记分析四川泸州和江西鄱阳湖的两个种群鳙鱼的遗传多样性及种质特性,计算和统计了杂合度、多态信息含量(PIC)、有效等位基因数、等位基因频率、遗传距离、遗传相似系数、Hardy-Weinberg平衡偏离指数等方面内容。结果表明:选择使用17个微卫星标记,其中有4个为单态标记,13个为多态标记。江西和四川鳙鱼群体每个微卫星位点的平均等位基因数分别为3.325及3.882,平均有效等位基因数分别为3.531及2.676,多态位点百分率分别为82.4及70.5, 17个微卫星标记共有等位基因71个,多态微卫星位点的PIC在0.114~0.960之间变动,平均为0.417 ,两群体位点平均观测杂合度为0.385和0.452,平均期望杂合度为0.360和0.422,两个群体间的遗传相似系数为0.897,群体间的遗传距离为0.109。  相似文献   

5.
利用POPGENE软件分析48头楼来牛在16个微卫星座位上遗传信息。通过分析楼来牛群体遗传多样性信息,目的是了解楼来牛群体的现状和遗传多样性,为利用分子标记进行楼来牛的选育提供理论依据。结果显示:16个座位中,平均有效等位基因数、平均期望杂合度、平均多态信息含量分别为:2.503 7、0.555 9、0.517 25。其中,9个微卫星座位高度多态,7个微卫星座位中度多态,选取的微卫星位点适合用于遗传多样性评估。研究表明楼来牛群体遗传多样性较为丰富。  相似文献   

6.
湘江野鲤养殖群体和自然群体遗传多样性的微卫星分析   总被引:8,自引:2,他引:6  
采用微卫星技术,用17对微卫星引物对湘江野鲤养殖群体和自然群体的的遗传多样性进行分析.结果表明:有15对引物扩增出清晰的条带,其中13对引物在群体间呈现多态性;2个群体中,13对多态性引物分别扩增等位基因2~12个,共90个,其中35个等位基因为2群体共有,55个等位基因具有群体特异性,引物平均等位基因数为6.92个,等位基因频率为0.0667~0.8333;养殖群体和自然群体的平均遗传杂合度和平均多态信息含量分别为0.5688、0.5152,0.5860、0.5347;2个群体间遗传相似性指数为0.6762,遗传距离为0.3238,表明湘江野鲤养殖和自然群体遗传多样性均较为丰富,2个群体间遗传变异程度较高.  相似文献   

7.
为了阐明红色原鸡的群体遗传结构,以对其有效保护提供遗传学依据,采用33个微卫星标记对其群体中56个个体进行了PCR-聚丙烯酰胺多态性电泳检测。33个微卫星座位共检测到140个等位基因,所有座位都呈现出多态性,每个座位的等位基因数在2~8个之间,平均每个座位等位基因数4.24个,有效等位基因数3.30个。根据等位基因频率,计算出的群体表观杂合度、期望杂合度及多态信息含量分别为0.7980、0.6506和0.5948。结果表明,红色原鸡群体遗传多样性较丰富。  相似文献   

8.
为了评估不同栖息条件对中华蜜蜂(简称中蜂)种群遗传多样性的影响,本研究运用微卫星标记的方法,对皖南山区4个不同采样点120个中华蜜蜂群体的2400只工蜂样本进行了分析.结果表明: 与天然林野生中蜂群相比,单一茶树种植结构下,皖南中蜂群的等位基因数、平均期望杂合度和多态信息含量的差异均不显著;人工驯养中蜂群的等位基因数、多态信息含量差异显著,平均期望杂合度差异不显著;2006年采集的野生中蜂群与天然林野生中蜂群的等位基因数、平均期望杂合度和多态信息含量均差异显著.各种群间存在极显著的遗传分化,平均分化系数为0.32.说明皖南地区茶树单一化种植不会影响中蜂的遗传结构与资源保护.  相似文献   

