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1.
The genetic diversity within and among populations of Hepatacodium miconioides collected at three different altitudes in Tiantai Mountain, Zhejiang Province and its relationships to environmental factors were analyzed by random amplified polymorphic DNA (RAPD) technique. Amplification using 12 random primers of 60 plants and 122 repetitive loci were produced. The percentage of polymorphic loci of three populations ranged from 18.85% to 23.77% with an average of 21.86%, indicating the relatively low genetic diversity of H. miconioides. The average Shannon index of phenotypic diversity (0.1329) and Nei index (0.0925) within populations were relatively low. A distinct genetic differentiation existed among populations of H. miconioides in spite of the relatively small geographical distribution. The average genetic diversity within populations of H. miconioides accounted for 33.58% of the total genetic diversity while the genetic diversity among populations accounted for 66.42% as estimated by the Shannon index of phenotypic diversity, The genetic differentiation among populations of H. miconioides was 0.6546, as estimated by Nei index. The gene flow estimated from G ST was only 0.2656 and it indicated that gene flow among populations of H. miconioides was relatively low. The mean value of the genetic identity among populations of H. miconioides was 0.7126 and the average of genetic distance of H. miconioides was 0.3412. The genetic identity between populations at the elevation of 990 m and at the elevation of 780 m was the highest. The genetic identity between population at the elevation 500 m and other two populations was relatively low. The correlation analysis showed that the genetic diversity within populations was significantly related with the soil total nitrogen. __________ Translated from Journal of Zhejiang University (science Edition) 2005, 32 (4)[译81EA;: 浙江大学学报(理学版), 2005,32(4)]  相似文献   

2.
The genetic diversity within and among populations of Hepatacodium miconioides collected at three different altitudes in Tiantai Mountain,Zhejiang Province and its relationships to environmental factors were analyzed by random amplified polymorphic DNA(RAPD)technique.Amplification using 12 random primers of 60 plants and 122 repetitive loci were produced.The percentage of polymorphic loci of three populations ranged from 18.85% to 23.77% with an average of 21.86%,indicating the relatively low genetic diversity of H.miconioides.The average Shannon index of phenotypic diversity(0.1329)and Nei index(0.0925)within populations were relatively low.A distinct genetic differentiation existed among populations Of H miconioides in spite of the relatively small geographical distribufion.The average genetic diversity within populations of H.miconioides accounted for 33.58% of the total genetic diversity while the genetic diversity among populations accounted for 66.42% as estimated by the Shannon index of phenotypic diversity,The genetic differentiation among populations of H.miconioides was 0.6546,as estimated by Nei index.The gene flow estimated from Gsr was only 0.2656 and it indicated that gene flow among populations of H.miconioides was relatively low.The mean value of the genetic identity among populations of H.miconioides was 0.7126 and the average of genetic distance of H.miconioides was 0.3412.The genetic identity between populations at the elevation of 990m and at the elevation of 780 m was the highest.The genetic identity between population at the elevation 500 m and other two populations was relatively low.The correlation analysis showed that the genetic diversity within populations was significantly related with the soil total nitrogen.  相似文献   

3.
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   

4.
浙江省境内七子花天然种群遗传多样性研究   总被引:14,自引:3,他引:11  
利用RAPD技术对浙江省境内的七子花9个天然种群遗传多样性和遗传分化进行研究.结果表明,12种随机引物对180棵植物进行检测,共得到164个可重复的位点.多态位点百分率在14.60%~27.44%(平均为20.73%),以括苍山种群最高,其次是四明山种群,最低是观音坪种群.Shannon指数和Nei指数均反映出七子花各种群具有较低的遗传多样性,但遗传分化明显.Shannon指数显示种群内遗传多样性只占总遗传多样性的27.28%,而种群间遗传多样性却占72.72%;Nei指数表明种群内的遗传变异较小,种群间的遗传变异较大,种群间的遗传分化系数为0.7157.七子花种群间的基因流为0.1987,遗传相似度平均为0.7306,遗传距离平均为0.3150,各种群间的遗传分化明显.根据遗传距离聚类分析,大致可以将9个七子花种群分为东部和西部两大类群.  相似文献   

