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1.
安徽琅琊山青檀种群结构与空间分布格局研究   总被引:1,自引:0,他引:1  
通过设置500m2样方8个,应用“相邻格子法”获取野外资料,采用空间序列代替时间的方法与6种聚集度指标,对安徽琅琊山青檀的种群结构与空间分布格局进行了研究.结果表明:(1)各样地的青檀种群结构大致可分为增长型、稳定型和衰退型3种类型;(2)不同样地青檀种群分布格局主要为集群分布;(3)不同发育阶段种群分布格局有所差异,...  相似文献   

2.
Cultivated peanut is grown worldwide as richsource of oil and protein. A broad genetic base is needed for cultivar improvement. The objectives of this study were to develop highly informative simple sequence repeat(SSR)markers and to assess the genetic diversity and population structure of peanut cultivars and breeding lines from different breeding programs in China, India and the US. A total of 111 SSR markers were selected for this study, resulting in a total of 472 alleles. The mean values of gene diversity and polymorphic information content(PIC) were 0.480 and 0.429, respectively.Country-wise analysis revealed that alleles per locus in three countries were similar. The mean gene diversity in the US,China and India was 0.363, 0.489 and 0.47 with an average PIC of 0.323, 0.43 and 0.412, respectively. Genetic analysis using the STRUCTURE divided these peanut lines into two populations(P_1, P_2), which was consistent with the dendrogram based on genetic distance(G_1, G_2) and the clustering of principal component analysis. The groupings were related to peanut market types and the geographic origin with a few admixtures. The results could be used by breeding programs to assess the genetic diversity of breeding materials to broaden the genetic base and for molecular genetics studies.  相似文献   

3.
采用样方调查法,在分析历山青檀群落结构的基础上,测定了优势种的种间协变系数,并将典范对应分析和聚类分析相结合,探讨了历山青檀与群落中其他物种的种间关系。结果表明:(1)历山青檀群落以A级频度(1%~20%)占绝对优势,青檀在群落中占据优势地位,但在演替层和更新层中的优势不及其他优势树种;(2)Spearman秩相关分析和Pearson相关分析的结果基本一致,历山青檀群落乔木层物种间正协变种对数少于负协变的种对数,青檀和君迁子种对间负协变程度最高,且在所有包含青檀的显著或极显著协变种对中,青檀与另一个物种间总是显著或极显著的负相关。(3)坡度、土壤含水量及枯枝落叶层厚度与3个排序轴相关性强,18个乔木优势种沿第2排序轴的分类与物种的性状特征较为相符,土壤含水量是影响历山青檀分布的主导因素。(4)聚类分析把历山青檀群落乔木层优势种分为3大类。  相似文献   

4.
安徽皇藏峪自然保护区青檀种群数量动态   总被引:1,自引:0,他引:1  
根据野外调查资料编制皇藏峪自然保护区不同生境青檀种群的静态生命表,绘制存活曲线、死亡率曲线、消失率曲线以及4个生存函数曲线,分析种群数量特征。同时,结合种群动态量化方法和时间序列预测模型,分析种群数量动态变化。结果表明:1)不同生境青檀种群径级结构大体呈金字塔型,中、幼龄阶段个体数量丰富,老龄阶段个体数量相对较少,种群在发育过程中存在一定波动性,但种群数量变化动态指数Vpi和Vpi’(考虑外部干扰时)均大于零。种群属稳定增长型。2)不同生境青檀种群在幼龄阶段死亡率较高,随着龄级的增加,死亡率逐渐降低。进入生理衰老阶段时,阳坡、阴坡种群死亡率再次上升,而坡谷种群由于老龄个体受到较好保护,死亡率略有下降。3)不同生境存活曲线存在差异,阳坡、阴坡种群趋于Deevey-Ⅱ型,坡谷种群趋于Deevey-Ⅲ型。4)生存分析表明,阳坡、阴坡种群具有前期锐减、中期稳定、后期衰退的特点;坡谷种群表现为前期锐减、中后期稳定的特点。5)在未来2年、5年中,不同生境青檀种群呈增长趋势。  相似文献   

