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1.
采用等位酶电泳 技术测定了四川省凉山彝族自治州南部金阳、雷波和米易3县的苦荞麦「Fagopyrum tataricum(L.)Gaertn.」8个栽培居群的遗传多样性和分化,结合农业生物学性状进行了分析。苦荞麦居群的遗传多样性水平较高,每个位点的等位基因平均数为1.8,多态位点比率为46.6%,平均实际杂合度和预期杂合度分别为0.187和0.218,FST值为0.22,居群间存在较明显的遗传分化,  相似文献   

2.
中国苦荞麦及其近缘种的遗传多样性研究   总被引:20,自引:0,他引:20  
采用等位酶电泳技术测定了四川,云南省27个县,市的苦荞麦及其近缘种共8种1变种50个居群的遗传多样性和分化,经过7个酶系统的12个位点的检测,完成了遗传多样性,杂合性基因多样度比率,遗传距离和遗传一致度的测量,结果表明,栽培苦荞麦的遗传多样性较低,各种野荞麦的遗传多样性较高,这些种的近交繁育系数F值-0.54-0.80,为随机交配的居群,杂合体过多,营养繁殖为主的金荞麦的FST值最高,相对较多的遗传多样性存在于居群间,长柄野荞麦相对较少的遗传多样性存在于居群间,更接近于自由交配,苦荞麦及其近缘种种间的遗传一致度平均值55.30%-65.20%,与种子植物属内种间遗传一致度平均值接近,指出细柄野荞麦是与栽培的苦荞麦和荞麦的亲缘关系最近的野生种,金沙江流域是苦荞麦及其近缘种的分布中心和起源中心。  相似文献   

3.
缙云山特有植物缙云黄芩的遗传多样性研究   总被引:6,自引:3,他引:3  
采用聚丙烯酰胺凝胶垂直平板电泳检测了重庆缙云山特有植物缙云黄芩7个居群70个个体的过氧化物酶、细胞色素氧化酶、超氧化物歧化酶、淀粉酶和酯酶5种等位酶,获得20个基因位点的资料,由此分析了其遗传分化水平。结果表明:缙云黄芩遗传多样性水平较高,多态位点比率P为45.7%,平均每个多态位点的等位基因数目A为1.46,平均预期杂合度He为0.205,平均观察杂合度Ho为0.352。缙云黄芩居群间遗传分化水平较高,Gst=0.401,居群间遗传一致度和遗传距离的平均值分别为0.741和0.300。缙云黄芩遗传多样性的40.1%来源于居群之间的基因差异,59.9%属于居群内的遗传分化,因而对缙云黄芩遗传多样性的保护,应保护其较多的居群。  相似文献   

4.
利用改良FIASCO法(Fast Isolation by AFLP Sequences COntaining repeats)开发出的9对多态性SSR引物评价了薇菜(Osmunda japonica Thunb.)2个野生居群(庐山和恩施)、1个栽培居群(恩施)的遗传多样性和遗传分化水平。结果显示,9个SSR标记在3个薇菜居群中共检测到47个等位基因,每个SSR位点的平均等位基因数为5.222个,观测杂合度和期望杂合度分别为0.000~0.944和0.577~0.834,香农指数为0.962~1.860,表明各SSR位点多态性较高;各居群的平均期望杂合度均大于平均观测杂合度且种内近交系数均为正值,说明3个薇菜居群中都存在非随机交配现象;对各居群的相关遗传多样性参数分析表明,恩施野生居群遗传多样性最高,而其栽培居群最低;庐山野生居群与恩施野生居群间遗传分化系数为0.092,说明两地野生薇菜居群的遗传分化程度较低,AMOVA分析也表明遗传变异主要存在于野生居群内部。  相似文献   