5.
应用ISSR 分子标记方法对采自云南的8 个居群的小桐子( Jatropha curcas) 共158 个个体进行遗传多样性分析。8 个ISSR 引物共扩增到了67 个位点, 其中61 个是多态性位点。分析结果表明: (1) 云南小桐子的遗传多样性水平很高。在物种水平上, 平均每个位点的多态位点百分率PPB = 91.04% , 有效等位基因数Ne = 1.5244, Nei′s 基因多样性指数He= 0.3070, Shannon 多样性信息指数Ho = 0.4618; 在居群水平上, PPB = 55.04%, Ne = 1.3826, He = 0.2171, Shannon 多样性信息指数Ho = 0.3178。(2) 居群间的遗传分化低于居群内的遗传分化。基于Nei''s 遗传多样性分析得出的居群间遗传多样性分化系数Gst = 0.2944。AMOVA分析显示: 云南小桐子的遗传变异主要存在于居群内, 占总变异的63.50%, 居群间的遗传变异占36.50%。(3) 居群间的地理距离及遗传一致度并不存在相关性。鉴于以上指标, 我们推测云南小桐子可能来自不同的地区。  相似文献   

6.
采用ISSR 分子标记技术, 对西双版纳分布的兰科濒危植物流苏石斛( Dendrobium fimbriatum) 5 个居群共114 个个体的遗传多样性进行了研究。从100 条引物中筛选出了12 条用于扩增, 共检测到117 个位点, 其中105 个为多态位点。分析结果表明, 流苏石斛居群水平遗传多样性较低。在物种水平上, 流苏石斛多态位点百分率PPB 为89 .74% , Nei′s 基因多样性指数H 为0 . 3227 , Shannon′s 多样性信息指数Hsp 为0 . 4779 ; 在居群水平上, 各个居群的多态位点百分率PPB 差异较大( 6.84% ~ 39.32% ) , 平均值为23.93% , Nei′s 基因多样性指数H 为0 . 0871 , 各个居群的Shannon′s 多样性信息指数Ho 平均为0.1290。AMOVA 分析的结果显示, 流苏石斛的遗传变异大多数存在于居群间, 占总遗传变异的74 . 79%。基于Nei′s遗传多样性分析得出的居群间遗传分化系数Gst = 0 . 7443。各居群间的Nei′s 遗传一致度( I) 范围为0 . 5882~0 . 8331。Mantel 检测发现, 居群间的遗传距离和地理距离之间无显著的正相关关系( r= 0.2419, P=0.2416) 。鉴于流苏石斛的遗传多样性现状和居群遗传结构, 我们建议对流苏石斛居群所有个体实施及时的就地保护, 同时建立迁地保护居群, 促进基因交流。  相似文献   

7.
利用 RAPD技术分析了分布于浙江省天台山 3个不同海拔高度的天然大血藤群体的遗传多样性、遗传分化以及与环境因子的相关性。 13种随机引物在 3 6株个体中共检测到 88个可重复的位点 ,其中多态位点 74个 ,总多态位点百分率为84.0 9% ,大血藤具有丰富的遗传多样性。 Shannon信息指数显示的遗传多样性以海拔 950 m的群体为最高 ,其次是海拔 73 0 m的群体 ,最低的是海拔 52 0 m的群体 ;群体内的遗传多样性占总遗传多样性的 43 .68% ,群体间的遗传多样性占 56.3 2 %。 Nei指数估计大血藤群体间的遗传分化系数为 0 .540 6,大血藤群体间的基因流很低。大血藤海拔 73 0 m群体与海拔 52 0 m群体的遗传相似度较高 ,海拔 950 m群体与其它两群体的遗传相似度较低。大血藤群体内的遗传多样性与土壤总氮呈极显著的正相关。  相似文献   

