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1.
【背景】西花蓟马于2003年入侵中国后,迅速传播扩散并在局部区域造成严重危害,对我国蔬菜、花卉及果树产业的健康发展构成了巨大威胁。【方法】以线粒体DNA标记技术,对采自我国13个省(市)不同地理区域西花蓟马种群的175条COⅠ基因进行序列变异及群体遗传结构分析。【结果】试验共检测到13个单倍型,各地理种群西花蓟马的单倍型多样性Hd较高,为0.691,而核苷酸多样性π较低,为0.00652。总体固定指数Fst为0.24359,基因流Nm为0.78;种群之间固定指数和基因交流分析表明,我国各地理种群间可能出现了一定分化。种群间AMOVA分析显示,我国西花蓟马的遗传变异主要来自种群内部。对国内外不同地理种群COⅠ基因序列的单倍型进行聚类分析表明,我国西花蓟马有2个品系,即温室品系和羽扇豆品系,其中羽扇豆品系来源于新西兰和荷兰,而广泛存在的温室品系存在多个入侵来源。【结论与意义】我国西花蓟马各地理种群的发生,既与国际贸易活动有关,又与国内蔬菜、花卉、水果等的调运以及观光旅游密不可分。研究结果对西花蓟马的有效阻截及其种群扩张趋势监测意义重大。  相似文献   

2.
【目的】基于mtDNA COI和COⅡ的联合序列,探讨中国南方茶棍蓟马Dendrothrips minowai地理种群的遗传多样性与遗传分化。【方法】利用MEGA 6.0, DnaSP 5.10和Arlequin 3.5.2.2等软件对中国南方茶棍蓟马8个地理种群遗传多样性、遗传分化、基因流、分子变异及地理距离与遗传距离的相关性进行分析,并推断群体演化历史。【结果】茶棍蓟马mtDNA COI和COⅡ序列均具有明显的AT偏好性,COI和COⅡ联合序列的长度为1 146 bp,共有22个单倍型。中国南方茶棍蓟马总群体遗传多样性较高,表现出高单倍型多样性(Hd=0.924)和低核苷酸多样性(π=0.00600)。8个地理种群总群体的遗传分化程度高(FST=0.84830),基因交流水平低(Nm=0.040),群体可能由于遗传漂变而发生明显分化。AMOVA分析显示,茶棍蓟马种群的遗传变异主要来自组间种群(FCT=0.84922);Mantel检测显示地理距离与遗传距离存在显著的正相关(r=0.5029, P<0.01)。中性检验结果表明,除云南两个地理种群外的其他地理种群近期可能经历了种群扩张。【结论】中国南方茶棍蓟马地理种群遗传多样性较高,具有明显的遗传分化,基因交流较少;地理距离可能是影响茶棍蓟马地理种群遗传分化的主要因素之一。  相似文献   

3.
【目的】木领针蓟马Helionothrips mube近年来成为芋头Colocasia esculenta上的一种常见害虫。本研究旨在探讨其中国西南地区地理种群间的遗传变异。【方法】通过Sanger法测定了21个地理种群132头木领针蓟马的线粒体COI基因序列,利用MEGA, DnaSP, Arlequin和Network等软件对木领针蓟马种群间的遗传多样性、遗传分化、分子变异等进行分析。【结果】获得的木领针蓟马132条线粒体COI序列(643 bp)中共发现34个变异位点、16种单倍型,其中单倍型H1出现频率最高、分布最广。木领针蓟马总群体的遗传多样性较高(Hd=0.712, Pi=0.00413, K=2.655),遗传分化程度极大(Fst=0.3443),基因交流水平不高(Nm=0.96)。分子方差分析(AMOVA)表明,木领针蓟马的遗传分化主要来自种群内部,Mantel检测出种群地理距离与遗传距离呈正相关。总群体中性检验Tajima’s D值显著负值,Fu’s Fs值不显著,错配分布曲线呈多峰。综合种群间遗传距离、单倍型系统发育树及中介网络图结果,表明四川成都(CHD)、云南昌宁(CHN)和贵州遵义(ZY)3个种群的遗传分化程度均高于其他种群。【结论】中国西南地区木领针蓟马总群体的遗传多样性较高,遗传分化明显,种群间的基因交流受到地理距离的影响,总群体在较近的历史时期内没有出现扩张现象。  相似文献   