5.
Tapiscia sinensis is a Tertiary relict and endangered tree species with unique scientific research value and great economic value. In this study, we assessed the genetic diversity of five wild T. sinensis populations from different geographical regions using 10 polymorphic simple sequence repeat (SSR) markers. Our results reveal that the natural populations of T. sinensis have rich genetic diversity (PPL = 100%, He = 0.6904, I = 1.4368), with Shannon's index indicating that the T. sinensis populations are at a relatively stable stage. Of the genetic relationships among populations, the distance between the Hunan Yanling (YL) and Guizhou Xifeng (XF) populations is the smallest (0.4829); the genetic distance between the Shaanxi Ningshan (NS) and the Guizhou Xifeng (XF) populations is the largest (0.9821). A Mantel test shows that there is no correlation among the populations between geographic distance and genetic distance. AMOVA suggest that 33.3% of the genetic variation arose among the populations, while 66.7% of the variation arose within them. The moderate gene flow among populations (Nm = 0.7274) is not sufficient to counteract genetic drift within the populations and result in significant differentiation (Fst = 0.2987). Our results will benefit the conservation and exploitation of T. sinensis and provide a theoretical basis for further study of the evolution and phylogeography of the species.  相似文献   

6.
We assessed the molecular genetic diversity and population structure of Amaranthus species accessions using 11 simple sequence repeat markers. A total of 122 alleles were detected, and the number of alleles per marker (NA) ranged from 6 to 21 with an average of 11.1 alleles. The frequency of major alleles per locus ranged from 0.148 to 0.695, with an average value of 0.496 per marker. The overall polymorphic information content values were 0.436–0.898, with an average value of 0.657. The observed heterozygosity (HO) and expected heterozygosity (HE) ranged from 0.056 to 0.876 and from 0.480 to 0.907, with average values of 0.287 and 0.698, respectively. The average HO (0.240) was lower than the HE and gene flow (Nm), and showed substantial genetic variability among all populations of amaranth accessions. The sample groupings did not strictly follow the geographic affiliations of the accessions. A similar pattern was obtained using model-based structure analysis without grouping by species type. Knowledge of the genetic diversity and population structure of amaranth can be used to select representative genotypes and manage Amaranthus germplasm breeding programs.  相似文献   

7.
我国特有植物青檀遗传结构的ISSR分析   总被引:3,自引:0,他引:3  
李晓红  张慧  王德元  张莉  邵剑文  张小平 《生态学报》2013,33(16):4892-4901
青檀是我国特有的第三纪残遗植物,是宣纸纤维来源的重要原材料,现已被列入国家Ⅲ级保护植物。采用简单序列重复区间扩增多态性(ISSR)标记技术,对采自27个地理种群的628个青檀个体的遗传多样性和遗传结构进行了检测。8对引物共得到66个清晰的扩增位点,其中多态性位点63个,多态性位点百分率为95.45%。分析结果表明,青檀在物种水平上具有很高的遗传多样性(PPB=95.45%、Ao=1.9545、Ae=1.5729、He=0.3335、I=0.4980、Hb=0.3437)。在种群水平上的遗传多样性(PPB=69.98%、Ao=1.6998、Ae=1.4449、He=0.2561、I=0.3793、Hb=0.2656)和种群间遗传分化水平(Gst=0.23,ФST=0.25)均处于中等水平。华北地区(30°-42°N)和华南地区(22°-30° N)青檀的遗传多样性和遗传结构的差异并不显著。古老的起源历史、较广的分布范围、异交的繁育系统、风媒种子、长命的生活史以及华南和华北地形和植被的差异可能是导致青檀目前遗传格局的主要原因。结合叶绿体序列(cpDNA)序列的遗传结构特征对青檀的保护策略进行了探讨。  相似文献   