8.
The genetic diversity of 158 individuals from eight semi-wild populations from Yunnan Province was estimated using ISSR method (8 primers). The results revealed an extraordinarily high level of genetic diversity ( at species level,percentage of polymorphic loci PPB = 91.04% , effective number of alleles Ne = 1.5244 , Nei′s (1973 ) gene diversity He= 0.3070, and Shannon′s information index Ho = 0 . 4618 ; at population level, PPB = 55. 04% , Ne = 1.3826, Nei′s (1973) gene diversity He = 0.2171, and Shannon′s information index Ho = 0.3178). The level of genetic differentiation between populations is lower than that among populations . The low level of genetic differentiation among populations was detected, based on Nei′s genetic diversity analysis (29.44%), and AMOVA (36.50%). There is no associations between geographical distance and genetic identity.We suggest that Jatropha curcas of Yunnan Province might not be introduced from the same place.  相似文献   

9.
中国卵叶海桑遗传多样性的ISSR研究   总被引:6,自引:1,他引:5  
卵叶海桑 (Sonneratiaovata)是海桑科濒危红树植物 ,在我国仅分布于海南文昌清澜自然保护区内。采用简单序列重复区间扩增 (ISSR)分子标记技术对该天然居群和东寨港红树林自然保护区引种的人工居群共 3个居群 3 9个个体进行了遗传变异分析。 1 1个引物共扩增出 1 85条带 ,其中 1 2 7条具多态性 ,多态位点百分率为 68.65 %。在居群水平上相对较低 ,多态位点百分率 3 6.76%~ 5 4.5 9% ,平均值为 47.2 1 %。Nei的基因多样性、Shannon信息指数在物种水平上分别为 0 .1 41 1和 0 .2 2 92 ;在居群水平上平均值分别为 0 .1 2 0 9和0 .1 91 0。Nei的遗传分化系数Gst表明 :87.5 8%遗传变异分布在居群内 ,1 2 .42 %的遗传变异分布在居群间。居群间的遗传一致度达 0 .970 7。东寨港迁地保护的人工居群有效地保护了卵叶海桑的遗传多样性。  相似文献   

10.
西双版纳地区流苏石斛遗传多样性的ISSR分析   总被引:5,自引:0,他引:5  
采用ISSR分子标记技术,对西双版纳分布的兰科濒危植物流苏石斛(Dendrobium fimbriatum)5个居群共114个个体的遗传多样性进行了研究。从100条引物中筛选出了12条用于扩增,共检测到117个位点,其中105个为多态位点。分析结果表明,流苏石斛居群水平遗传多样性较低。在物种水平上,流苏石斛多态位点百分率PPB为89.74%,Nei’s基因多样性指数日为0.3227,Shannon’s多样性信息指数见。为0.4779;在居群水平上,各个居群的多态位点百分率PPB差异较大(6.84%~39.32%),平均值为23.93%,Nei’s基因多样性指数H为0.0871,各个居群的Shannon’s多样性信息指数见平均为0.1290。AMOVA分析的结果显示,流苏石斛的遗传变异大多数存在于居群间,占总遗传变异的74.79%。基于Nei’s遗传多样性分析得出的居群间遗传分化系数Gst=0.7443。各居群间的Nei’s遗传一致度(I)范围为0.5882~0.8331。Mantel检测发现,居群间的遗传距离和地理距离之间无显著的正相关关系(r=0.2419,P=0.2416)。鉴于流苏石斛的遗传多样性现状和居群遗传结构,我们建议对流苏石斛居群所有个体实施及时的就地保护,同时建立迁地保护居群,促进基因交流。  相似文献   