5.
湖北海棠的等位酶变异和遗传多样性研究   总被引:19,自引:0,他引:19  
康明  黄宏文 《生物多样性》2002,10(4):376-385
采用超薄平板微型聚丙烯酰胺等电聚焦电泳方法对湖北海棠(Malus hupehensis)的9个野生居群和2个人工栽培居群的等位酶变异和遗传多样性进行了初步研究。通过对12个酶系统29个酶位点的检测,结果表明湖北海棠有25个酶位点的等位基因频率分布差异,,有10个居群发现稀有等位基因,并有11个(37.9%)重复位点;湖北海棠的遗传多样性水平很高,等位基因平均数A=2.127,多态位点百分率P=74.927,平均预期杂合度He=0.376;居群间的基因分化系数GST=0.224。与其他苹果属植物相比,湖北海棠具有中等丰富的遗传变异水平。居群间的基因流仅为Nm=0.866,表明遗传漂变是影响居群遗传变异和遗传结构的一个重要因素。  相似文献   

6.
花蔺和黄花蔺居群遗传结构比较研究   总被引:2,自引:0,他引:2  
采用垂直板型聚丙烯酰胺凝胶电泳技术,分别通过19和21个等位酶位点测定了花蔺3个居群和黄花蔺4个居群的遗传结构与基因流。两类群都维持较高水平的遗传多样性。花蔺居群期望杂合度、固定指数、异交率和遗传分化分别为0.144、0.174、94.0%和0.200,显示出异交繁育系统类型。黄花蔺居群期望杂合度、固定指数、异交率和遗传分化分别为0.076、0.415、58.5%和0.391。表明其异交+自交的敏  相似文献   

7.
广西石灰岩地区蜈蚣蕨居群的遗传多样性研究   总被引:6,自引:0,他引:6  
采用等位酶分析方法 ,研究了广西石灰岩地区蜈蚣蕨居群的遗传多样性 ,分析了其空间变化趋势。检测了 8个酶系统 ,1 5个酶位点。分析结果表明 :广西石灰岩地区蜈蚣蕨居群遗传多样性程度较高 ,每个位点的等位基因平均数为 1 .6 7,多态位点为 5 7.78% ,平均期望杂合度为 0 .2 4 9。蜈蚣蕨居群的遗传组成在居群间有一定的差异 ,但差异的程度并不与空间距离成正比  相似文献   

8.
极濒危植物中华水韭休宁居群的遗传结构   总被引:12,自引:0,他引:12  
采用超薄平板微型聚丙烯酰胺等电聚焦电泳方法对极濒危蕨类植物中华水韭(Isoetes sinensis)现存于安徽休宁的5个亚居群的等位酶多样性和遗传结构进行了研究。结果表明:中华水韭居群每位点平均等位基因数A=1.7,平均多态位点比率P=55.56%,平均预期杂合度He=0.201。居群中半数的多念位点表现为等位基因的“固定杂合”,5个亚居群的遗传多样性无显著差异,但都表现出严重偏离Hardy—Weinberg平衡的杂合子过昔;其遗传变异主要发生于亚居群内(94.27%),亚居群之间的遗传分化较小(Gsl=0.0573),亚居群间遗传一致度较高(I=0.960—0.999)。我们推断这可能是由于居群构建之初的奠基者效应或者原种群曾经历了较为严重的遗传瓶颈所导致;此外亚居群间便利的基因交流也可能起到了很大作用(Nm=4.5062)。取自休宁居群的75株样品由13个专一多位点基因型(18个位点等位酶基因型)组成,亚居群及个体间高度遗传均质。本文还就中华水韭休宁野生居群濒危的遗传因素进行了探讨,并提出了相应的保育策略。  相似文献   

9.
光叶珙桐的等位酶分析及其生物地理学意义   总被引:12,自引:0,他引:12  
采用水平切片淀粉凝胶电泳实验方法,对光叶珙桐(Davidia involucrata var.vilmoriniana)4个居群、78个个体、11种酶系统,21个位点进行了等位酶分析。各居群的多态位点百分比P=28.6%-47.6%,实际杂合度Ho=0.177—0.308,平均每个位点的等位基因数A=1.3-1.6。在变种水平上,多态位点百分比P=52.4%,平均每个位点的等位基因数A=1.8,实际杂合度Ho=0.272,期望杂合度Ho=0.216。基因分化系数FST=0.1928,说明光叶珙桐居群问分化小。各项指标表明光叶珙桐的遗传多样性水平较高,比原变种珙桐高,外部环境可能是影响珙桐分布格局的重要因素。昭通与宝兴的遗传多样性明显高于其他两个居群,遗传多样性保存较为完整,而处于分布区东、西两侧边缘(云南西北部和湖北五峰)遗传多样性则相对较低,推测四川盆地边缘山地是该种的遗传多样化中心,可能是在地质灾难中(如第四纪冰期),光叶珙桐真正的避难所。分布区东西两侧的居群可能是从四川盆地边缘山地扩散而来。  相似文献   

