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1.
新疆阜康荒漠红砂种群遗传结构及其与生态因子的耦合关系   总被引:12,自引:0,他引:12  
应用RAPD标记技术对分布于新疆阜康荒漠的重要植物红砂(Reaumuria soongorica(Pall.)Maxim)种群遗传结构和遗传多样性进行了分析。15条随机引物对红砂7个亚种群的136个个体进行扩增,共检测71个位点,其中多态位点69个。研究结果表明:红砂种群的多态位点比率(PPB)为97.18%,显示出分布于过渡带的红砂种群内存在较高的遗传多样性。Shannon多样性指数(0.307 5)、Nei基因多样性指数(0.312 7)和基因分化系数(G_(ST)=0.312 0)揭示了红砂种群遗传变异多存在于亚种群内,而亚种群间的遗传分化则较小。红砂业种群间的基因流Nm=1.102 8,Nm>1但低于一般风媒传粉植物(Nm=5.24)的基因流水平,处于分化的临界状态。AMOVA分析说明红砂种群变异的61.58%存在于亚种群内,而亚种群间的变异占总变异的38.02%。另外,通过RAPD资料的聚类分析及相关性分析研究,发现红砂自然种群的遗传结构与绿洲荒漠过渡带的微生境生态因子(主要是土壤因子)相关,其中红砂亚种群遗传多样性水平与土壤中全磷和CI含量呈显著负相关,与CO_3~2含量呈显著正相关。而其它土壤生态因子则与红砂的遗传多样性指数的相关性均不显著(P>0.05)。表明红砂个体的分布可能与过渡带土壤的某些易溶性盐分相关。研究还发现,随着土壤中有机质、水分、全氮和全磷含量的减  相似文献   

2.
新疆阜康荒漠地区叉毛蓬居群的遗传结构和分化   总被引:3,自引:2,他引:1  
应用RAPD技术,对新疆阜康荒漠地区叉毛蓬进行了居群遗传分析。结果表明:①用14个随机引物对5个叉毛蓬亚居群的98个个体进行了RAPD扩增,共检出3919条扩增片段,多态带3868条,总的多态位点百分率为98.7%;②Shannon多样性指数(HPOP/HSP=0.6933)和Nei基因多样性指数(HS/HT=0.6948)显示出大部分的遗传变异存在于叉毛蓬亚居群内,遗传分化系数(GST=o.3052)表明亚居群问的分子变异占居群总遗传变异的30%以上;②5个叉毛蓬亚居群间的平均遗传距离为0.1817,变异范围从0.1258到0.2445,与同一物种亚种间遗传距离的变幅较一致(0.02—0.20),表明5个亚居群间产生了遗传分化;④叉毛蓬亚居群的基因流Nm=1.138,低于一般广布种的基因流水平(Nm=1.881),且远低于毛乌素沙地柠条的基因流(Nm=5.9529),相对有限的基因流可能在叉毛蓬居群遗传分化的维持中起着作用。以上分析表明,尽管大部分的遗传多样性存在于叉毛蓬亚居群内,但5个亚居群间已有明显遗传分化的趋势。  相似文献   

3.
荒漠-绿洲过渡带是绿洲向沙漠系统的过渡地带,荒漠植物是绿洲扩展或荒漠化加速的缓冲器,土壤环境是影响植物演变的重要影响因素,土壤环境因素是整个过渡带演化的重要驱动力。通过对阜康荒漠-绿洲过渡带荒漠植物群落实地调查,利用通用植物数量分析软件CANOCO 5.0中冗余度分析(RDA),探讨过渡带影响荒漠植物群落数量特征指标的土壤驱动因子。结果表明:(1)土壤含水量、全N、全P和有机质是影响荒漠植物群落数量特征的主要驱动力因子,环境解释量累计达到69%,而总盐、p H和全K对荒漠植物群落数量特征影响较弱;(2)4个土壤主要驱动力对荒漠植物群落数量特征重要性大小顺序:土壤含水量有机质全N全P;(3)荒漠植物群落数量特征与土壤含水量、有机质和全P呈正相关,但与全N为负相关关系,揭示了土壤含水量、有机质和全P是利于荒漠植物群落稳定的正驱动力,而全N为抑制荒漠植物生长的负驱动力。综上所述,土壤各因子的驱动力作用不尽相同,存在正、负差异,协同维护荒漠植物群落数量特征的稳定和发展。  相似文献   