8.
As an invaluable herb, Dendrobium officinale has been in severe danger since 1950 because of human exploitation and habitat deterioration. In order to investigate the genetic diversity and structure of this species, we isolated and characterized 12 microsatellite loci derived from two microsatellite‐enriched libraries. Twenty‐two individuals from Leye population were analysed. These loci were polymorphic and displayed three to 12 alleles per locus. The observed and expected heterozygosities ranged from 0.150 to 0.624 and from 0.162 to 0.605, respectively. These are the first microsatellite loci characterized from D. officinale that will contribute to research on the conservation, genetic diversity, population structure and individual authentication.  相似文献   

9.
应用21对SSR引物与毛细管电泳技术,分析了52个甘蔗属品种的遗传多样性。共检测出327个SSR标记,平均每对引物检测15.6个。选择141个共显性标记构建SSR标记指纹图谱数据库,利用DNAMAN软件与UPGMA统计方法分析参试材料遗传多样性。DNAMAN软件同源分析显示,新台糖16号与台优1号之间的同源性最高(87%),品种之间最小的同源性为55%;利用UPGMA统计方法可把参试材料分成4个遗传相似性较高的类群。结果表明,SSR标记与毛细管技术的结合,可构建甘蔗种质资源SSR标记指纹图谱、分析甘蔗种质资源遗传多样性。聚类分析显示参试甘蔗材料的遗传基础相近,为了提高甘蔗选育种效率,应拓宽甘蔗选育种亲本的遗传基础,提高杂交栽培品种的抗虫、抗病等特性。  相似文献   

10.
四川省小麦条锈菌群体遗传多样性的SSR分析   总被引:1,自引:0,他引:1  
利用TP-M13-SSR自动荧光检测技术,对四川省小麦条锈菌群体遗传多样性水平进行了分析。研究结果表明,四川省小麦条锈菌群体遗传多样性比较丰富,地区之间存在明显的差异,川西北和四川盆地的种群遗传多样性相对较高,而四川西南部和四川东南部的种群遗传多样性较低。四川小麦条锈菌群体存在一定的遗传分化,地区间的遗传变异仅占14.92%,群体间的遗传变异占总变异的23.06%,群体内遗传变异占60.02%,遗传变异主要存在于群体内部。基因流和共享基因型从分子水平证实了四川小麦条锈菌在地区间的传播,且川西北和四川盆地之间的菌源交流最为广泛。  相似文献   

11.
不同地区青檀根际土壤肥力和真菌多样性及其相关性分析   总被引:1,自引:0,他引:1  
为了探明不同地区青檀(Pteroceltis tatarinowii Maxim.)根际土壤真菌多样性及其与土壤肥力的关系,对国内7省(广西、安徽、河南、陕西、四川、山东和辽宁)1市(北京)8个样地野生青檀根际土壤的肥力指标(包括pH值、速效磷含量和速效钾含量)进行比较,并采用Illumina MiSeq高通量测序技术对其根际土壤的真菌多样性进行了分析;在此基础上,对土壤真菌多样性指数与土壤肥力指标的相关性以及土壤真菌科水平相对丰度前20位的操作分类单元(OTUs)与土壤肥力指标的相关性进行分析.结果表明:供试8个样地青檀根际土壤的pH值为pH 6.06~pH 7.61,速效磷含量为0.49~3.27μg·g-1,速效钾含量为150.24~636.89μg·g-1.基于土壤真菌DNA测序结果,以有效序列相似度97%为阈值获得7143个OTUs,鉴定出6门32纲106目254科,其中,包括子囊菌门(Ascomycota)、担子菌门(Basidiomycota)和接合菌门(Zygomycota)3个优势门以及Incertae sedis(GenBank数据库中存在,但未准确分类的科)、被孢霉科(Mortierellaceae)、发菌科(Trichocomaceae)、丛赤壳科(Nectriaceae)和Archaeorhizomycetaceae 5个共有优势科;不同样地的土壤真菌多样性差异明显,Chao1指数、Shannon-Wiener指数和Simpson指数分别为1041.37~1793.19、5.39~6.14和0.007~0.020,盖度为98.90%~99.84%.相关性分析结果表明:土壤真菌Chao1指数与土壤速效钾含量呈显著(P<0.05)负相关,其余土壤真菌多样性指数与土壤肥力指标的相关性均不显著;在相对丰度前20位的OTUs中,55%OTUs与土壤pH值呈负相关,并且,多数OTUs与土壤的速效磷含量和速效钾含量呈正相关,其中,OTU0(被孢霉科)与土壤pH值呈显著负相关,OTU1(丛赤壳科)和OTU4(伞型束梗孔菌科)(Agaricostilbaceae)与土壤速效钾含量呈显著正相关.研究结果显示:野生青檀根际土壤呈弱酸性至弱碱性,并具有富钾少磷的特点;青檀根际土壤真菌多样性与土壤肥力有一定相关性,并且,被孢霉科、丛赤壳科和伞型束梗孔菌科与土壤肥力有显著相关性.  相似文献   