4.
基于线粒体COI基因序列对高原鼢鼠7个地理种群的遗传多样性、遗传分化和基因流进行分析,158条COI基因序列中发现了570个变异位点,界定了54个COI单倍型。总体单倍型多样性指数Hd为0.911,种群单倍型多样性在0.278—0.964之间,高原鼢鼠的种群遗传多样性较高。群体总的遗传分化系数Fst为0.611,群体间的基因流Nm在-0.020—3.700之间,部分地理种群之间的遗传分化程度高,基因流弱。AMOVA分子变异分析显示,高原鼢鼠的遗传变异主要来自种群之间(77.56%),种群内部的遗传变异较低(22.44%)。中性检验(P0.01)与错配分析显示高原鼢鼠种群经历了群体扩张事件。IBD未检测到地理距离与种群间遗传距离的显著性相关关系(R2=0.124,P=0.118)。综合分析认为,高原鼢鼠不同地理种群间遗传分化的原因除地理隔离外,还与迁移扩散方式、进化过程和其他环境因素有关。  相似文献   

5.
【目的】葱斑潜蝇Liriomyza chinensis是葱蒜类蔬菜上的重要经济害虫,在我国广泛分布。本研究旨在阐析中国葱斑潜蝇的地理种群遗传分化。【方法】以中国8省12个不同地理种群的253头葱斑潜蝇为样本,测定其mtCOI基因序列;依据获得的mtCOI基因序列,利用MEGA7.0, DnaSP 6.1和Arlequin 3.5等软件对葱斑潜蝇地理种群的遗传多样性、基因流水平和遗传变异等进行分析。【结果】在253头个体的759 bp mtCOI基因片段中,获得13个单倍型,各单倍型间K2P遗传距离均小于0.02;其中单倍型Hap1为12个地理种群所共享,总发生频率高达81.82%。总群体单倍型多样性较低(Hd=0.327),核苷酸多样性(Pi)为0.00159,核苷酸平均差异数(K)为1.21011;葱斑潜蝇总群体遗传分化程度中等(FST=0.06971),基因交流较充分(Nm=3.33629)。分子方差分析(AMOVA)结果表明,遗传变异来源为群体内;总群体Tajima’s D检验值为显著负值;Mantel检测结果说明种群间的遗传距离与地理距离没有相关性。【结论】中国葱斑潜蝇地理种群的遗传多样性较低,基因交流较充分,遗传分化程度中等,且地理距离并不影响其遗传分化程度;葱斑潜蝇总群体在较近的历史时期未经历明显的种群扩张和种群增长。  相似文献   

6.
王兴亚  许国庆 《昆虫学报》2014,57(9):1061-1074
【目的】为了明确我国甜菜夜蛾Spodoptera exigua地理种群间的遗传分化及基因流,阐明该种害虫在我国的种群历史动态。【方法】本研究对采自我国20个地理种群的529头甜菜夜蛾样品进行线粒体COI基因序列测定与分析,利用DnaSP 5.0和Arlequin 3.11软件分析种群间遗传多样性、遗传分化、基因流水平及分子变异,构建了单倍型系统发育树与单倍型网络图。【结果】在所分析的所有529个序列样本中,共检测出10个单倍型,其中Hap_1为所有种群所共享。总群体遗传多样性较低(Hd=0.257±0.025,Pi=0.0007±0.0001,Kxy=0.323),群体间遗传分化较小(FST=0.211),基因流水平较高(Nm=1.870)。AMOVA分析表明,甜菜夜蛾遗传变异主要来自种群内,种群间变异水平较低。各种群间遗传分化程度与地理距离无显著相关性(R2=0.005,P>0.05)。各单倍型相互散布在不同种群中,未形成明显系统地理结构。中性检验(Tajima’s D=-2.177, P<0.05; Fu’s FS=-8.629, P<0.05)与错配分布分析表明,我国甜菜夜蛾种群曾经历种群近期扩张。【结论】研究结果揭示,甜菜夜蛾各种群间的基因交流并未受到地理距离的影响,验证了甜菜夜蛾具有高度的迁飞能力。  相似文献   