4.
对新疆阜康绿洲荒漠过渡带植物群落4个物种多样性指数和3层土壤19个指标进行回归分析,结果表明,土壤酸碱度,全盐量,Cl^-,K^ Na^ ,Mg^2 ,土壤有机质,全N和速效P与物种多样性有显著相关关系(P<0.05)。酸碱度和有机质与多样性的最好拟合为二项式,即高的物种多样性出现在梯度中间位置。其余6个指标与物种多样性为显著线形负相关关系。表明全盐量,Cl^-,K^ Na^ ,Mg^2 含量越多,物种多样性越小,全N和速效P与均匀度均呈显著负相关,表明全N和速效P含量上升,均匀度显著下降,植物个体数与土壤水盐的回归分析表明,植物多度受土壤水分和盐分影响显著(P<0.01)。  相似文献   

5.
新疆阜康地区植物群落物种多样性及其测度指标的比较   总被引:20,自引:0,他引:20  
对新疆阜康绿洲荒漠过渡带植被,分别采用重要值、盖度、多度计测了9种物种多样性指数,并进行了对比分析。结果表明:①对新疆阜康绿洲荒漠过渡带植被类型,以重要值和盖度为测度指标优于多以度为指标计测群落多样性指数;②对9个指数的主成分分析(PCA)表明,3个多样性指数中,Shannon-Wiener指数受丰富影响最大,其次是McIntosh指数,而Simpson指数与丰富度关系较远。  相似文献   

6.
该研究采用ISSR分子标记,对黄枝油杉7个自然种群的遗传多样性进行了分析。结果表明:用12条ISSR引物对218个黄枝油杉个体进行扩增,共扩增出125个位点。在物种水平上,多态性位点百分数(PPL)为100.00%,Shannon信息多样性指数(I)为0.417 7,Nei’s基因多样性指数(H)为0.266 6;在种群水平上,多态性位点百分数(PPL)在71.20%~92.00%之间,平均值为80.69%,Shannon信息多样性指数(I)在0.327 3~0.388 6之间,平均值为0.354 8,Nei’s基因多样性指数(H)在0.213 9~0.247 8之间,平均值为0.229 1。这说明黄枝油杉在物种水平和种群水平上均显示出较高的遗传多样性。Nei’s遗传多样性分析(Gst=0.143 3)和AMOVA分析(Φst=17.91%)表明,黄枝油杉的遗传变异主要存在于种群内,种群间的遗传分化程度较低,种群间保持一定的基因交流(Nm=2.989 01)。Mantel分析显示,黄枝油杉种群间的遗传距离和地理距离之间不存在显著的相关关系(r=0.456 7,P=0.061 00.05)。  相似文献   

7.
承德光秃山不同海拔油松居群遗传多样性   总被引:2,自引:0,他引:2  
为了解光秃山不同海拔下天然油松居群之间的遗传差异及探求遗传多样性与土壤因子的关联,为油松种源筛选和管理提供参考,本研究运用ISSR技术,对位于河北承德辽河源光秃山4个不同海拔油松天然居群共118个植株个体的遗传多样性进行分析。13个引物共扩增出177条清晰的条带,种群多态位点百分比(PPL)为60.2775%,Nei’s基因多样性指数(h)为0.2171,Shannon信息指数(I)为0.3222;不同种群遗传变异水平随海拔差异呈规律性变化,表现为沿海拔升高而呈低-高-低的分布规律,其中1354~1274 m范围的遗传多样性水平最高;在物种水平上油松具有较高的遗传多样性(PPL=98.33%,h=0.38142,I=0.5550),种群间的遗传分化系数Gst=0.6562。利用AMOVA软件对遗传变异的等级剖分结果表明,种群间有显著的遗传分化,约2/5的遗传变异存在种群间,种群内占3/5。Pearson相关分析表明,油松居群内遗传多样性与海拔、土壤养分(有机质、速效磷、速效钾含量)之间存在显著或一定的相关关系。Mantel检验结果显示,油松居群遗传距离与海拔差距、土壤养分因子的分异存在一定相关性。以上结果表明不同海拔区域的生态因子、低基因流等对油松居群间的遗传分化影响较大。  相似文献   

