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1.
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   

2.
濒危植物连香树居群的遗传多样性和遗传分化研究   总被引:7,自引:3,他引:4  
利用ISSR分子标记技术对濒危植物连香树10个居群的遗传多样性和遗传变异进行了分析,结果表明:连香树物种水平遗传多样性较高,多态位点百分率(PPB)达到69.59%,Nei’s基因多样性指数(H)和Shannon信息指数(I)分别为0.231 3和0.351 4;而在居群水平上,多态位点百分率(PPB)为30.61%,Nei’s基因多样性指数(H)和Shannon信息指数(I)分别为0.115 6和0.173 3。遗传变异分析表明,居群间遗传分化程度高,遗传分化系数(GST)为0.500 3,居群间基因流Nm为0.527 3。Mantel检测,居群间的遗传距离和地理距离之间不存在显著的相关性。生境的片断化使居群间的基因流受阻,可能是导致居群间高遗传分化和居群水平低遗传多样性的主要原因。  相似文献   

3.
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   

4.
濒危植物长叶榧群体遗传多样性的RAPD分析   总被引:5,自引:1,他引:4  
借助随机扩增多态DNA方法,分析了中国特有的濒危植物长叶榧的遗传多样性和遗传分化.结果表明:12个随机引物在9个长叶榧自然群体180个样品中可检测到180个可重复位点,其中多态位点119个.长叶榧物种水平的遗传多样性较高,多态位点百分率(P)为66.11%,Shannon信息指数(,)为0.3087,Nei指数(h)为0.2015;而群体水平的遗传多样性较低,P、I和h分别平均为23.76%、0.1221和0.0813.AMOVA分子变异显示,42.57%变异来源于群体内,57.43%变异来源于群体间,群体间的遗传分化系数(Gst)为0.5965,群体间的遗传分化程度高.长叶榧群体间的基因流很低,为0.3382.瓶颈效应、群体隔离和群体间基因流低等因素都加剧了长叶榧群体间的遗传分化.9个长叶榧群体间的平均遗传距离为0.1630.通过UPGMA进行聚类,可将9个长叶榧群体分为浙江和福建两大类群.建议在迁地保护时应尽量避免在群体之间实施种质迁移.  相似文献   

5.
为了全面了解古尔班通古特沙漠荒漠肉苁蓉居群分布的遗传多样性特点,本研究通过ISSR分子标记技术,利用Nei和Shannon等多样性指数对古尔班通古特沙漠中5个居群166个个体的荒漠肉苁蓉遗传多样性、荒漠肉苁蓉种群和种内的遗传多样性进行分析。在供试材料中,8个引物共扩增出144个多态位点,多态位点百分率达100%,5个居群的多态位点百分率差异在46.53%~77.78%之间。在物种水平上,Nei基因多样度(h)为0.260 4,Shannon多样性指数(I)是0.411 0。遗传变异分析表明,物种水平的居群间遗传分化系数Gst为0.222 2,居群间的基因流Nm为1.750 7。研究显示古尔班通古特沙漠中荒漠肉苁蓉多态位点比例高,各居群基因交流较多,不同居群间遗传变异并不明显,这些对肉从蓉资源有效地保护和利用具有重要意义。  相似文献   

6.
华中特有珍稀植物裸芸香的AFLP遗传多样性分析   总被引:2,自引:1,他引:1  
采用选择性扩增片段多态性(AFLP)方法对华中特有单种属植物裸芸香(Psilopeganum sinense)的8个自然居群的遗传多样性进行了检测与分析。结果表明:裸芸香的遗传多样性较低,且居群内遗传多样性显著低于物种水平遗传多样性。筛选出的5对引物共得到180个位点,76个为多态位点,多态位点百分率为42.2%,8个居群多态位点百分率为:3.3%~16.7%,居群平均多态位点百分率为9.4%;8个居群Nei多样性指数为0.01987~0.06987,Shannon’s多样性指数为0.0197~0.0816。居群间分化系数Gst=0.5069,居群间基因流为0.2432,不足以维持居群间的基因交流及现有的遗传结构。AMOVA分析表明总遗传变异的13.17%存在于4个地理区域之间,50.45%存在于地理区域内的居群间,36.38%的遗传变异存在于居群内个体间。NTSYS分析表明遗传距离与地理距离不存在相关关系。UPGMA聚类结果表明长江南北两岸的居群并没有产生明显分化。最后,分析了裸芸香的濒危原因并提出了有效的保育措施。  相似文献   

