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1.
横断山区作为青藏高原东南部主要的一个冰期避难所,第四纪冰期气候的变化对该地区的植物地理分布和居群遗传结构都产生了重要的影响。为了揭示该地区物种分布的分子系统地理学结构,选取在该地区广泛分布的一种高山灌木-高山绣线菊的叶绿体trnL-trnF序列进行研究。采集了15个居群182个个体进行测序,共发现7个单倍型。总的遗传多样性较高(HT=0.809),但居群内遗传多样性较低(HS=0.236)。分子变异分析(AMOVA)结果表明分布区内高山绣线菊的遗传变异主要存在于居群间(84.48%),且居群间的遗传分化很高(GST=0.708,FST=0.84476,NST=0.863),有着显著的谱系地理学结构(NST>GST,P<0.01)和较低的居群间平均基因流(Nm=0.09)。单倍型的系统进化树和进化分支网络分析得到了相似的拓扑结构,7种单倍型都按照地理分布聚为三支:横断山区西部、横断山区东部以及两者的交接地带。本研究推测该物种在横断山区存在多个冰期避难所,而没有表现出大规模的种群集体扩张和迁移的现象。青藏高原隆升、第四纪气候的反复波动以及横断山区特殊的地理环境使得原来连续的居群片段化,并发生范围扩张,从而塑造了高山绣线菊的现代生物地理分布格局。  相似文献   

2.
以青藏高原及其毗邻山区的蒙古绣线菊23个居群324个个体为研究对象,选取叶绿体DNA非编码区trnL-trnF和rps15-ycf1片段对蒙古绣线菊进行谱系地理学研究。结果表明:(1)该研究区域中蒙古绣线菊亲缘关系相近的单倍型多发生于同一居群中,存在着明显的谱系地理学关系。(2)所检测得到的35个单倍型中,大约71.4%是居群内特有的单倍型,而出现频率最高的H1是最古老的单倍型,贝叶斯分析和单倍型简约网状图显示35个单倍型聚为地理分布范围各不相同的3个分支。(3)歧点分布分析得到分布图呈多峰曲线,说明蒙古绣线菊居群在较长的时间内发展稳定,没有经历突然的近期扩张。(4)BEAST分析结果显示,在45Mya左右开始出现蒙古绣线菊的谱系分支的分化。研究认为,蒙古绣线菊在青藏高原及其毗邻山区可能至少存在3个冰期避难所,其在青藏高原及其毗邻山区的分布格局主要是第四纪冰期-间冰期气候动荡、青藏高原隆升的共同作用的结果。  相似文献   

3.
为揭示北沙柳(Salix psammophila)的遗传多样性、遗传结构及分化特征,利用叶绿体非编码区序列(trnL-trnF和trnD-trnT)对分布于毛乌素沙地和库布齐沙漠的16个北沙柳居群(339个个体)进行了遗传研究,为北沙柳种子资源库遗传管理、遗传改良、遗传育种及品种选育提供理论依据。结果表明:(1)经trnL-trnF和trnD-trnT片段联合比对获得了1811 bp序列,共有12个核苷酸变异位点(8个简约信息位点,4个变异位点),得到16个单倍型。(2)单倍型多样性指数(Hd)为0.737,核苷酸多样性指数(π)为0.00107;且单倍型H3的分布在所有居群中位于单倍型网络图中心,其余单倍型随机分布于各个居群。(3)AMOVA分析表明,北沙柳cpDNA的变异主要来源于居群内(91.16%),居群间遗传分化程度中等(FST=0.08837),各居群间的基因交流非常频繁(Nm=2.58);遗传分化系数NST(0.085)显著大于GST(0.056,0.01相似文献   

4.
以白花草木樨(Melilotus alba)和黄花草木樨(Melilotus officinalis)18个地理种群植物为材料,用ITS序列和trnL-trnF序列研究了2种草木樨不同种群间的遗传多样性。结果表明:(1)trnL-trnF序列对位后长度为459bp,其中包括6个变异位点,6个简约信息位点,G+C含量为33.1%;ITS序列对位后长度为714bp,其中包括5个变异位点,3个简约信息位点,G+C含量为48.9%。(2)在基于trnL-trnF序列构建的系统发育树中,2种草木樨能够形成单系分支,说明trnL-trnF序列在草木樨中的鉴别能力较强。(3)单倍型多样性以及核苷酸多样性分析表明,黄花草木樨的遗传多样性高于白花草木樨。  相似文献   