8.
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   

9.
明确珍稀濒危小种群阜康阿魏(Ferula fukanensis)的遗传多样性和遗传结构,是对其制定有效的保护和管理策略的基础和前提。本研究基于10对多态性好且可以稳定扩增的SSR引物对来源于3个居群87个珍稀濒危植物阜康阿魏的遗传多样性和遗传结构进行分析。结果显示:小种群的阜康阿魏具有相对较高的遗传多样性,居群间Nei’s基因多样性指数(hS)为0.514,总的Nei’s基因多样性指数(hT)为0.516,观测杂合度(Ho)为0.881,期望杂合度(He)为0.512,香农信息指数(I)为0.836,多态位点百分率(PPB)为100%,遗传分化程度较低 (Fst=0.007),95.9%的变异发生在居群内,遗传距离与地理距离无显著相关性,66.7%的居群遭遇了遗传瓶颈。结果表明,阜康阿魏遗传变异丰富,有较高的进化潜力。结合该种野外种群现状,建议建立保护区,开展就地保护,并加强引种和人工繁育等迁地保护措施,辅助阜康阿魏保育。本研究可为阜康阿魏植物资源保护提供理论支持,具有重要的理论和实践意义。  相似文献   

10.
该研究采用ISSR分子标记,对黄枝油杉7个自然种群的遗传多样性进行了分析。结果表明:用12条ISSR引物对218个黄枝油杉个体进行扩增,共扩增出125个位点。在物种水平上,多态性位点百分数( PPL)为100.00%,Shannon信息多样性指数( I)为0.4177,Nei’ s基因多样性指数( H)为0.2666;在种群水平上,多态性位点百分数(PPL)在71.20%~92.00%之间,平均值为80.69%,Shannon信息多样性指数(I)在0.3273~0.3886之间,平均值为0.3548,Nei’ s基因多样性指数( H)在0.2139~0.2478之间,平均值为0.2291。这说明黄枝油杉在物种水平和种群水平上均显示出较高的遗传多样性。 Nei’ s遗传多样性分析( Gst=0.1433)和AMOVA分析(Φst=17.91%)表明,黄枝油杉的遗传变异主要存在于种群内,种群间的遗传分化程度较低,种群间保持一定的基因交流( Nm=2.9890>1)。 Mantel分析显示,黄枝油杉种群间的遗传距离和地理距离之间不存在显著的相关关系( r=0.4567, P=0.0610>0.05)。  相似文献   

11.
Twelve natural populations of four cedar pine species,Pinus sibirica, P. cembra, P. pumila, andP. koraiensis, occurring in the Soviet Union were investigated by starch-gel electrophoresis. Frequencies of 55 alleles at 19 loci were determined. Interpopulation genetic diversity inP. sibirica andP. pumila was only 2–4 per cent of the total genetic diversity. Nei's distance coefficient (Dn) was used to estimate the level of genetic differentiation among conspecific populations and among species. Dn values among populations ranged from 0.006 to 0.038. A dendrogram constructed using Dn values divided cedar pines species into 2 clusters:sibirica-cembra (Dn = 0.030) andpumila-koraiensis (Dn = 0.143). Nei's distance between these clusters was 0.232. On the basis of the data obtained it was possible to draw the following conclusion:P. sibirica, P. pumila, andP. koraiensis are distinct species, whileP. cembra should apparently be regarded as geographicalP. sibirica race.  相似文献   

12.
青藏高原东部矮生嵩草遗传多样性的RAPD研究   总被引:10,自引:0,他引:10  
赵庆芳  李巧峡  马世荣  崔燕  王刚 《生态学报》2006,26(8):2494-2501
基于随机扩增多态DNA(RAPD)方法分析了青藏高原东部矮生嵩草(Kobresia humilis)8个居群的遗传多样性及分化程度。14条随机引物共扩增出194个位点数,其中多态性片段168个。研究表明,矮生嵩草无论是在物种水平(多态条带比率PPB(%)为86.60%,Nei’s基因多样性(h)为0.2622,Shannon’s信息指数(I)为0.3983),还是在居群水平(PPB=62.65%,h=0.2126.I=0.3185),都具有较高的遗传多样性,居群的遗传多样性大小与生境有相关性。而且,用SPSS分析得出,8个居群的遗传多样性大小与海拔没有明显相关性。用AMOVA数据表明矮生嵩草的遗传变异主要分布在居群内(83.04%),居群间变异较小(16.96%)。遗传分化指数Gst也显示了相似的结果(0.1891)。从矮生嵩草8个居群的遗传距离和聚类分析发现,以及用NTSYS对矮生嵩草8个居群的的遗传距离矩阵与地理距离矩阵间的关系进行Mantel检测,其结果表明各居群间的遗传距离与地理距离之间没有明显相关性(r=0.37779,P=0.9718〉0.05)。  相似文献   