7.
利用ISSR标记对新疆梭梭遗传多样性的研究   总被引:5,自引:0,他引:5  
利用ISSR分子标记对新疆梭梭8个居群、218个个体进行了遗传多样性的比较分析,在供试材料中,11个引物共扩增出222个多态位点,多态位点百分率为89.23%,8个居群的多态位点百分率差异在23.42%~45.05%之间,多态位点百分率最高的是乌苏居群,最低的为托克逊居群.遗传变异分析表明,物种水平的基因分化系数Gst为63.78.居群间的基因流Nm为0.284 0,Shannon多样性指数(I)为0.506 0,物种水平的Nei s基因多样度(H)为0.336 2.遗传分析表明乌苏居群和莫索湾居群有较近的遗传距离.  相似文献   

8.
长蕊木兰是具有重要分类和观赏价值的国家一级保护植物。采用ISSR分子标记技术,对云南省高黎贡山自然保护区长蕊木兰3个居群62株个体的遗传多样性进行了研究。结果表明:15个引物共检测到187个有效位点,其中多样性位点171条,在物种水平上多态位点百分率(PPB)为91.44%,居群水平上整顶(ZD)居群PPB最高(66.30%),大蒿坪(DHP)居群PPB最低(21.93%);居群间的基因分化系数(Gst=0.2294)、Shannon居群分化系数(0.27)和分子遗传变异分析(AMOVA)的变异百分率(居群间的变异百分率为27%,居群内的变异百分率为73%)均表明,长蕊木兰遗传变异主要存在于居群内部;聚类结果显示,最大的一类中涵盖了3个居群的绝大多数个体;Mantel检测遗传距离与地理距离之间不存在明显相关性(r=-0.519,P=0.323)。这些结果表明,长蕊木兰具有较大的遗传多样性,但居群间有较大的遗传分化。文章分析了长蕊木兰的濒危原因并提出保护策略,即通过加强已建自然保护区的管理,实施就地保护是最佳选择。  相似文献   

9.
采用简单重复序列区间(ISSR,Inter-Simple Sequence Repeat)分子标记技术,对采自广东省的濒危植物兰花蕉(Orchidantha chinensisT.L.Wu)的7个居群137个个体进行遗传变异分析。用10个ISSR引物共扩增出清晰谱带101条,其中58条具有多态性,总多态位点百分率为57.43%。居群水平相对较低,多态位点百分率在6.93%-35.64%之间,平均为18.24%。经POPGENE1.31数据处理,结果表明:在物种水平上Nei基因多样性为0.1254±0.1686;Shannon信息指数为0.2000±0.2429;Nei基因分化系数为0.5481,表明54.81%的遗传变异分布在居群间,45.19%的遗传变异分布在居群内。物种居群间的遗传一致度在0.8855-0.9511之间。我们认为红花潭是其最适合生境,建议在此建立自然保护区;鉴于兰花蕉居群间出现了一定程度的分化,为最大限度地保护兰花蕉的遗传多样性,建议在自然居群间进行相互移栽,以提高群体间的基因交流。  相似文献   

10.
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   

11.
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   

12.
羊草种群遗传分化的RAPD分析Ⅱ.RAPD数据的统计分析   总被引:9,自引:4,他引:5  
对松嫩草原上分布的灰绿型和黄绿型羊草9个种群进行了15个引物的RAPD分析,统计结果表明,两类种群的扩增片段数和多态位点比率明显不同,黄绿型种群低于灰绿型,其值分别<90与>100,<50%与>70%,比较了7种不同统计方法据RAPD表型或基因型频率估算的种群遗传多样性,几种统计结果都揭示,黄绿型种群低于灰绿型种群,用F1s值矫正种群对Hardy-Weinberg平衡的偏离后,估算等位基因频率,通过Shannon指数和Nei指数估计羊草种群间分化分别为37.6%和35.7%,高于等位酶的分析,讨论比较了等位酶和RAPD分析结果的异同。  相似文献   