5.
基于叶绿体微卫星研究鄂报春谱系遗传结构   总被引:2,自引:0,他引:2  
鄂报春Primula obconica作为一种广泛栽培的园艺植物,其野生居群的遗传多样性及遗传结构的研究还少见报道。本文通过叶绿体微卫星分析了17个鄂报春野生居群(共278个个体),共发现4个多态性位点(16个等位基因),得到14个单倍型。结果表明鄂报春具有很高的总基因多样性(HT=0.971)和极低的居群内基因多样性(HS=0.028);分子方差分析(AMOVA)显示98%的变异存在于居群间。这些结果说明早期的生境片断化及有限的种子传播能力是造成当前遗传结构的重要原因。Nst值显著大于Gst值,表明关系相近的单倍型会出现在相同的地区内,同时最小生成树(MST)的分析结果证实了这样的结论。我们在最小生成树的两个组中推断出一些古老单倍型,并推测在冰期时湖北和我国的西南地区可能是该物种的避难所。  相似文献   

6.
本研究从18个叶绿体DNA(cpDNA)分子标记中筛选出3个有效分子标记trnL-trnF、trnH-psbA和RPL16,利用它们对中国黑藻(Hydrilla verticillata(L.f.)Royle)8个居群进行了遗传多样性研究。结果显示,黑藻8个居群40个样本共有12个单倍型,总变异位点数为135个;单倍型多样性指数为0.9064,遗传多样性主要存在于居群间(89.6%)。其中单倍型Hap4同时存在于地理距离相隔较远的陕西汉中(SXHZ)和浙江余姚(YY)居群中。研究结果表明黑藻可以通过无性繁殖的方式快速完成居群扩张,同时,地理隔离和生境差异可能导致居群间基因流较低,奠基者效应和遗传漂变可能对黑藻的遗传结构产生重要影响。  相似文献   

7.
高山植物条纹狭蕊龙胆的分子亲缘地理学研究   总被引:1,自引:0,他引:1  
草本植物由于较短的生活周期以及对环境变化的敏感性,可能会更好地揭示第四纪冰期以来植物居群变化的历史过程.分子亲缘地理学研究是揭示动植物居群历史的有力工具,但到目前为止对青藏高原草本植物的分子亲缘地理学研究几乎是空白.因此,本文选择在青藏高原及邻近地区生长的一年生高山草本植物条纹狭蕊龙胆为研究对象,进行了13个居群155个个体的叶绿体基因组(cpDNA)非编码片段trnH(GuG)-psbA基因间区序列变异检测,共发现7种单倍型,其中单倍型H印A是分布最广的,而单倍型Hap E、Hap F和Hap G是拥有的居群所特有的.青藏高原东北部、东部及邻近地区的每个居群拥有的单倍型非常单一,而高原东南部横断山区的单倍型分布很集中,遗传多样性也相对较高.分子变异分析(AMOVA)结果表明整个分布区条纹狭蕊龙胆的遗传变异主要存在于居群间(73.05%),且居群问的遗传分化很高(GsT=0.805,FsT=0.731,NsT=0.859),有着显著的亲缘地理学结构(NsT>Gsr,P<0.05)和较低的居群间的平均基因流(Nm=0.184).结合巢式支系法分析(NCA),根据本文的研究结果推测青藏高原东南部横断山区是该植物第四纪冰期时可能的避难所,而且在间冰期或冰期后.伴随着异域片段化和过去片段化从避难所发生范围扩张而形成当前单倍型及居群的分布格局.  相似文献   