7.
【目的】大豆蚜Aphis glycines逐渐成为栽培大豆上的世界性重要害虫,为明确大豆蚜不同地理种群的遗传分化及遗传多样性,本研究探讨其在中国的种群遗传变异。【方法】测定了采自7个省共14个地理种群339头大豆蚜的线粒体COⅡ基因的673 bp序列,利用Dna SP 5.0、Arlequin 3.5.1.2、Network4.6.1.3等软件对地理种群间的大豆蚜的遗传多样性、遗传分化程度及分子变异进行分析,并建立了单倍型网络图及单倍型系统进化树。【结果】在所分析的339个COⅡ序列中,共检测出7个单倍型,其中H1为各种群所共享。种群内遗传多样性较低(Hd=0.479±0.030,Pi=0.00166±0.00018),种群内遗传分化相对较大(Fst=0.1985),基因流水平较高(Nm=2.019)。中性检验结果不显著(Tajima’s D=﹣0.931,P>0.10,Fu’s Fs=0.220,P>0.10),说明中国地区大豆蚜在较近的历史时期内没有出现种群扩张现象。分子变异分析(AMOVA)结果表明,大豆蚜遗传变异主要来自种群内部(80.15%),而种群间未发生明显的遗传分化。根据各地理种群的单倍型建立的系统发育树、单倍型网络图表明,各单倍型散布在不同的地理种群中,无明显的地理分布格局。【结论】大豆蚜不同地理种群的遗传多样性不高,各种群的遗传距离与地理距离之间没有显著线性相关性,各种群间的基因交流并未受到地理距离的影响。  相似文献   

8.
【目的】甜菜夜蛾Spodoptera exigua逐渐成为世界性重要害虫,为明确甜菜夜蛾不同地理种群的遗传分化及遗传多样性,本研究探讨其在中国的种群遗传变异。【方法】测定了采自15个地理种群154个甜菜夜蛾的线粒体COⅠ基因的547 bp序列,利用DnaSP 5.0、Arlequin 3.5.1.2等软件对甜菜夜蛾不同种群间的遗传多样性、遗传分化及分子变异进行分析,并建立单倍型系统进化树。【结果】在所分析的154个COⅠ序列中,共检测出5个单倍型,其中H1为各种群所共享种群内遗传多样性较低(Hd=0.172±0.041,Pi=0.00077±0.0002),种群内遗传分化相对较大(FST=0.3182),基因流水平较高(Nm=1.071)。中性检验结果不显著(Tajima’s D=-1.278,P0.10,Fu’s Fs=-1.660,P0.10),说明中国地区甜菜夜蛾在较近的历史时期内没有出现种群扩张现象。分子变异分析(AMOVA)结果表明,甜菜夜蛾遗传变异主要来自种群内部(68.18%),而种群间未发生明显的遗传分化。根据各地理种群的单倍型建立的系统发育树表明,各单倍型散布在不同的地理种群中,无明显的地理分布格局。【结论】甜菜夜蛾不同种群的遗传距离与地理距离间无显著线性相关性,不同种群间的基因交流不受地理距离的影响。这些数据表明,除了遗传因素之外,不同因素的组合,例如地理距离、环境条件和生理行为,可能在甜菜夜蛾种群内和之间形成变异中起重要作用。  相似文献   