9.
利用微卫星分子标记对富钟水牛群体遗传结构和保种效果进行评估,旨在掌握保种区富钟水牛目前的保种现状,为下一步制定有效的保种措施提供参考依据。结果表明:15个微卫星座位中,共检测到86个等位基因,平均等位基因NA为5.733 3;平均有效等位基因NE为2.902 9;期望杂合度、观察杂合度、多态信息含量PIC分别为0.596 4、0.487 2、0.551 9;1个座位为低度多态,3个座位为中度多态,9个座位为高度多态,这些位点可用于遗传多样性分析。  相似文献   

10.
利用30个微卫星标记分析长江中下游鲢群体的遗传多样性   总被引:15,自引:2,他引:13  
朱晓东  耿波  李娇  孙效文 《遗传》2007,29(6):705-713
摘要: 利用30对微卫星分子标记对长江中下游5个鲢群体进行了遗传多样性分析。结果表明: 在30个基因座中, 共检测到144个等位基因, 每个座位检测到的等位基因数为1~10个, 其中有25个座位具有多态性, 多态位点百分率为83.33,5个群体的平均等位基因数A为4.0/4.1, 平均有效等位基因数Ne为2.4445~2.6332, 平均观察杂合度Ho为0.3233~0.3511, 平均期望杂合度He为0.4421~0.4704, 平均多态信息含量PIC为0.4068~0.4286。对数据进行F-检验, Fst值表明群体间的遗传分化程度中等, 并对基因型进行了基于Hardy-Weinberg平衡的卡方检验, 所得P值说明5个群体均一定程度上偏离了平衡。5个群体间的遗传相似系数为0.8466~0.9146,遗传距离为0.0893~0.1665, 并根据Nei氏标准遗传距离用UPGMA方法对5个鲢群体进行亲缘关系聚类。  相似文献   

11.
德宏水牛微卫星标记分析的群体遗传变异   总被引:6,自引:0,他引:6  
德宏水牛是云南省地方水牛的优良品种之一,为了进一步阐明其群体遗传变异和遗传结构,筛选了分别位于水牛14条染色体上的15对微卫星引物,对德宏水牛81个个体进行了检测分析.共检测到62个等位基因,每个座位等位基因数目从2到6个不等,平均等位基因数为4.13,该水牛群体期望杂合度和多态信息含量分别为0.6520±0.1526和0.5863±0.1789,各座位的遗传分化系数在0~0.0919之间,平均值为0.0202.每个座位的基因流较大,平均12.1502.研究结果表明德宏水牛群体遗传多样性较丰富,亚群间的遗传分化程度低,基因流较大,且很少发生近交.  相似文献   

12.
We have isolated specific microsatellite loci from a partial genomic library of brook charr Salvelinus fontinalis. Their usefulness was investigated by measuring intra- and inter-population genetic diversity at four loci among 20 individuals from each of five lakes located 3 to 22 km apart in La Mauricie national park (Canada). These markers were moderately to highly polymorphic. A total of five, six, 16 and 18 alleles per locus were detected, and their overall expected heterozygosity was 0.53, 0.58, 0.86 and 0.87. Strong inter-population diversity was detected. Highly significant differences in allelic frequencies were found in all but two pairwise χ2 permutation tests between populations at all loci. Numerous population unique alleles were observed in all five lakes. Consequently, a highly significant component of total genetic diversity was due to interpopulation variance, as exemplified by G ST values of 0.33, 0.42, 0.47 and 0.84 for each individual locus. Altogether, the results indicated that these loci should be valuable in addressing fine scale population genetics questions in brook charr. To our knowledge, they also represent the first available microsatellites developed in the genus Salvelinus.  相似文献   

