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1.
应用RAPD分子标记对濒危灌木长叶红砂(Reaumuria trigyna)种群遗传多样性进行了分析.应用18条随机引物对长叶红砂5个种群的95个个体进行扩增,检测到118个位点,其中多态位点105个.结果表明:长叶红砂种群的多态位点比率(P)为88.98%,显示出长叶红砂种群存在较高的遗传多样性.Shannon多样性指数(0.4966)、Nei基因多样性指数(0.3303)和基因分化系数(Gst=0.1425)的分析结果显示,长叶红砂种群遗传变异大多存在于种群内,种群间的遗传分化占14.25%.聚类分析表明,长叶红砂种群遗传距离与地理距离之间无直接相关关系.遗传多样性水平与物种特性和所处不同群落有关,濒危植物并不一定表现为遗传变异水平的降低.  相似文献   

2.
用ISSR分子标记对内蒙古地区刺叶柄棘豆(Oxytorpis aciphylla Ledeb.) 5个地理种群进行了种群遗传多样性分析。结果表明:刺叶柄棘豆种群具有较高的遗传多样性,11个ISSR引物扩增出215条带,总的多态位点百分率为98.14%,Shannon多样性指数I=0.2108,Nei基因多样性指数 H=0.341 6,种内总基因多样性(Ht) 为0.2108,种群内基因多样性(Hs)为0.160 4, 大部分遗传变异(76.11%)的遗传变异存在于种群内, 23.89%的遗传变异存在于种群间。遗传分化系数(Gst)为0.238 9,基因流(Nm)为1.592 9。5个居群间已有遗传分化趋势,遗传漂变不会引起遗传分化。UPGMA遗传距离聚类结果表明, 5个地理种群中,植被类型为荒漠草原的4个种群之间遗传距离较近,与1个荒漠种群距离较远。  相似文献   

3.
利用ISSR分子标记方法对分布在浙江省境内的7个短柄枹种群的遗传多样性和遗传分化进行了分析。从100个引物中筛选出12个用于正式扩增的ISSR引物,在7个种群140个个体中共检测到132个位点,其中多态位点118个,多态位点百分率(P)为89.39%,各种群P平均为58.87%。短柄枹总的Shannon信息指数(I)为0.493 3、Nei指数(h)为0.334 7,各种群I平均为0.336 2、h平均为0.229 1。PIh均显示云峰种群最高,天台山种群最低。AMOVA分子差异分析表明,67.97%的变异存在于种群内,32.03%的变异存在于种群间,种群间的基因分化系数(GST)为0.315 4。短柄枹种群间的基因流为(Nm)为1.085 3。7个种群的平均遗传距离为0.173 9。利用UPGMA法对7个种群进行聚类,结果显示天台山和雪窦山种群聚成一类,其它5个种群聚成另一类。  相似文献   

4.
白花泡桐种源的遗传多样性和遗传分化研究   总被引:1,自引:0,他引:1  
利用ISSR技术对白花泡桐38个种源的遗传多样性和遗传分化进行分析。结果显示:(1)从100个ISSR引物中筛选出9个能扩增出清晰带型并具多态性的引物,共扩增出95个条带,其中88条具多态性,多态位点比率为92.63%。(2)在物种水平上,有效等位基因数(Ne)、Nei’s基因多样性指数(H)、Shannon’s信息指数(I)的平均值分别为1.391 0、0.242 4、0.376 5;种源的多态位点比率在32.63%(江西抚州)~56.84%(广西梧州和江西九江)之间,平均为47.16%;基因流(Nm)为0.912 7,种源间遗传分化系数(Gst)为0.353 9,反映出种源间遗传变异占总遗传变异的35.39%,且遗传变异主要来源于种源内的个体间。(3)遗传一致度在0.39~0.82之间,反映出白花泡桐的遗传基础较宽。UPGMA法聚类分析将38个种源分为3组,主坐标分析(PCoA)将其大致分为4组,两种聚类方法的结果有一定的差异,本文做了相关讨论。研究还表明种源间的遗传距离与地理距离相关不显著。  相似文献   

5.
滇牡丹遗传多样性的ISSR分析   总被引:36,自引:0,他引:36  
应用ISSR标记对中国西南地区特有植物滇牡丹(Paeonia delavayi)的遗传多样性进行了研究。从100个引物中筛选出10个用于正式扩增,在取自16个自然居群和1个迁地保护居群的511个个体中,检测到92个多态位点。在居群水平上,多态位点百分率(PPB)为44.61%,Nei′s基因多样性指数(H)和Shannon信息指数(I)分别为0.1657和0.2448。在物种水平上,多态位点百分率(PPB)为79.31%,Nei′s基因多样性指数(H)和Shannon信息指数(I)分别为0.2947和0.4355。居群间的遗传分化系数(GST)达0.4349。结果表明:滇牡丹遗传多样性水平较高,居群间遗传分化较大。结合以前的研究结果,对滇牡丹的现状进行评估的结果显示,滇牡丹并不濒危。  相似文献   