10.
普通野生稻保护和未保护居群遗传多样性的比较   总被引:2,自引:2,他引:0  
为了评价普通野生稻自然居群遗传多样性,用24对SSR引物对5个保护居群(江西东乡庵家山JXD、湖南茶陵HNC、湖南江永HNJ、广东高州大岭GDD、海南儋州HND)和3个未保护居群(广西武宣GXW、广西来宾GXL、广东高州朋山GDP),共计356个单株进行了遗传多样性分析。24个位点均表现为多态,其中18个位点表现杂合子不足,RM339位点观察杂合度最高,RM336位点预期杂合度最高。SSR分析结果表明,8个居群的遗传多样性都较高,其中5个保护居群的Ae变幅为1.780(JXD)~2.504(HNJ),肌变幅为0.397(JXD)~0.555(HNJ);3个未保护居群Ae变幅为2、153(GDP)~3.226(GXL).He变幅为0.492(GDP)~0.640(GXL)。5个保护居群与3个未保护居群之间的遗传距离较大(0.6585)。这说明虽然有些居群得到了保护,但未保护居群的保护、收集价值仍然很大。居群间遗传分化明显(Fst=0.399),居群间遗传距离最小的HNJ居群与GXL居群的相似系数也只有0.43。F一统计显示所用居群都偏离了Hardy—Weinbery平衡(Fis=0.147),其中GDD、GDP、HND居群Fis〈0,表现为杂合子过剩;居群JXD的Fis为0.109,表现轻微的杂合子缺乏;HNC、HNJ、GXW、GXL的F括〉0,Fis值变幅为0.315(GXW)~0.473(HNJ),说明这4个居群中杂合子不足,可能与这些居群自交比例高有关。  相似文献   

11.
In order to determine genetic diversity of Oryza meyeriana (Zoll. et Mor. ex Steud. ) Baill., 12 enzyme systems encoded by 17 loci were electrophoretically analyzed in 164 individuals of seven populations from Simao Prefecture, Yunnan Province, China. In comparison with those seed plants with the same life history and breeding systems, as well as the other species in the genus Oryza, the species shows rather low levels of genetic diversity (A = 1.1, P = 8.0%, Ho = 0.004 and He = 0. 015) within populations and high genetic differentiation among populations. FST was up to 0. 649, suggesting that 64. 9% of total genetic variability exists among populations. Considering high genetic differentiation among populations from a limited geographic region, most of the populations of the species are worth being protected, and therefore, great natural protection regions should theoretically be established in which a great deal of populations should be involved for developing in situ conservation management. Meanwhile  相似文献   

12.
In order to determine genetic diversity ofOryza meyeriana (Zoll. et Mor. ex Steud.) Baill., 12 enzyme systems encoded by 17 loci were electrophoretically analyzed in 164 individuals of seven populations from Simao Prefecture, Yunnan Province, China. In comparison with those seed plants with the same life history and breeding systems, as well as the other species in the genusOryza, the species shows rather low levels of genetic diversity (A = 1.1,P = 8.0 %, Ho = 0.004 and He = 0.015) within populations and high genetic differentiation among populations. Fst was up to 0. 649, suggesting that 64. 9% of total genetic variability exists among populations. Considering high genetic differentiation among populations from a limited geographic region, most of the populations of the species are worth being protected, and therefore, great natural protection regions should theoretically be established in which a great deal of populations should be involved for developingin situ conservation management. Meanwhile, some priory localities forin situ conservation ofO. meyerzana in Yunnan Province, were proposed. Project supported by the Grant of the President of the Chinese Academy of Sciences.  相似文献   