13.
目的分析比较大耳白黑眼兔(WHBE兔)封闭群与日本大耳白兔(Jw兔)、新西兰兔(NZW兔)基因组存在的微卫星结构,研究WHBE兔封闭群的微卫星多态性。方法利用21个微卫星位点,通过微卫星分子标记技术对WHBE兔封闭群、Jw兔和NZW兔进行遗传多样性检测和对比。结果根据初步结果,在21对微卫星引物中筛选出扩增产物稳定并且具有多态性的11对引物。WHBE兔封闭群在每个位点上的等位基因数为3~8个不等,11个位点的平均有效等位基因数为2.0402个,平均杂合度为0.4810;Jw兔在每个位点上的等位基因数为2~8个不等,11个位点的平均有效等位基因数为3.6077个,平均杂合度为0.5039;NZW兔在每个位点上的等位基因数为3~9个不等,11个位点的平均有效等位基因数为2.6537个,平均杂合度为0.5334。WHBE兔封闭群在11个微卫星位点上的平均多态信息含量(PIC)为0.6005,多位点累积个体识别率达到100%,多位点累积非父排除概率(CPE)在双亲信息都是未知情况下的为0.9613,而在得知任一亲本信息的情况下,CPE值高达0.9973。在11个微卫星座位中,9个位点上出现了WHBE兔封闭群特有等位基因,其中在Sat2、Sat5、Sat7、Sat12、Sat13、Sat16、S0144和INRACCDDV0003八个位点上WHBE兔封闭群的特有等位基因为一个,在sat8位点上为两个。结论WHBE兔8个位点的平均杂合度、平均有效等位基因数均比JW兔及NZW兔低,说明WHBE兔群体的基因纯合度高于其他两个品系,具有更优的遗传稳定性。9个WHBE兔特有的等位基因可作为区分WHBE兔封闭群和其它两个品系实验兔的分子标记。  相似文献   

14.
The Chinese sika deer (Cervus nippon) is a rare and vulnerable animal in China for medical use. In this study, the genetic diversity and population genetic structure of 113 Chinese sika deer from 4 populations (Linyi Farm, LF; Linyi Park, LP, Yangzhou Farm, YF; Yangzhou Zoo, YZ) were investigated with 14 microsatellite loci. Eighty-three alleles were detected at the 14 loci in all populations. The expected heterozygosity ranged from 0.257 to 0.863 and the observed heterozygosity from 0.226 to 0.821. The polymorphism information content at different loci ranged from 0.217 to 0.825. The results of the HWE (Hardy–Weinberg equilibrium) tests indicated that only four loci (CEH-5, BL42, Mber70, and CEH-2) were in HWE (P > 0.01). The mean number of alleles per population ranged from 3.21 to 5.64, observed and expected heterozygosities ranged from 0.568 to 0.685, respectively. Positive inbreeding coefficient (FIS) values were found in every population. FST values ranged from 0.101 in the LF to 0.155 in the YZ. The genetic identity ranged from 0.1236 to 0.1645. The genetic distance ranged from 0.4746 to 0.6025. The results of this study indicate moderate genetic variation and polymorphism across the loci. Appropriate breeding strategies should be designed for deer in captivity.  相似文献   

15.
Two hundred and thirty-six mitochondrial DNA nucleotide sequences were used in combination with polymorphism at four nuclear microsatellite loci to assess the amount and distribution of genetic variation within and between African savannah elephants. They were sampled from 11 localities in eastern, western and southern Africa. In the total sample, 43 haplotypes were identified and an overall nucleotide diversity of 2.0% was observed. High levels of polymorphism were also observed at the microsatellite loci both at the level of number of alleles and gene diversity. Nine to 14 alleles per locus across populations and 44 alleles in the total sample were found. The gene diversity ranged from 0.51 to 0.72 in the localities studied. An analysis of molecular variance showed significant genetic differentiation between populations within regions and also between regions. The extent of subdivision between populations at the mtDNA control region was approximately twice as high as shown by the microsatellite loci (mtDNA F(ST) = 0.59; microsatellite R(ST) = 0.31). We discuss our results in the light of Pleistocene refugia and attribute the observed pattern to population divergence in allopatry accompanied by a recent population admixture following a recent population expansion.  相似文献   