11.
The genetic diversities of 16 Paulownia fortunei populations involving 143 individuals collected from 6 provinces in China were analyzed using amplified fragment length polymorphism (AFLP). A total of 9 primer pairs with 1169 polymorphic loci were screened out, and each pair possessed 132 bands on average. The percentage of polymorphic bands (98.57%), the effective number of alleles (1.2138–1.2726), Nei’s genetic diversity (0.1566–0.1887), and Shannon’s information index (0.2692–0.3117) indicated a plentiful genetic diversity and different among Paulownia fortune populations. The genetic differentiation coefficient between populations was 0.2386, while the gene flow was 1.0954, and the low gene exchange promoted genetic differentiation. Analysis of variance indicated that genetic variation mainly occurred within populations (81.62% of total variation) rather than among populations (18.38%). The 16 populations were divided by unweighted pair-group method with arithmetic means (UPGMA) into 4 groups with obvious regionalism, in which the populations with close geographical locations (latitude) were clustered together.  相似文献   

12.
Genetic variation and structure of six natural populations of Lepidium draba L. from Eastern Anatolia were assessed using random amplified polymorphic DNA (RAPD) markers. For RAPD analysis, 12 primers generated 218 reproducible bands across the six populations analyzed, of which 73 bands (33.3%) were polymorphic. The mean Nei’s gene diversity value for all six populations was 0.1771. Shannon’s information index varied with population (0.2278–0.3082), averaging 0.2608. Analysis of molecular variance (AMOVA) showed that genetic diversity was greater within populations (58.66%) than among populations (30.68%). In addition, the variation between groups was 10.33%. The genetic differentiation among populations (G ST) was 0.3210, indicating that most genetic diversity occurs within populations. Gene flow (Nm) was low, at only 0.5288.  相似文献   

13.
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   

14.
Random amplified polymorphic DNA markers were used to assess the genetic diversity within and among seven Tunisian diploid and polyploid populations of Teucrium polium L. from five bioclimatic areas. Out of the 141 bands generated from eight selected primers, 124 were polymorphic. The genetic diversity within a population (Shannon’s index) was high and varied according both the ploidal levels and bioclimatic zones. The genetic differentiation among populations assessed by G ST and ΦST statistics was high, suggesting a low level of gene flow among them. The major proportion of the variation was attributable to individual differences within populations. The UPGMA analysis based on Nei and Li’s coefficient showed that individuals from each population clustered together. In a dendrogram using the ΦST distance matrix, population grouping is concordant with bioclimates and cytotypes. Conservation strategies should take into account the level of the genetic diversity of the populations according to their bioclimate and ploidal levels.  相似文献   

15.
Genetic characterization of Barilius barna, an economically important freshwater fish in the Indian scenario, is unexplored in the sub-Himalayan Dooars region of West Bengal, India. This study is the first attempt to characterize the genetic architecture of Barilius barna from the Teesta river of this region. We have studied loci polymorphism, genetic diversity, Shannon’s information index and the measure of evenness in the two populations of this river through ten RAPD and seven ISSR primer-based PCR amplifications. The result showed 89.52 and 82.21% polymorphisms in RAPD and ISSR amplification respectively. The Nei’s genetic diversity and Shannon’s information index varied from 0.172 ± 0.189SD to 0.293 ± 0.164SD and 0.265 ± 0.268SD to 0.445 ± 0.220SD respectively, which indicated low level of genetic variation. AMOVA revealed significant level of variance within the population and gene flow between the populations. Low levels of genetic variation and moderate to high levels of genetic relatedness were found in the studied populations. Expectedly, the populations were genetically not very distant from each other, as evident from the Nei’s unbiased measure of genetic distance and identity. As the species is commercially important and the region is located in the sub-Himalayan region, the management and proper rehabilitation of this ichthyofauna in the wild is urgently required. Our results may serve as a guideline for adopting such management decisions.  相似文献   

16.
Inter-simple sequence repeat (ISSR) markers were used to analyze genetic diversity and relatedness of 15 germplasms of Fagopyrum tataricum. Samples representing 75 individuals were collected from a range of altitudes in the Western Himalaya. The 13 ISSR primers revealed 98.1% polymorphism among populations, whereas average polymorphism was extremely low (2.18%) within populations. The coefficient of population differentiation was 0.9750, with limited gene flow (N m) of 0.0128. The average PIC value of the ISSR markers was high (0.812), with a marker ratio of 0.65 and marker index of 6.66. The genetic diversity of F. tataricum significantly correlated with altitude and gene diversity, Shannon’s index, and the percentage of polymorphic bands. The genetic diversity among populations showed broad genetic base and provided a developmental strategy for crop improvement.  相似文献   