9.
基于ITS序列的灵芝遗传多样性与群体遗传分化研究   总被引:1,自引:0,他引:1  
本研究基于ITS序列对中国8个不同地理群体的168份灵芝样本的分子变异、遗传多样性、群体遗传分化程度进行了分析。结果表明:168个样品中共检测到39个单倍型(H1-H39),表现出较低的遗传多样性水平(Hd=0.867±0.018,Pi=0.00304±0.00024),各群体的遗传多样性水平相差不大;TCS单倍型网络图和基于ML、NJ法构建的单倍型系统发育树显示,各地理群体的遗传距离与地理距离之间没有形成对应关系,二者没有明显的相关性;AMOVA分析结果显示不同地理群体间的遗传变异占4.33%,群体内的变异占95.67%,遗传分化主要来自于群体内部。总体和各地理群体的中性检验结果显示,群体扩张遵循中性进化,群体大小保持相对稳定。整体的遗传分化指数Fst为0.04331,基因流Nm为2.99,表明各地理群体间存在频繁的基因交流,群体遗传分化较小。推测原因可能为种群扩张历史较短,分布范围较窄,造成遗传多样性偏低,各群体间遗传分化不大。  相似文献   

10.
【目的】大豆食心虫Leguminivora glycinivorella(Matsumura)是我国大豆Glycina max最重要的蛀荚害虫。本研究旨在探讨中国大豆食心虫不同地理种群的遗传分化情况。【方法】通过测定大豆食心虫19个地理种群208头老熟幼虫的线粒体COⅡ基因序列(723 bp),利用MEGA6.0和Dna SP 5.0等软件分析大豆食心虫不同地理种群的基因序列变异和遗传分化情况。【结果】在19个大豆食心虫地理种群中共获得208条COⅡ基因序列,发现61个变异位点,包含57个单倍型。总群体单倍型多样度Hd=0.8522,各地理种群单倍型多样度范围在0.1818~0.9546间,总群体的固定系数Fst=0.4619,总遗传分化系数Gst=0.1186,总基因流Nm=0.29。总群体Tajima’s D检验结果不显著,表明大豆食心虫在较近的历史时期未出现群体扩张现象,群体大小稳定。单倍型网络图、ML单倍型系统树及采用不同地理种群间遗传距离构建的UPGMA系统发育树均显示,贵阳(GY)和都安(DA)种群与其余地理种群分化明显。AMOVA分子变异分析结果显示,东北组、西北组、黄淮组、华南组及西南组种群组间所占总变异的比例大于组内。【结论】大豆食心虫不同地理种群间基因交流较少,整体的遗传多样性和遗传分化程度较高,遗传分化主要来自地理种群组间,且地理距离是影响不同地理种群间遗传距离的重要因素。  相似文献   

11.
Saccharum spontaneum L. is a crucial wild parent of modern sugarcane cultivars whose ploidy clones have been utilized successfully in improving the stress resistance and yield related traits of sugarcane cultivars. To establish knowledge regarding the genetic variances and evolutional relationships of ploidy clones of Saccharum spontaneum collected in China, the rDNA-ITS sequences of 62 ploidy clones including octaploid clones (2n = 64), nonaploid clones (2n = 72), decaploid clones (2n = 80), and dodecaploid clones (2n = 96), were obtained and analyzed. The rDNA-ITS sequences of four species from Saccharum and Sorghum bicolor selected as controls. The results showed that decaploid clones (2n = 80) possess the most abundant variances with 58 variable sites and 20 parsim-informative sites in ITS sequences, which were then followed by octaploid clones with 43 variable sites and 17 parsim-informative sites. In haplotype diversity, all four population exhibited high diversity, especially nonaploid and decaploid populations. By comparing the genetic distances among four ploidy populations, the dodecaploid population exhibited the closest relationship with the nonaploid population, and then the relationship strength decreased successively for the decaploid population and then for the octaploid population. Population differentiation analysis showed that the phenomena of population differentiation were not found among different ploidy populations, and low coefficient of gene differentiation(Gst) and high gene flow(Nm) occur among these populations possessing close genetic relationship. These results mentioned above will contribute to the understanding of the evolution of different ploidy populations of Saccharum spontaneum and provide vital knowledge for their utilization in sugarcane breeding and innovation.  相似文献   