13.
应用ISSR分子标记技术对本溪草河口林场的红松(Pinus koraiensis)人工林两个种群的60个个体进行遗传多样性分析。14个ISSR引物共检测到90个位点,其中多态位点65个,多态位点比率0.722 2。Nei指数统计结果表明,红松人工林的遗传多样性喜鹊沟种群(0.278 9)大于烈士墓种群(0.271 2),Shannon指数统计结果与Nei指数相同。研究证实草河口林场红松人工林保存了较多的遗传多样性。  相似文献   

14.
采用不连续聚丙烯酰胺凝胶电泳技术对采自新蛹阜康绿洲荒漠过渡带的40个梭梭个体的同工酶遗传多态性进行了初步研究。从24个酶系统中筛选,得到了14个酶系统可用于该植物的遗传变异分析。共检测出30个位点、54个等位基因,其中18个位点表现出多态性。在物种水平上,多态位点比率为60%,而平均每个位点的等位基因数为1.8。本研究的方法和结果将为后续相关研究提供一定的参考。  相似文献   

15.
A technique for obtaining unbiased estimates of genetic parameters (allelic frequencies of RAPD loci, heterozygosity (H), Wright's F statistic, and Nei's genetic distances) in populations of the European (Capreolus capreolus L.) and Siberian (Capreolus pygargus Pall.) roe deer is presented. The technique employs jackknifing and multiple comparative analysis based on a modified Holmes's procedure for Bonferroni's test. It was demonstrated that samples from local groups of roe deer in the Trans-Ural region did not differ significantly in allelic frequencies (0.8, 0.81, and 0.78; P > 0.447) or Nei's genetic distances (0.0056, 0.0273, and 0.0218; P = 0.26), but they could be differentiated based on Wright's F statistic (0.0346, 0.0519, and 0.0450; P = 10(-9)). The parameters of intrapopulation heterozygosity (from 0.18 to 0.042) formed a gradient from the east to the west. Calibration estimates of molecular evolution rate in the family Cervidae obtained based on published data and Jukes-Cantor genetic distances estimated in this study demonstrated that the Siberian roe deer has split into two subspecies, C. pygargus pygargus Pall. and C. pygargus tianschanicus Satunin in the interval between 229 and 462.3 thousand years ago. The species formation of the Siberian and European roe deer was dated between 1.375 and 2.75 Myr ago. Based on the results obtained we recommend the approaches used in the study for analysis of population genetic structure and phylogenetic relationships between populations, subspecies, species, and higher taxa.  相似文献   

16.
羊草遗传多样性的研究   总被引:23,自引:0,他引:23       下载免费PDF全文
本文运用光镜和电镜技术,对不同土壤条件下7个羊草种群营养体形态结构进行了观察,在此基础上,运用RAPD技术,对7个羊草种群的遗传多样性进行了研究,分析了遗传多样性与环境因子的相关关系。结果表明:1)7个羊草种群根的结构与盐碱土型羊草结构相似;茎的结构与黑钙土型羊草结构相似;叶的结构呈现黑钙土型羊草结构和盐碱土型羊草结构之间的过渡类型。2)羊草种群的遗传多态性非常高,53个引物在7个羊草种群中共检测到365条扩增片段,多态带303条,多态率达到83.01%。特有带121条,占33.21%。3)7个羊草种群之间的遗传距离变异范围为0.2349-0.6166,聚类分析表明这7个种群可分子为3组。4)多态位点百分数与土壤有机质、全氮含量呈现比较大的负相关;特有带百分数与土壤镁离子、钙离子呈现较大的负相关;遗传距离值与土壤的电导率、水溶性钠离子呈现较大的正相关。  相似文献   