6.
采用ISSR分子标记对分布于大连市周边的4个藜的天然种群100个个体进行了遗传多样性及遗传结构的研究。13个引物共检测了157个位点,多态位点比率为67.52%,Shannon信息指数在物种水平上为0.332 9。根据GST值,藜遗传变异有40.03%发生在种群间。遗传距离分析表明,DT种群与MLN种群遗传一致度最高,遗传距离与地理距离之间没有相关性。  相似文献   

7.
为查明日本岛屿山茶种群的生存状况及了解岛屿隔离对山茶种群遗传结构的影响,采用ISSR分子标记,利用筛选的20条引物对日本5个山茶(Camellia japonica)种群的遗传结构进行分析。结果表明:山茶种群的多态位点百分比(PPB)为70.29%,Nei’s基因多样性指数(HE)为0.281 9,Shannon信息多态性指数(H)为0.409 5,与其它岛屿种群相比遗传多样性水平较高,表明山茶种群的生存状况较好。基因分化系数Gst=0.205 7,种群间具有较高的遗传分化;地理距离与遗传距离具有显著相关性(r=0.821 7,p<0.05),UPGMA也将同岛种群聚在一起,表明岛屿隔离对山茶种群的遗传分化具有重要影响。借鉴日本岛屿山茶种群的保护经验,建议加强我国岛屿山茶种群的就地保护力度,同时建立山茶种质资源库,促进基因交流。  相似文献   

8.
木荷种群在演替系列群落中的遗传多样性   总被引:2,自引:2,他引:0  
利用ISSR分子标记对木荷种群在3个演替系列群落中的遗传多样性进行了研究。12个随机引物共检测到203个可重复的位点,其中多态位点183个,总多态位点百分率(P)为90.15%,平均多态位点百分率为82.27%。Shannon信息指数(I)估算的总遗传多样性为0.524 4,平均为0.477 8。Nei指数(h)计算的总基因多样性为0.358 7,平均为0.326 5。3个种群的P、I、h大小顺序均为针叶林>针阔混交林>常绿阔叶林。AMOVA分子变异显示91.56%变异来源于种群内,8.44%变异来源于种群间。种群间的遗传分化系数(GST)为0.089 7,基因流(Nm)为5.073 1。种群间的遗传相似度平均为0.928 4,遗传距离平均为0.074 4,针叶林种群与针阔混交林种群遗传相似度最高。  相似文献   

9.
采用ISSR分子标记技术,对浙江省桐庐县白云源森林公园的6个长叶榧(Torreya jackii)亚居群进行分析,阐明长叶榧在小地理范围内的遗传结构。12个引物对6个长叶榧亚居群的120个个体进行扩增,共得到194个位点,其中多态位点87个,总多态位点百分率(P)为44.85%,平均为29.21%。长叶榧总Shannon信息指数(I)为0.166 3,平均为0.119 9;总Nei指数(h)为0.103 5,平均为0.075 5。PIh均表明长叶榧总体水平的遗传多样性较高,亚居群水平的遗传多样性较低。AMOVA分子变异分析显示,21.45%的变异存在于亚居群间,78.55%的变异存在于亚居群内。长叶榧亚居群间的遗传分化系数(Gst)为0.270 5,基因流为1.347 8。6个长叶榧亚居群的平均遗传距离为0.037 0,根据亚居群间的遗传距离进行UPGMA聚类,结果为生境相似的亚居群聚在一起。  相似文献   

10.
采用ISSR分子标记对分布于山东省长岛县南部的北长山、南长山、大黑山和小黑山4个岛屿上的藜天然种群共81个个体进行了遗传多样性及遗传结构的研究。13个引物共检测到157个可重复的位点。遗传多样性研究结果表明:种内的多态位点比率为66.24%,具有较高的遗传多样性(Shannon(I)指数在物种水平上为0.332 0);种群间有一定的遗传分化,根据Gst值,种群间的遗传多样性占总群体的9.27%。遗传距离分析表明,XHS种群和NCS种群的遗传一致度最高,与地理距离无相关性。  相似文献   