13.
Huang LK  Zhang XQ  Ma X  Liu W  Li F  Zeng B 《Hereditas》2008,145(2):84-91
Within and among populations genetic variance of twelve Hemarthria compressa populations and one Hemarthria japonica population from China were analyzed using inter simple sequence repeat (ISSR). Twelve primers amplified a total of 165 genomic DNA fragments across a total of 148 individuals of which 156 were polymorphic (94.55%). 75.76% of the bands were unique to each species, while the average genetic distance (GD) between one population of H. japonica and twelve populations of H. compressa was 0.44, which suggest that there was distinct differentiation between these two species. In H. compressa, twelve primers produced 145 bands across 145 individuals. High genetic diversity was observed at species level. The percentage of polymorphic loci (P) was 86.21% and Shannon's information index of diversity (I) was 0.357. In contrast, there were relatively low levels of genetic diversity within population (P=32.93%, I=0.174). Analysis of molecular variance (AMOVA) showed that a considerable proportion of genetic variation (48.02%) resided among populations. The coefficient of gene differentiation (G(ST)=48.6%) also suggested that there was strong genetic differentiation among H. compressa populations in southern China. An indirect estimate of the number of migrants per generation (N(m)=0.264) indicated that gene flow was low among populations of this species. Relative high clonal diversity was found, and all local genotypes were found.  相似文献   

14.
Inter-simple sequence repeats (ISSR) markers were used to assess the genetic diversity and population structure in eight populations of Elymus sibiricus L. from the southeast of Qinghai-Tibet Plateau of China. Of the 100 primers screened, 13 produced highly reproducible ISSR bands. Using these primers, 193 discernible DNA fragments were generated with 149 (77.2%) being polymorphic, indicating considerable genetic variation at the species level. In contrast, there were relatively low levels of polymorphism at the population level with the percentage of polymorphic bands (PPB) ranging from 44.04 to 54.92%. The mean gene diversity (HE) was estimated to be 0.181 within populations (range 0.164–0.200), and 0.274 at the species level. A high level of genetic differentiation among populations was detected based on Nei's genetic diversity analysis (33.1%), Shannon's index analysis (34.5%), Bayesian method (33.2%) and AMOVA analysis (42.5%). No significant statistical differences (analysis of molecular variance [AMOVA], P = 0.08) in ISSR variation were found between the sample collection regions. However, among populations (42.5% of the variance) and within populations (57.5% of the variance), there were significant differences (P < 0.001). Populations shared high levels of genetic identity. This pattern of genetic variation was different from that for most of inbreeding Triticeae species reported. In addition, a geographical pattern of population differentiation, where the populations from south and north of sampling sites were clearly separated from each other, was revealed by both the cluster and principal coordinates analyses. Generally, the result of this study indicates that E. sibiricus contains high molecular variation in its populations. The implications of these results for the conservation of the species are discussed.  相似文献   

15.
Gardenia jasminoides Ellis is used in traditional Chinese medicine (TCM) in China. Levels of genetic variation and patterns of population structure within and among eight wild or cultivated populations of G. jasminoides Ellis in China were investigated using amplified fragment length polymorphism (AFLP) markers. Of the 11 primers screened, four produced highly reproducible AFLP bands. Using these primers, 244 discernible DNA fragments were generated with 165 bands (67.6%), were polymorphic, indicating considerable genetic variation at the species level. In contrast, there were relatively low levels of polymorphism at the population level with the percentage of polymorphic bands (PPB) ranging from 36.89% to 59.43%. Genetic diversity within populations ranged from 0.2086 to 0.3108, averaging 0.2392 at the species level. A high level of genetic differentiation among populations was detected based on Nei's genetic diversity analysis (76.59%), Shannon's index analysis (64.8%) and AMOVA analysis (72.75%). No significant statistical differences (analysis of molecular variance [AMOVA], p = 0.0639) in AFLP variation were found between regions. However, the variance among populations and within populations differed significantly (p < 0.001). An indirect estimate of historical levels of gene flow (Nm = 1.7448) was consistent with the high mean genetic identity (mean I = 0.9263) found among populations. There is an association between geographic and genetic distances between populations. Presently gene change exists between populations.  相似文献   

