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1.
本文概述了微卫星DNA进行亲子鉴定的基本原理与方法,将其用于亲子鉴定的优点以及研究进展,最后对未来的应用进行了展望。  相似文献   
2.
微卫星分子标记分析四川绵羊群体遗传多样性   总被引:2,自引:0,他引:2  
为探究四川省6个绵羊群体的遗传多样性,实验应用12个微卫星标记计算基因频率、有效等位基因数、杂合度及多态信息含量来评估群体内遗传多样度,通过遗传距离聚类图、群体结构推测图、主成分分析及群体间分子方差分析来评估群体间遗传关系。结果表明:6个绵羊群体在12个微卫星位点的平均有效等位基因数为3.006~3.176,平均多态信息含量变化为0.559~0.612,平均期望遗传杂合度为0.610~0.670;6个绵羊群体间的遗传关系与地理分布情况及育成史实不完全一致,但遗传距离聚类图、群体结构推测图和主成分分析结果均显示,6个绵羊群体中布拖黑绵羊类群与贾洛绵羊类群遗传关系更近;6个绵羊群体间方差组分F统计量结果为0.112 39,处于中度分化水平。  相似文献   
3.
谢兆辉 《安徽农业科学》2007,35(11):3163-3164,3166
DB102为一田间发现的三倍体水稻,利用它做母本与二倍体水稻中作59杂交,得到一个早世代(F2)稳定群体,通过微卫星分析发现,该群体中有一些微卫星位点发生了杂合性丧失,且至少6条染色体上发生微卫星位点杂合性丧失(loss of heterzygoisity LOH)可能有DNA序列变化。而微卫星位点的杂合性丧失又可能与该杂交组合早世代稳定有关。  相似文献   
4.
5.
牙鲆养殖群体遗传变异的微卫星标记研究   总被引:9,自引:0,他引:9  
应用10对微卫星引物对中国牙鲆一个养殖群体的30个个体进行了群体遗传结构分析。结果显示,微卫星标记比其他标记具有更高的多态性,10个微卫星座位的等位基因数在4~10之间,有效等位基因数在2.23~5.82之间,平均等位基因数为7.6,群体平均杂合度为0.6960,Hardy-weinberg遗传偏离指数的平均值为0.1774。  相似文献   
6.
Microsatellites have become the preferred molecular markers for strain selection and genetic breeding in fish. In this study a total of 105 microsatellites were isolated and identified in gibel carp (Carassius auratus gibelio) by microsatellite sequence searches in GenBank and other databases and by screening and sequencing of positive clones from the genomic library enriched for AG and GATA repeats. Moreover, nineteen microsatellites were randomly selected to design locus-specific primer pairs, and these were successfully used to identify and discriminate different cultured strains of gibel carp including strains A, D, L, and F. Three different types of microsatellite pattern were distinguished by the number and length of fragments amplified from the 19 primer pairs, and some microsatellite primer pairs were found to produce different microsatellite patterns among strains and strain-specific fragments. In addition, some duplicated alleles were also detected in two microsatellite patterns. Therefore, the current study provides direct molecular markers to discriminate among different cultured strains for selective breeding and aquaculture practice of gibel carp.  相似文献   
7.
牙鲆3个养殖群体遗传结构的微卫星分析   总被引:5,自引:2,他引:5       下载免费PDF全文
采用微卫星标记分析技术,用5个多态性的微卫星标记对来自3个不同国家(中国、日本和韩国)的牙鲆养殖群体进行了遗传多样性研究。研究结果表明,3个牙鲆群体平均等位基因在4.8~5.6之间,平均观测杂合度(H0)在0.3917~0.5643之间,平均期望杂合度(HE)在0.5981~0.6264之间。有多个位点在不同的群体中偏离哈代-温伯格平衡。遗传距离分析表明,中国群体与日本群体遗传距离最近,韩国群体与日本群体遗传距离最远。分子方差分析(AMOVA)表明,群体内遗传变异与群体间遗传变异分别占总遗传变异的92.44%和7.56%,固定系数(R)为0.0752(P〈0.001),表明牙鲆3个养殖群体遗传分化显著。  相似文献   
8.
人工控制自然交尾条件下中国对虾父本的微卫星识别   总被引:6,自引:0,他引:6  
人工控制自然交尾条件下,在保持中国对虾雌、雄5∶1的交配比率下,获得了两尾交尾并产生子代的雌虾,同时有4个疑似父本需要识别.利用3个微卫星引物及其组成的三重PCR技术对4个疑似父本进行了鉴别,准确的找到了相应的与雌虾交尾的雄虾.这为建立半同胞家系提供了一种新的技术和思路.  相似文献   
9.
‘San Marzano’ (SM) is one of the most widely known tomato (Solanum lycopersicum L.) cultivars, and is a classic example of a local variety with a premium value. Unfortunately, the original cultivated form is underrepresented in the Protected Denomination of Origin (PDO) area because of the incidence of contaminant and phenotypically similar genotypes. Our aim was to examine the ability of three DNA marker systems (minisatellite, cleaved amplified polymorphic sequence (CAPS) and simple sequence repeat (SSR)) to reveal the genetic diversity of tomato accessions that were, based on a morphological analysis, very similar. The data indicate that both minisatellites and SSRs can be used to genetically distinguish the analysed materials. Furthermore, these two marker systems depict relationships consistent with the hierarchal pattern obtained by the morphological data. As locally cultivated tomato accessions are often characterised by some degree of genetic variability, our results will be valuable in facilitating the purification, management and breeding of tomato germplasms. The differences between the marker systems employed are also discussed in relation to their usefulness in the agro-food chain.  相似文献   
10.
Eight polymorphic simple sequence repeat (SSR) markers located in the G1 linkage group of apricot (Prunus armeniaca L.) were previously developed and evaluated in a small set of cultivars. Those primers were used for studying variability in 77 apricot cultivars belonging to five different geographical groups, such as Chinese, Asian (Irano-Caucasian and Central Asian), North American, Mediterranean and Western European as well as Middle European cultivars. Six of the markers were polymorphic and revealed a total of 71 alleles ranging from 5 (aprigms11) to 20 (aprigms1) alleles per locus with a mean value of 11.83 alleles per locus. In conclusion, the SSR loci located in the G1 linkage group show a level of polymorphism which is similar to loci dispersed throughout the entire genome. The total number of alleles and the number of unique alleles were the highest in Chinese apricots and the lowest in Middle European cultivars. Heterozygosity also showed a decrease from Asia and China to Middle Europe. No association could have been observed between any SSR markers tested and plum pox virus (PPV) resistant phenotype of cultivars. PPV resistant cultivars did not form a separate clade on the dendrogram obtained by UPGMA cluster analysis. Middle European and Chinese cultivars formed separate clusters while other genotypes formed smaller multiple sub-groups or scattered among different clusters. Our results support previous hypotheses on the origin of PPV resistance in North American apricots. The allele data was also presented in a form that allowed the easy observation of allele frequencies in each geographical group at each locus. Using this data field, differences and similarities between cultivar groups can be easily assessed. The analysis demonstrated the links between the North American and Mediterranean apricot germplasm and confirmed that the Chinese and Eastern European cultivars are distantly related.  相似文献   
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