11.
白沙蒿不同地理种群遗传分化的ISSR分析   总被引:1,自引:0,他引:1  
运用ISSR技术,对白沙蒿的5个种群进行遗传分化的分析。12个引物在108个个体中共扩增出222个位点,其中,多态位点为218个,多态位点百分率为98.20%,Shannon多样性指数为0.315 4,具有高的多态性。种群间的遗传分化系数(Gst)为0.076 7,与AMOVA分析的结果一致(Фst为7.96%),表明绝大多数的遗传变异存在于种群内部。各种群间遗传一致度高达98%以上,遗传距离很小,基因流达3.008 2,均表现出白沙蒿各种群存在着广泛的基因交流,有着很小的遗传分化。  相似文献   

12.
二色胡枝子遗传多样性AFLP分析   总被引:1,自引:0,他引:1  
利用AFLP对二色胡枝子14个居群的161个个体的遗传多样性进行分析,5对引物共扩增出253条带,多态带百分率(P)为96.8%,二色胡枝子种群的平均位点等位基因数(Ao)为1.968,平均有效等位基因数(Ae)为1.643,Nei’s基因多样性指数(H)为0.369,Shannon信息指数(I)为0.544。14个种源的平均多态性条带数为159条,平均多态带百分率为62.9%,平均Nei’s基因多样性指数为0.257,I=0.373。二色胡枝子遗传多样性的76.68%分布于种源内(Φst=0.233 2),各种源间的差异显著。聚类结果表明,二色胡枝14个种源可划分为三个大类,居群的遗传多样性参数与其地理、生态因子均不显著相关,遗传多样性无明显地域分布格局。  相似文献   

13.
Genetic diversity analysis was conducted on 80 individuals of 4 populations of non-bred Pyropia haitanensis by simple sequence repeat (SSR) method. Using 15 pairs of microsatellite primers, 37 polymorphic loci were amplified, representing 94.9% of all loci. At the population level, the percentage of polymorphic bands (P) and polymorphism information content (PIC) were 66.67–84.62% and 0.481–0.488, with average value at 73.72% and 0.483, respectively. Expected heterozygosity (He) and Shannon's information index (I) were 0.279 and 0.434, respectively, at the species level, and 0.233 and 0.356 at population level. According to the coefficient of gene differentiation (GST), a large proportion of genetic variance (83.6%) of P. haitanensis was among individuals within populations, only 16.4% genetic variance was among populations, which was identified with the moderate gene flow value (Nm = 2.542). UPGMA clustered the 4 populations into 3 groups, and no significant correlation was found between the genetic distance and the corresponding geographic distance among the populations.  相似文献   

14.
Eighteen populations of the endangered aromatic and medicinal plant Mentha cervina (Lamiaceae) were sampled across its natural range, in the western half of the Iberian Peninsula, and inter-simple sequence repeats (ISSRs) markers were used to assess genetic diversity and population structure. M. cervina populations exhibited a relatively low genetic diversity (percentage of polymorphic loci PPB = 14.2–58.3%, Nei's genetic diversity He = 0.135–0.205, Shannon's information index I = 0.08 − 0.33). However, the genetic diversity at species level was relatively high (PPB = 98.3%; He = 0.325; I = 0.23). The results of the analysis of molecular variance indicated very structured populations, with 50% of the variance within populations, 44% among populations and 6% between regions defined by hydrographic basins, in line with the gene differentiation coefficient (GST = 0.532). A Mantel test did not find significant correlation between genetic and geographic distance matrices (r = 0.064), indicating that isolation by distance is not shaping the present genetic structure. The levels and patterns of genetic diversity in M. cervina populations were assumed to result largely from a combination of evolutionary history and its unique biological traits, such as breeding system, low capacity of dispersion, small effective size and habitat fragmentation. The high genetic differentiation among populations indicates the necessity of conserving the maximum possible number of populations. The results also provide information to select sites for ex situ conservation. Optimal harvesting strategies, cultivation and tissue culture should also be developed as soon as possible to guarantee sustainable use of the species under study.  相似文献   

15.
Twenty-eight populations of the rare medicinal plant Magnolia officinalis (Magnoliaceae) were sampled across its natural range, and inter-simple sequence repeats (ISSRs) markers were used to assess the genetic variation within and among populations. Twelve primer combinations produced a total of 137 unambiguous bands of which 114 (83.2%) were polymorphic. M. officinalis exhibited a relatively low genetic diversity at population level (the percentage of polymorphic loci PPB = 49.8%, Nei’s genetic diversity H = 0.194, Shannon’s information index I = 0.286). However, the genetic diversity at species level was relatively high (PPB = 83.2%; H = 0.342; I = 0.496). The coefficient of gene differentiation (GST, 42.8%) and the results of analysis of molecular variance (AMVOA) indicated that genetic differentiation occurred mainly within populations. The estimated gene flow (Nm) from GST was 0.669. It indicated that the fragmentation and isolation of populations might result from specific evolutionary history and anthropogenic activity. Genetic drift played a more important role than gene flow in the current population genetic structure of Mofficinalis. Conservation strategies for this rare species are proposed based on the genetic data.  相似文献   