13.
Changium smyrnioides Wolff is an endangered species of the monotypic genus Changium (Umbelliferae). For a better understanding of its genetic diversity, four populations of this species were cytologically and allozymically investigated. The karyotypic analysis of C. smyrnioides indicated that the chromosomal number was stable (2n = 20) in all populations. Karyotypes of the populations were all “2A” type. Karyotypical polymorphism was shown as the chromosomal heterozygosity, and position shift of the satellite. Genetic diversity of 4 populations was analysed with starch gel electrophoresis. A low level of allozymic diversity was estimated based on 19 loci of 10 enzyme systems. Genetic diversity within 4 populations was relatively low with the proportion of polymorphic loci (P) ranging from 19% to 42.9%, average number of alleles per locus (A) from 1.2 to l. 7, mean expected heterozygosity ( He ) 0. 073 and mean observed heterozygosity ( Ho ) of O.030. In general, about 58% of genetic variation were attributed to the differentiation among populations, while the remaining 42% resided within populations. The genetic diversity of the eastern populations was higher than that of the southwestern populations. On the basis of this studies, we thought that the habitat of C. smyrnioides should be protected and most of the populations should be sampled soas to retain as much genetic diversity as possible in ex-situ conversation.  相似文献   

14.
In order to determine genetic diversity ofOryza meyeriana (Zoll. et Mor. ex Steud.) Baill., 12 enzyme systems encoded by 17 loci were electrophoretically analyzed in 164 individuals of seven populations from Simao Prefecture, Yunnan Province, China. In comparison with those seed plants with the same life history and breeding systems, as well as the other species in the genusOryza, the species shows rather low levels of genetic diversity (A = 1.1,P = 8.0 %, Ho = 0.004 and He = 0.015) within populations and high genetic differentiation among populations. Fst was up to 0. 649, suggesting that 64. 9% of total genetic variability exists among populations. Considering high genetic differentiation among populations from a limited geographic region, most of the populations of the species are worth being protected, and therefore, great natural protection regions should theoretically be established in which a great deal of populations should be involved for developingin situ conservation management. Meanwhile, some priory localities forin situ conservation ofO. meyerzana in Yunnan Province, were proposed.  相似文献   

15.
用微卫星标记分析皱纹盘鲍群体的遗传变异   总被引:22,自引:0,他引:22  
李莉  孙振兴  杨树德  常林瑞  杨立红 《遗传》2006,28(12):1549-1554
利用微卫星标记技术, 对皱纹盘鲍山东长岛和辽宁獐子岛的两个野生群体以及山东崆峒岛一个养殖群体的遗传变异进行了分析。对6个微卫星基因座的多态性进行了评估, 各基因座的多态信息含量(PIC)值均大于0.5, 适合对鲍群体遗传结构的分析。结果表明, 这6个基因座在3个皱纹盘鲍群体中共获得57个等位基因, 等位基因数(A)平均为9.50, 有效等位基因数(Ne)平均为5.8572, 平均杂合度观测值(Ho)和期望值(He)分别为0.6925和0.7966; 两个野生群体的杂合度观测值(Ho)和期望值(He)均高于养殖群体。上述结果为保护和利用皱纹盘鲍的遗传多样性提供了依据。  相似文献   

16.
基于微卫星的中国红火蚁种群遗传结构的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
[背景]自入侵中国之后,红火蚁已给农林业、健康卫生、生态环境等造成了危害。红火蚁在中国的入侵、扩散路径及方式等仍然是待解决的问题。[方法]利用微卫星分子标记,对来自国内14个地区和国外1个地区共15个红火蚁地理种群的遗传多样性水平及种群遗传结构进行了研究。[结果]应用7对微卫星引物共检测到28个等位基因,15个红火蚁种群在各微卫星位点的基因型频率均符合Hardy-Weinberg平衡。各种群的平均表观杂合度HO、预期杂合度HE、Shannon信息指数Ⅰ、基因多样性指数Nei's和多态位点百分率P分别为0.2848、0.2708、0.3174、0.2629和43.63%,研究结果表明这15个红火蚁种群具有比较丰富的遗传多样性。种群间平均分化系数FST为0.4258,说明有42.58%的变异来源于种群间,表明红火蚁各种群之间有较高程度的分化,且遗传分化可能是由地理隔离和基因流障碍(Nem=0.7442)共同引起。遗传距离D显示,河源种群与其他种群间的遗传距离均相对高于其他各种群间的遗传距离,表明河源种群与其他地理种群之间存在较大的遗传差异,可能是较为原始的类型。[结论与意义]短距离的种群主要通过自然扩散方式传播,地理距离与亲缘关系有一定的相关性;长距离的种群主要依靠人为传播,因此地理距离与遗传距离不成正比。对于长距离的入侵事件,监控与检疫是关键的预防措施。  相似文献   