12.
山杨杂种无性系的SSR分子标记遗传多样性   总被引:1,自引:1,他引:1  
张金然  尚洁  王秋玉 《植物研究》2006,26(4):447-451
采用5对SSR引物对52个山杨杂种无性系进行了遗传多样性检测,结果表明在研究的5个位点上SSR标记多态位点百分率为100%,平均等位基因数为4.4个,有效等位基因数最多的位点是PTR7,最少的位点为PTR12;欧美山杨杂种的遗传多样性最丰富,相比之下,中美山杨杂种遗传变异最低;聚类分析表明,在一定的遗传距离基础上,欧美山杨杂种和欧洲山杨首先聚为一类,然后又与中美山杨杂种聚类,最后是中国山杨。研究表明来自芬欧美山杨杂种具有较高的遗传多样性,这对我国山杨遗传资源的扩大,以及未来山杨杂交育种,杂种优势的利用都是重要的。  相似文献   

13.
Studies of fine-scale spatial genetic structure (SGS) in wind-pollinated trees have shown that SGS is generally weak and extends over relatively short distances (less than 30-40 m) from individual trees. However, recent simulations have shown that detection of SGS is heavily dependent on both the choice of molecular markers and the strategy used to sample the studied population. Published studies may not always have used sufficient markers and/or individuals for the accurate estimation of SGS. To assess the extent of SGS within a population of the wind-pollinated tree Fagus sylvatica, we genotyped 200 trees at six microsatellite or simple sequence repeat (SSR) loci and 250 amplified fragment length polymorphisms (AFLP) and conducted spatial analyses of pairwise kinship coefficients. We re-sampled our data set over individuals and over loci to determine the effect of reducing the sample size and number of loci used for SGS estimation. We found that SGS estimated from AFLP markers extended nearly four times further than has been estimated before using other molecular markers in this species, indicating a persistent effect of restricted gene flow at small spatial scales. However, our SSR-based estimate was in agreement with other published studies. Spatial genetic structure in F. sylvatica and similar wind-pollinated trees may therefore be substantially larger than has been estimated previously. Although 100-150 AFLP loci and 150-200 individuals appear sufficient for adequately estimating SGS in our analysis, 150-200 individuals and six SSR loci may still be too few to provide a good estimation of SGS in this species.  相似文献   

14.
Colletotrichum truncatum is a fungal species associated with anthracnose disease in many economically important crops within the plant families Fabaceae and Solanaceae. Understanding the degree of genetic diversity within C. truncatum population will provide insights into the ability of this species to evolve in response to environmental conditions, and thus be helpful in designing effective control strategies for this pathogen. In this study, microsatellite markers from 27 loci were used to investigate the genetic diversity and population structure among 99 isolates of C. truncatum from India. All the loci (100%) were polymorphic and a total of 140 different alleles were amplified. Six distinct groups were obtained based on unweighted pair group method with arithmetical average cluster analysis. The isolates belonging to Group V showed the highest level of genetic diversity and a broad host range. Analysis of molecular variance analysis showed that the variation occurs mostly within groups. Microsatellite markers-based genetic diversity estimation revealed high diversity among C. truncatum isolates from India.  相似文献   