16.
利用16对分布于水稻12条染色体上的SSR引物分析78份来自南亚的香稻资源和18份广西种植的香稻的遗传多样性。结果表明:在南亚的香稻资源中,每对引物检测到的等位基因数为3~13个,平均每个位点的等位基因数为5.31个,广西的香稻资源中,每对引物检测到等位基因数2~9个,平均每个位点的等位基因数为3.44个;南亚香稻资源平均多态信息含量(PIC)为0.55,广西香稻资源平均PIC为0.41;南亚香稻资源平均基因多样性(Hs)为0.60,广西香稻资源平均Hs为0.47;说明了南亚香稻资源比广西香稻资源具有更为丰富的遗传多样性。聚类结果表明,大部分的南亚香稻资源或大部分的广西香稻资源各自聚为一类,说明大部分南亚和广西的香稻种质资源存在遗传差异性和地理远缘性。  相似文献   

17.
Lin FJ  Jiang PP  Ding P 《动物学研究》2010,31(5):461-468
In this study, we reported the population genetic analyses in the Elliot's Pheasant(Syrnaticus ellioti) using seven polymorphism microsatellite loci based on 105 individuals from 4 geographical populations. Departures from Hardy-Weinberg equilibrium were found in four geographical populations. The average number of alleles was 8.86, with a total of 62 alleles across 7 loci; observed heterozygosity (HO) was generally low and the average number was 0.504. For the seven microsatellite loci, the polymorphism information content ranged from 0.549 to 0.860, with an average number 0.712. Population bottlenecks of the four geographical populations were tested by infinite allele mutation model, step-wise mutation model and two-phase mutation model, which found that each population had experienced bottleneck effect during the recent period. Fst analysis across all geographical populations indicated that the genetic differentiaton between the Guizhou geographical population and the Hunan geographical population was highly significant (P<0.001), a finding supported by the far genetic relationship showed by the neighbor-joining tree of four geographical populations based on Nei's unbiased genetic distances. Using hierarchical analysis of molecular variance (Guizhou geographical population relative to all others pooled), we found a low level of the genetic variation among geographical populations and that between groups. However, differences among populations relative to the total sample explained most of the genetic variance (92.84%), which was significant.  相似文献   

18.
Sixteen polymorphic microsatellite (SSR) markers, developed from an SSR-enriched genomic DNA library of sesame (Sesamum indicum L.), were used to assess genetic diversity, phylogenetic relationships, and population structure among 150 sesame accessions collected from 22 countries. A total of 121 alleles were detected among the sesame accessions. The number of detected alleles varied from 2 to 18, with an average of 7.6 alleles per locus. Polymorphism information content values ranged from 0.03 to 0.79, with an average of 0.42. These values indicated an excess of heterozygous individuals at 16 loci and an excess of homozygous individuals at three loci. Of these, 32 genotype-specific alleles were identified at 11 of 16 polymorphic SSR markers. Cluster analyses were performed by accession and population, revealing a complex accession distribution pattern with mean genetic similarity coefficient of 0.45 by accession and 0.52 by population. The wide variation in genetic similarity among the accessions revealed by SSRs reflected a high level of polymorphism at the DNA level. Model-based structure analysis revealed the presence of three groups that were basically consistent with the clustering results based on genetic distance. These findings may be used to augment the sesame germplasm and to increase the effectiveness of sesame breeding.  相似文献   

19.
Twenty-one microsatellite loci were isolated from AC-enriched library of Tibetan macaque (Macaca thibetana). The number of alleles at the 21 microsatellite loci ranged from 8 to 15, with an average of 12.2 per locus. Polymorphism information content (PIC) ranged from 0.805 to 0.910 with an average of 0.873. The observed and expected heterozygosities ranged from 0.208 to 0.792 and from 0.843 to 0.938, respectively. These microsatellite loci will be useful for future studies that relate to the genetic diversity and population structure of Tibetan macaque.  相似文献   

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