16.
利用ISSR分子标记技术对太行山特有濒危物种太行菊11个自然居群的遗传多样性进行研究。用10个引物对11个居群的122个样品进行扩增,共得到150个扩增位点,其中多态性位点149个,多态位点百分率(PPL)为99.33%。POPGENE分析显示,太行菊具有较高的遗传多样性(H=0.2149,I=0.3455)。沁阳市大西天居群的遗传多样性水平最高(H=0.1910,I=0.2969),山西陵川县大双村居群的遗传多样性水平最低(H=0.1356,I=0.2155)。Nei’s遗传多样性分析表明,11个自然居群间出现了较高的遗传分化(基因分化系数Gst=0.2566,基因流Nm=1.4488)。生境的的片段化和基因流障碍可能是导致太行菊居群间遗传分化显著的主要原因。通过对太行菊居群遗传多样性和遗传结构的分析,该文提出了一些保护策略。  相似文献   

17.
濒危植物南方红豆杉遗传多样性的RAPD分析   总被引:5,自引:2,他引:3  
采用RAPD技术检测了山西南部南方红豆杉8个种群的遗传多样性。利用21个10聚寡核苷酸引物共检测出134个位点,其中多态性位点123个,占91.79%,8个种群的遗传多态位点百分率分别为67.16%(红豆峡)、67.91%(凤凰谷)、66.42%(小梯河)、66.42%(蟒河)、50.75%(历山西峡)、43.28%(云蒙山)、78.36%(长治宾馆)、50.75%(磨河)。南方红豆杉的遗传多样性分析结果显示:Shannon指数为2.180,其中31.7%的遗传多样性来自种群间,68.3%来自种群内;Nei指数为0.571,种群间的遗传分化系数(Gst)为0.181。8个种群间的遗传相似性分析结果显示:壶关红豆峡和陵川凤凰谷种群间的遗传距离最小(0.109 2),壶关红豆峡和陵川蟒河种群间遗传距离最大(0.55)。本研究结果揭示,南方红豆杉自然种群具有较高的遗传多样性,其遗传多样性不是导致该种群濒危的主要原因,导致南方红豆杉种群濒危的原因可能与南方红豆杉自然种群及群落所在生境的直接破坏及其本身生物学和生态学特性所导致的自然更新不良有着密切的联系。  相似文献   

18.
Neopicrorhiza scrophulariiflora Pennel (Hong) (Scrophulariaceae) is an endangered medicinal plant, endemic to the Eastern Himalayas and the Hengduan Mountains. Levels of genetic variation and genetic structure of seven populations of N. scrophulariiflora in China were studied using inter-simple sequence repeat (ISSR) markers. Thirteen primers amplified 82 total loci from 7 populations composed of 136 individuals. All 82 loci were polymorphic, showing a percentage of polymorphic bands (PPB) of 100%, indicating considerable genetic variation at the species level. In contrast, a low level of genetic diversity within populations was detected with a mean PPB of 30.56%. In addition, Nei’s genetic diversity analysis (0.4073) and Shannon’s diversity index (0.5917) revealed similar genetic structure. High levels of genetic differentiation (Gst = 0.6955) and restricted gene flow (Nm = 0.2198) among populations were also detected. Anthropologic impacts, together with clonal propagation, genetic drift and geographical isolation might be the reasons which had shaped the genetic structure of this species.  相似文献   

19.
Ni X  Huang Y  Wu L  Zhou R  Deng S  Wu D  Wang B  Su G  Tang T  Shi S 《Genetica》2006,127(1-3):177-183
Primulina tabacum Hance, is a critically endangered perennial endemic to limestone area in South China. Genetic variability within and among four extant populations of this species was assessed using AFLP markers. We expected a low genetic diversity level of this narrowly distributed species, but our results revealed that a high level of genetic diversity remains, both at population level (55.5% of markers polymorphic, H E = 0.220, I S = 0.321), and at species level (P = 85.6% of markers polymorphic, H E = 0.339, I S = 0.495), probably resulting from its refugial history and/or breeding system. High levels of genetic differentiation among populations was apparent based on Nei’s genetic diversity analysis (G st=0.350). The restricted gene flow between populations is a potential reason for the high genetic differentiation. The population genetic diversity of P. tabacum revealed here has clear implications for conservation and management. To maintain present levels of genetic diversity, in situ conservation of all populations is necessary.  相似文献   

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