12.
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   

13.
Dalbergia sissoo, a wind-dispersed tropical tree, is one of the most preferred timber tree species of South Asia. Genetic diversity and differentiation among natural populations of D. sissoo were examined for the first time. We found a relatively high level of genetic diversity in D. sissoo, both at the species level (percentage of polymorphic bands = 89.11%; H = 0.2730; I = 0.4180) and the population level (percentage of polymorphic bands = 68.7%; H = 0.239; I = 0.358), along with a relatively low degree of differentiation among populations (GST = 0.1311; AMOVA = 14.69%). Strong gene flow among populations was estimated, N(m) = 3.3125. The Mantel test suggested that genetic distances between populations were weakly correlated with geographic distances (R = 0.3702, P = 0.1236). The high level of genetic diversity, low degree of differentiation, strong gene flow, and weak correlation between genetic and geographic distances can be explained by its biological character and wide-spread planting. This information will be useful for the introduction, conservation and further studies of D. sissoo and related species.  相似文献   

14.
BACKGROUND AND AIMS: Oncidium hookeri is a neotropical species of epiphytic Orchidaceae found in the Brazilian Atlantic rainforest at the top of the Mantiqueira Range of mountains. The genetic variation of O. hookeri was studied to assess the distribution of genetic variability within and among six populations localized in Atlantic rainforest remnants. Gene flow among populations and the occurrence of recent bottlenecks were investigated in order to infer the degree of isolation of these populations. METHODS: Thirteen polymorphic loci were used for allozyme electrophoresis. The data were analysed by means of standard statistical approaches, to estimate gene diversity and the genetic structure of the populations. KEY RESULTS: The mean gene diversity and allelic richness were H(e) = 0.099 and A = 1.75, respectively. F-statistics revealed high heterozygote deficiencies in all populations (F(IS) = 0.43-0.82). Several rare alleles were found in all the populations, and three populations presented private alleles. Low genetic differentiation among O. hookeri populations was detected (F(ST) = 0.029); natural selection may be involved in PGM locus differentiation among populations. The genetic differentiation between paired populations was low, bearing no correlation with geographic distance (Mantel test: r = -0.34, P = 0.72). Only two populations showed signs of recent bottlenecks. CONCLUSIONS: The heterozygote deficiency found seems to be caused by pollinator behaviour; the low frequencies of several alleles of different loci can be maintained due to clonal propagation. Despite the stochastic nature of the wind-dispersal of seeds to long distances, this process may promote an effective gene flow among populations, thus avoiding genetic differentiation.  相似文献   

15.
Aims The dispersal of pollen and seeds is spatially restricted and may vary among plant populations because of varying biotic interactions, population histories or abiotic conditions. Because gene dispersal is spatially restricted, it will eventually result in the development of spatial genetic structure (SGS), which in turn can allow insights into gene dispersal processes. Here, we assessed the effect of habitat characteristics like population density and community structure on small-scale SGS and estimate historical gene dispersal at different spatial scales.Methods In a set of 12 populations of the subtropical understory shrub Ardisia crenata, we assessed genetic variation at 7 microsatellite loci within and among populations. We investigated small-scale genetic structure with spatial genetic autocorrelation statistics and heterogeneity tests and estimated gene dispersal distances based on population differentiation and on within-population SGS. SGS was related to habitat characteristics by multiple regression.Important findings The populations showed high genetic diversity (H e = 0.64) within populations and rather strong genetic differentiation (F ′ ST = 0.208) among populations, following an isolation-by-distance pattern, which suggests that populations are in gene flow–drift equilibrium. Significant SGS was present within populations (mean Sp = 0.027). Population density and species diversity had a joint effect on SGS with low population density and high species diversity leading to stronger small-scale SGS. Estimates of historical gene dispersal from between-population differentiation and from within-population SGS resulted in similar values between 4.8 and 22.9 m. The results indicate that local-ranged pollen dispersal and inefficient long-distance seed dispersal, both affected by population density and species diversity, contributed to the genetic population structure of the species. We suggest that SGS in shrubs is more similar to that of herbs than to trees and that in communities with high species diversity gene flow is more restricted than at low species diversity. This may represent a process that retards the development of a positive species diversity–genetic diversity relationship.  相似文献   