17.
蜡梅种质资源遗传多样性的ISSR分析   总被引:3,自引:0,他引:3  
赵冰  张启翔 《植物研究》2008,28(3):315-320
利用ISSR分子标记技术,对蜡梅种质资源7个野生种群和2个栽培种群的遗传多样性进行了研究。用11条引物,共扩增出124条谱带,其中110条多态带,多态位点占88.70%。用POPEGEN1.31版软件对数据进行分析,结果显示:种群总的Nei’s基因多样性指数为0.272 6,Shannon信息多态性指数为0.411 7,蜡梅总的遗传多样性水平较高。蜡梅不同种群遗传多样性水平差异较大,种群多态位点百分率在52.94%~90.00%之间,Nei’s基因多样性指数为0.143 4~0.378 2,Shannon信息多态性指数为0.232 2~0.546 6。神农架种群(SN)和保康种群(BK)的遗传多样性水平较高。种群间的基因分化系数为0.353 6,种群内的遗传变异大于种群间的遗传变异。用NTSYS2.01版软件对样品进行UPGMA聚类分析,结果9个种群并没有按地理距离进行聚类。种群间的地理距离和遗传距离之间没有显著的相关性(r=0.437 1,P=0.921 3)。  相似文献   

18.
In order to determine the genetic diversity and genetic structure of populations in common wild rice Oryza rufipogon, an endangered species, allozyme diversity was analyzed using 22 loci in 607 individuals of 21 natural populations from the Guangxi, Guangdong, Hainan, Yunnan, Hunan, Jiangxi and Fujian provinces in China. The populations studied showed a moderate allozyme variability (A=1.33, P=22.7%, Ho=0.033 and He=0.068), which was relatively high for the genus Oryza. The levels of genetic diversity for Guangxi and Guangdong were significantly higher than those for the other regions, and thus South China appeared to be the center of genetic diversity of O. rufipogon in China. A moderate genetic differentiation (FST=0.310, I=0.964) was found among the populations studied. Interestingly, the pattern of population differentiation does not correspond to geographic distance. An estimate of the outcrossing rate (t=0.324) suggests that the species has a typical mixed-mating system. The deficit of heterozygotes (F=0.511) indicates that some inbreeding may have taken place in outcrossing asexual populations because of intra-clone outcrossing events and ”isolation by distance” as a result of human disturbance. In order to predict the long-term genetic survival of fragmented populations, further studies on gene flow among the remaining populations and the genetic effects of fragmentation are proposed. Finally, some implications for the conservation of endangered species are suggested. Received: 22 June 1999 / Accepted: 20 December 1999  相似文献   

19.
Gao L  Chen W  Jiang W  Ge S  Hong D  Wang X 《Hereditas》2000,133(1):47-53
In order to monitor genetic erosion within the northern marginal population of common wild rice Oryza rufipogon Griff. from Dongxiang, Jiangxi Province, China, allozyme diversity encoded by 22 loci was analyzed electrophoretically from all the existing subpopulations in 1980, 1985 and 1994. The sample collected from the nine large subpopulations in 1980 showed the highest levels of genetic diversity (A = 1.27, P = 18.20%, Ho = 0.042 and He = 0.049) and a slight deviation from Hardy-Weinberg expectation (F = 0.143), the sample from five moderate ones in 1985 displayed medium levels of genetic diversity (A = 1.14, P = 13.60%, Ho = 0.008 and He = 0.049) and a great deviation from Hardy-Weinberg expectation (F = 0.837), and the sample from two small ones in 1994 demonstrated the lowest levels of genetic diversity (A = 1.09, P = 9.10%, Ho = 0.000 and He = 0.043) and the largest deviation from Hardy-Weinberg expectation (F = 1.000). The results not only documented the genetic erosion stemmed from the extinction of the subpopulations, but also revealed the drastic change of the population genetic structure due to the reduction of the population. Finally, some conservation strategies for the population are proposed.  相似文献   

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