17.
Semerikova SA  Semerikov VL 《Genetika》2007,43(12):1637-1646
The genetic variability in 29 populations of Abies sibirica, three of A. nephrolepis, and seven of A. sachalinensis was studied using SSR markers of chloroplast DNA. Stable amplification and polymorphic products were obtained using primer pairs Pt71936 and Pt30204 (with nine and forteen alleles, respectively) of 10 pairs. Totally, 70 haplotypes were found, 43 in A. sibirica, 49 in A. sachalinensis, and 31 in A. nephrolepis. The highest values of genetic diversity parameters were observed in A. sachalinensis, and the lowest in A. nephrolepis. The Siberian fir differs from Far East species by the uneven multimodal frequency distributions of allele length in both cpSSR loci, which is explained by the presence of few separated from each other dominating haplotypes. This fact indicates that A. sibirica and the Far East species have different demographic histories. In A. sibirica, the proportion of diversity between populations in the total genetic diversity, calculated taking into account the differences between haplotypes (R(ST)) was 8.34% and 4.42% without accounting for haplotypes differences (R(ST) > G(ST), P= 0.01). The pairwise G(ST) correlate significantly with geographic distances between the populations A. sibirica and with genetic distances D calculated from allozyme data. No such correlations were found with the R(ST) parameter. The results of cpSSR variability analysis strongly support the conclusions inferred from allozyme data: several geographic groups of comparatively genetically close populations are identified, which may be explained by the invasion of colonization of the present-day Siberian fir range.  相似文献   

18.
Correlates between genetic diversity at intra- and interpopulation levels and the species diversity in plant communities are rarely investigated. Such correlates may give insights into the effect of local selective forces across different communities on the genetic diversity of local plant populations. This study has employed amplified fragment length polymorphism to assess the genetic diversity within and between 10 populations of Ranunculus acris in relation to the species diversity (richness and evenness) of grassland communities of two different habitat types, 'seminatural' and 'agriculturally improved', located in central Germany. Within-population genetic diversity estimated by Nei's unbiased gene diversity (HE) was high (0.258-0.334), and was not correlated with species richness (Pearson's r = -0.17; P = 0.64) or species evenness (Pearson's r = 0.15; P = 0.68) of the plant communities. However, the genetic differentiation between R. acris populations was significantly correlated with the difference in species evenness (Mantel's r = 0.62, P = 0.02), but not with difference in species richness of plant communities (r = -0.17, P = 0.22). Moreover, we also found that populations of R. acris from the 'seminatural' habitat were genetically different (amova, P < 0.05) from those in 'agriculturally improved' habitats, suggesting that gene flow between these habitat types is limited. The results reported in this study may indicate that habitat characteristics influence the genetic diversity of plant species.  相似文献   

19.
Wang JL  Zhao NX  Gao YB  Lin F  Ren AZ  Ruan WB  Chen L 《Genetika》2006,42(5):587-594
Random amplified polymorphic DNA (RAPD) analysis was used to characterize the genetic diversity and population genetic structure of Stipa krylovii populations in Inner Mongolia steppe of North China. Thirteen 10 bp oligonucleotide primers, which generated 237 RAPD bands, were used to analyze 90 plants of five populations from three regions, meadow steppe, typical steppe and desert steppe, from the east to the west. The genetic diversity of Stipa krylovii that was revealed by observed number of alleles (na), expected number of alleles (ne), Nei's diversity index (h), Shannon's diversity index (H), amplificated loci, polymorphic loci and the percentage of polymorphic loci (PPB) increased from the east to the west. The Pearson's correlation analysis between genetic diversity parameters and ecological parameters indicated that the genetic diversity of Stipa krylovii was associated with precipitation and cumulative temperature variations along the longitude (humidity were calculated by precipitation and cumulative temperature). Dendrogram based on Jaccard's genetic distance showed that the individuals from the same population formed a single sub-group. Although most variation (56.85%) was within populations, there was high genetic differentiation among populations of Stipa krylovii, high differentiation within and between regions by AMOVA analysis. Either Nei's unbiased genetic distance (G(ST)) or gene flow (Nm) among pairwise populations was not correlated with geographical distance by Mantel's test (P > 0.05), suggesting that there was no consistency with the isolation by distance model in these populations. Natural selection may have played a role in affecting the genetic diversity and population structure, but habitat destruction and degradation in northern grassland in China may be the main factor responsible for high genetic differentiation among populations, within and among regions.  相似文献   

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