16.
大别山山核桃天然群体遗传结构的初步分析   总被引:1,自引:0,他引:1  
利用RAPD分子标记技术检测了大别山山核桃3个天然居群的遗传多样性和遗传结构。20条10 bp随机引物共检测到238个扩增位点,其中多态性位点162个,多态位点百分率(PPB)为68.1%。居群水平Shannon’s多态性信息指数(I)介于0.2651~0.2801之间;居群水平Ne i’s基因多样性指数(H)介于0.1789~0.1890之间。遗传变异计算显示大别山山核桃居群间基因分化系数(Gst)为0.4063,分子方差分析(AMOVA)表明居群间基因分化水平为0.4177,居群间基因流(Nm)为0.7306,说明大别山山核桃大部分变异存在于居群内,居群间基因交流相对较少。这一结果符合大别山山核桃风媒、异交的繁育系统特点,但其居群间基因分化程度明显高于异交植物的平均水平(Gst=0.1930)。地理隔离、居群内近交及居群间基因流受阻可能是形成目前大别山山核桃天然群体遗传结构的主要因素。  相似文献   

17.
七筋菇自然居群的遗传结构分析   总被引:4,自引:0,他引:4  
采用ISSR分子标记,对七筋菇(Clintonia udensis)17个居群的遗传多样性与遗传结构进行了研究。结果表明:七筋菇不同居群的多态位点百分率PPB为11.90%~59.52%,总的多态位点百分率PPB为98.8%,具有高的遗传多样性。Shannon多样性指数(0.6903)和基因分化系数(GST=0.6944)均揭示出七筋菇居群间存在明显的遗传差异,AMOVA分析结果也显示遗传变异主要发生在居群之间(81.47%),而居群内部的遗传变异仅为18.53%。七筋菇居群间的遗传距离从0.1871~0.6632,平均为0.3838,大于同一物种居群间的平均遗传距离值(0.05),同样表明七筋菇居群间的遗传多样性存在较大差异。七筋菇居群间的基因流Nm=0.2200,远远低于一般广布种植物的基因流(Nm=1.881)。Mantel检测显示居群间的遗传距离与地理距离之间没有显著相关性(r=0.029,P=0.3196)。七筋菇分布范围广以及其进化历史是其具有高遗传多样性的原因;居群间存在较高遗传变异可能是由于七筋菇本身的生物学特性、有限的基因流以及遗传漂变等原因造成的。  相似文献   

18.
Omphalogramma souliei Franch. Is an endangered perennial herb only distributed in alpine areas of SW China. ISSR markers were applied to determine the genetic variation and genetic structure of 60 individuals of three populations of O. Souliei in NW Yunnan, China. The genetic diversity at the species level is low with P= 42.5% (percentage of polymorphic bands) and Hsp=0.1762 (total genetic diversity). However, a high level of genetic differentiation among populations was detected based on different measures (Nei's genetic diversity analysis: Gst=0.6038; AMOVA analysis: Fst=0.6797). Low level of genetic diversity within populations and significant genetic differentiation among populations might be due to the mixed mating system in which xenog-amy predominated and autogamy played an assistant role in O. Souliei. The genetic drift due to small population size and limited current gene flow also resulted in significant genetic differentiation. The assessment of genetic variation and differentiation of the endangered species provides important information for conservation on a genetic basis. Conservation strategies for this rare endemic species are proposed.  相似文献   

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