16.
Li  Ang; Ge  Song 《Annals of botany》2001,87(5):585-590
Genetic variation and clonal diversity of seven Psammochloavillosa(Poaceae) populations from northwest China were investigatedusing inter simple sequence repeat (ISSR) markers. Of the 84primers screened, 12 produced highly reproducible ISSR bands.Using these primers, 173 discernible DNA fragments were generatedwith 122 (70.5%) being polymorphic, indicating considerablegenetic variation at the species level. In contrast, there wererelatively low levels of polymorphism at the population levelwith the percentage of polymorphic bands (PPB) ranging from6.1 to 26.8. Analysis of molecular variance (AMOVA) showed thata large proportion of genetic variation (87.46%) resided amongpopulations, while only 12.54% resided among individuals withinpopulations. Clonal diversity was also high with 98 genets beingdetected from among 157 individuals using 12 ISSR primers. Theevenness of distribution of genotypes in P. villosa populationsvaried greatly, with all of the genotypes being local ones.No significant differences in genetic or clonal diversity werefound between populations in mobile or fixed dunes. The mainfactor responsible for the high level of differentiation amongpopulations and the low level of diversity within populationsis probably the clonal nature of this species, although selfingmay also affect the population genetic structure to some extent.The efficiency of ISSRs in identifying genetic individuals wasmuch higher than that of allozymes. An approximately asymptoticcorrelation was found between the number of genets detectedand the number of polymorphic loci used, suggesting that useof a high number of polymorphic bands is critical in genet identification.Copyright 2001 Annals of Botany Company Psammochloa villosa, ISSRs, genetic variation, clonal diversity  相似文献   

17.
Inter-simple sequence repeat markers (ISSR) were used to estimate genetic diversity within and among 10 populations of Rhodiola chrysanthemifolia along Nianqingtangula Mountains and Brahmaputra, a species endemic to the Qinghai-Tibet Plateau and an endangered medicinal plant. Of the 100 primers screened, 13 produced highly polymorphic DNA fragments. Using these primers, 116 discernible DNA fragments were generated of which 104 (89.7%) were polymorphic, indicating substantial genetic diversity at the species level. Genetic diversity measured by the percentage of polymorphic bands (PPB) at the population level ranged from 21.97% to 48.8%. Analysis of molecular variance (AMOVA) showed that the genetic variation was found mainly among populations (77.3%), but no regional differentiation was discernible. Variance within populations was only 22.7%. The main factor responsible for this high level of differentiation among populations is probably the historical geographical and genetic isolation of populations in a harsh mountainous environment. Concerning the management of R. chrysanthemifolia, the high genetic differentiation of populations indicates the necessity of conserving the maximum possible number of populations.  相似文献   

18.
张杰  王佳  李浩宇  张慧荣  王迎春 《生态学报》2012,32(14):4443-4452
采用 ISSR 分子标记对蒙古扁桃(Prunus mongolica)6个自然种群的遗传多样性进行了分析.12条ISSR引物共扩增出200条带,其中199条具多态性,多态位点比率为99.5%.在种群水平上多态位点百分率平均为55.3%.Nei's基因多样性、Shannon's信息指数在种群水平上分别为0.3241和0.4875,在物种水平上分别为0.3105和0.4722.根据基因分化系数,测得基因流值Nm为0.8266.UPGMA聚类分析结果表明:乌海千里沟种群和东升庙那仁乌拉种群遗传一致度最大,遗传关系最近.ISSR检测结果表明,包头萨拉齐种群的遗传多样性最丰富,在制定原位种质保护计划时,应优先保护包头萨拉齐周边地区的蒙古扁桃.  相似文献   

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