15.
A total of 892 individuals sampled from a wild soybean population in a natural reserve near the Yellow River estuary located in Kenli of Shandong Province (China) were investigated.Seventeen SSR (simple sequence repeat) primer pairs from cultivated soybeans were used to estimate the genetic diversity of the population and its variation pattern versus changes of the sample size (sub-samples),in addition to investigating the fine-scale spatial genetic structure within the population.The results showed relatively high genetic diversity of the population with the mean value of allele number (A) being 2.88,expected heterozygosity (He) 0.431,Shannon diversity index (/) 0.699,and percentage of polymorphic loci (P) 100%.Sub-samples of different sizes (ten groups) were randomly drawn from the population and their genetic diversity was calculated by computer simulation.The regression model of the four diversity indexes with the change of sample sizes was computed.As a result,27-52 individuals can reach 95% of total genetic variability of the population.Spatial autocorrelation analysis revealed that the genetic patch size of this wild soybean population is about 18 m.The study provided a scientific basis for the sampling strategy of wild soybean populations.  相似文献   

16.
采用SSR标记技术对42个荷花品种( Nelumbo spp.)的基因组DNA进行扩增,在此基础上,对供试品种进行UPGMA聚类分析、群体结构分析和主坐标分析( PCoA)。结果表明:采用17对SSR引物从42个荷花品种的基因组DNA中扩增出77个位点,多态性位点百分率为88.31%;每对引物可扩增出1~9个多态性位点。根据Nei's遗传距离,供试的42个荷花品种可被分成Ⅰ和Ⅱ两组,分别包含3和39个品种;在Nei's遗传距离0.150处,Ⅱ组被进一步分成Ⅱa、Ⅱb和Ⅱc 3个亚组,分别包含3、16和20个品种。群体结构分析结果表明:组分概率高于等于0.80时,供试的42个荷花品种被分成Pop1、Pop2和混合群3个亚群,分别包含17、16和9个品种。 PCoA分析结果表明:在F1水平上,供试的42个荷花品种被分成2个部分;其中,Pop1亚群的品种均分布在第二和第三象限,而Pop2亚群的品种则分布在第一和第四象限。总体来看,聚类分析、群体结构分析和PCoA分析的结果基本一致。综合分析结果表明:玉组包含美洲黄莲( N. lutea Pers.)品种‘艾江南',且与传统中国莲( N. nucifera Gaertn.)品种的亲缘关系最远,故认为该组为美洲黄莲;Ⅱ组为中国莲,其中,Ⅱc亚组以传统中国莲品种为主,而Ⅱb亚组则偏重于美洲黄莲。总体上看,供试的42个荷花品种主要被分为中国莲和美洲黄莲两组,而中美杂交莲并没有独立成组,其成因有待进一步研究。  相似文献   

17.
A total of 892 individuals sampled from a wild soybean population in a natural reserve near the Yellow River estuary located in Kenli of Shandong Province (China) were investigated. Seventeen SSR (simple sequence repeat) primer pairs from cultivated soybeans were used to estimate the genetic diversity of the population and its variation pattern versus changes of the sample size (sub-samples), in addition to investigating the fine-scale spatial genetic structure within the population. The results showed relatively high genetic diversity of the population with the mean value of allele number (A) being 2.88, expected heterozygosity (He) 0.431, Shannon diversity index (I) 0.699, and percentage of polymorphic loci (P) 100%. Sub-samples of different sizes (ten groups) were randomly drawn from the population and their genetic diversity was calculated by computer simulation. The regression model of the four diversity indexes with the change of sample sizes was computed. As a result, 27–52 individuals can reach 95% of total genetic variability of the population. Spatial autocorrelation analysis revealed that the genetic patch size of this wild soybean population is about 18 m. The study provided a scientific basis for the sampling strategy of wild soybean populations. __________ Translated from Journal of Fudan University (Natural Science), 2006, 45(3): 322–327 [译自: 复旦学报 (自然科学版)]  相似文献   