17.
RAPD markers were used to detect genetic diversity and population genetic differentiation of Hippophae rhamnoides ssp. yunnanensis, a sea buckthorn endemic to the Qinghai-Tibet plateau. The genetic parameters of percentage of polymorphic bands (92.86%), Nei’s gene diversity (h, 0.255), and Shannon’s index (I, 0.397) indicated high genetic diversity in this subspecies. The subpopulation differentiation suggested that 45.9% of genetic variation was among populations. High genetic differentiation among populations was also detected using AMOVA (47.02%). The main factors responsible for high genetic differentiation are probably related to natural geographic barriers among populations, gene drift, and limited gene flow caused by restricted pollen flow and seed flow. A Mantel test indicated that geographic distances were significantly correlated with genetic distances. The UPGMA phenogram based on Nei’s unbiased genetic distances and the result of three-dimensional model plots performed by principal coordinate analysis also supported the correlation. Altitude, however, did not have any clear effect on genetic differentiation.  相似文献   

18.
Genetic variability and population structure of Sapindus trifoliatus L. (Sapindaceae), collected from Gujarat, Karnataka and Uttar Pradesh states were estimated using three DNA fingerprinting methods viz., random amplified polymorphic DNA (RAPD), directed amplification of minisatellite DNA (DAMD) and inter-simple sequence repeats (ISSR). The cumulative data analysis carried out for all three markers showed 69.42 % polymorphism. The intra-population genetic diversity analysis revealed the highest values of Nei’s genetic diversity (0.16), Shannon information index (0.24) and polymorphic loci (43.99 %) among Bhavnagar (BH) population, whereas lowest values were found in Junagarh (JU) population. The maximum inter-population average genetic distance (0.20) was between Allahabad (AL) and JU populations. Analysis of molecular variance (AMOVA) showed highest percentage of variation among individuals of populations (56 %) followed by 25 % among populations and 19 % among regions. Principal coordinate analysis and UPGMA dendrogram revealed that genetic diversity was in congruence with the geographical diversity. The data strongly suggest that low genetic flow, geographic isolation and to some extent genetic drift are the major factors responsible for high genetic differentiation. Preservation of genetic diversity of S. trifoliatus is important, both to promote adaptability of the populations to changing environment as well as to preserve a large gene pool for future genetic improvement. The present study using RAPD, DAMD and ISSR profiles of S. trifoliatus provide the means of rapid characterization of accessions within the populations, and thus enable the selection of appropriate accessions for further utilization in conservation and prospection programs of this important plant genetic resource.  相似文献   

19.
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   

20.
珍稀濒危植物长叶红砂种群遗传多样性的ISSR分析   总被引:3,自引:1,他引:2  
张颖娟  王玉山 《植物研究》2008,28(5):568-573
采用ISSR分子标记技术,对濒危小灌木长叶红砂(Reaumuria trigyna) 集中分布的5个种群的遗传多样性水平和遗传结构进行了研究。14条引物共检测到114个位点,其中99个为多态位点,多态位点比率为86.84%,长叶红砂种群具有较高的遗传多样性。物种水平上Shannon多样性指数(I)为0.468 8,Nei基因多样性指数(H)为0.308 4;种群水平上,多态位点比率P为77.89%,I为0.410 6,H为0.260 9,基因分化系数Gst为0.106 9,揭示了长叶红砂种群遗传变异多存在于种群内,种群间的遗传分化较小,占10.69%。 基因流(Nm)为4.178 7>1,说明种群间的基因交流,防止了由于遗传漂变导致的遗传分化。聚类分析表明长叶红砂种群遗传距离与地理距离之间无显著的相关性。研究结果说明遗传多样性水平与物种本身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   

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