18.
Nothotsuga longibracteata, a relic and endangered conifer species endemic to subtropical China, was studied for examining the spatial-temporal population genetic variation and structure to understand the historical biogeographical processes underlying the present geographical distribution. Ten populations were sampled over the entire natural range of the species for spatial analysis, while three key populations with large population sizes and varied age structure were selected for temporal analyses using both nuclear microsatellites (nSSR) and chloroplast microsatellites (cpSSR). A recent bottleneck was detected in the natural populations of N. longibracteata. The spatial genetic analysis showed significant population genetic differentiation across its total geographical range. Notwithstanding, the temporal genetic analysis revealed that the level of genetic diversity between different age class subpopulations remained constant over time. Eleven refugia of the Last Glacial Maximum were identified, which deserve particular attention for conservation management.  相似文献   

19.
Cao Q  Lu BR  Xia H  Rong J  Sala F  Spada A  Grassi F 《Annals of botany》2006,98(6):1241-1252
BACKGROUND AND AIMS: Weedy rice (Oryza sativa f. spontanea) is one of the most notorious weeds occurring in rice-planting areas worldwide. The objectives of this study are to determine the genetic diversity and differentiation of weedy rice populations from Liaoning Province in North-eastern China and to explore the possible origin of these weedy populations by comparing their genetic relationships with rice varieties (O. sativa) and wild rice (O. rufipogon) from different sources. METHODS: Simple sequence repeat (SSR) markers were used to estimate the genetic diversity of 30 weedy rice populations from Liaoning, each containing about 30 individuals, selected rice varieties and wild O. rufipogon. Genetic differentiation and the relationships of weedy rice populations were analysed using cluster analysis (UPGMA) and principle component analysis (PCA). KEY RESULTS: The overall genetic diversity of weedy rice populations from Liaoning was relatively high (H(e) = 0.313, I = 0.572), with about 35 % of the genetic variation found among regions. The Liaoning weedy rice populations were closely related to rice varieties from Liaoning and japonica varieties from other regions but distantly related to indica rice varieties and wild O. rufipogon. CONCLUSIONS: Weedy rice populations from Liaoning are considerably variable genetically and most probably originated from Liaoning rice varieties by mutation and intervarietal hybrids. Recent changes in farming practices and cultivation methods along with less weed management may have promoted the re-emergence and divergence of weedy rice in North-eastern China.  相似文献   

20.
Phellodendron amurense is an endangered tree with important medicinal and economic value in China. In this study, eight nuclear SSR primer pairs were employed to assess the genetic diversity and structure of 22 natural populations, including 516 individuals. A total of 66 alleles were detected with an average of 8.3 alleles per locus ranging from 3 to 17. The expected heterozygosity (He) of each SSR locus varied from 0.347 to 0.877 (average 0.627). Analysis of molecular variance (AMOVA) revealed that the main variation component existed within populations (95.11%) rather than among populations (4.89%). The Wilcoxon's sign-rank tests did not show any recent bottleneck effect in any population. A Mantel test displayed a significant correlation between the geographic distances and genetic distances for all populations (r = 0.566, P = 0.0001), indicating conformity to the isolation by distance model. Bayesian clustering and UPGMA supported grouping the populations into two groups. The present genetic structure of P. amurense may be explained by geographical isolation. The lack of genetic structure and genetic diversity decreased with increasing latitude within the Northeast China group may be due to postglacial northward expansion from a single refugium. Proper conservation measures are proposed for this species.  相似文献   

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