8.
采用PCR方法测定了新疆东部达坂城(DB)、吐鲁番(TU)、鄯善(SS)、柳树泉(HL)和哈密东郊(HD)的叶城沙蜥(Phrynocephalus axillaris)的5个居群66只个体的线粒体ND4-tRNALeu基因序列,序列比对得到838bp位点,29个变异位点定义了17种单倍型. 除DB居群外,其余居群及5个居群总体均呈现单倍型多样性较高[(0.600±0.113)≤h≤(0.922±0.012)],而核苷酸多样性较低[(0.00082±0.00020)≤π≤(0.00917±0.00037)].系统发育分析支持5个居群形成了Clade Ⅰ(DB+TU+SS)和Clade Ⅱ(HL+HD)两个分支.单倍型网络图也表明,5个居群均有谱系地理结构.分子变异分析(AMOVA)表明,81.67%(P<0.01)的遗传分化来自5个居群之间,而距离隔离分析(isolation by distance)显示各居群之间的遗传分化(Fst)与居群间地理距离无显著关系(r=0.5324,P=0.1196).歧点分布(mismatch distributionl分析和Fu's Fs检验显示,TU和HL居群町能经历近期的种群扩张,而SS和HD居群相对稳定.DB居群特殊的栖息生境及遗传多样性的匮乏揭示该种群可能处于瓶颈期.推测更新世以来,这些区域的地质、气候变动引起的叶城沙蜥柄息地变化及遗传漂变共同导致了这5个居群的遗传分化.  相似文献   

9.
该研究基于ITS1-ITS4序列对濒危植物长柄扁桃(Amygdalus pedunculata)自然分布区内的8个居群,105个个体的遗传多样性及遗传结构进行了分析,以明确长柄扁桃的地理分布及其遗传多样性特征。结果表明:(1)ITS1-ITS4序列长度583bp,变异位点13个,共定义了8个单倍型;居群间总的遗传多样性(hT)为0.727,居群内平均遗传多样性(hS)为0.564,各居群单倍型多样性、核酸多样性的变化范围分别为0.182~0.636、0.000 6~0.006 3。(2)AMOVA分析表明,33.65%的遗传变异来自居群间,而66.35%的遗传变异来自居群内;居群间平均基因流(Nm)为0.986,居群间遗传分化系数NSTGST(GST=0.225,NST=0.362,P0.05),表明长柄扁桃居群间存在不十分显著的遗传分化,但谱系地理结构显著;中性检验和错配分布曲线表明,居群自然分布区内的长柄扁桃没有经历明显的近期扩张。(3)单倍型网络和最大似然树都表明:内蒙古和陕西的长柄扁桃居群分别聚为2个明显的分支。  相似文献   

10.
本研究对分布在中国新疆维吾尔自治区阿尔金山自然保护区的6个真藓(Bryum argenteum)居群的遗传结构及遗传多样性进行比较。通过对32条叶绿体DNA的rpl32-trnL序列的核苷酸序列变异的分析,发现了14种单倍型,存在201个可变位点;分子变异分析显示有51.02%的遗传变异发生在居群间水平,居群内部的遗传变异为48.98%,真藓居群间的遗传分化程度较高略大于居群内的遗传分化。居群遗传变异的分化系数为0.510 2,基因流值为0.48,显示各居群间的基因流低。单倍型多态性水平为(0.780 2±0.076 0),核苷酸多态性水平为(0.058 59±0.020 09),表明真藓居群遗传多样性丰富。对所有变异位点进行的Taijma's检验的结果是Taijma's D值为-1.567 05 (p0.10),显示所有变异符合中性进化假说。  相似文献   

11.
微卫星序列(SSR)具有多态性高、共显性遗传等特点,是一种极具价值的分子遗传标记。采用磁珠富集法从高山绣线菊基因组DNA中分离和筛选SSR标记。高山绣线菊基因组经限制性内切酶Mse I酶切后与接头连接,并与生物素标记SSR探针(AC)15和(AG)15杂交,然后通过链霉亲和素磁珠富集、洗脱、PCR扩增、克隆,完成微卫星文库构建。利用载体通用引物和探针序列引物进行PCR扩增,筛选重组克隆并测序,获得112条序列。随机挑选其中60条序列设计的引物,经初期筛选获得多态性引物16对。用所得16对引物对4个居群92个个体的蒙古绣线菊和高山绣线菊进行PCR扩增。统计分析PCR产物的毛细管电泳结果,发现4个居群的平均等位基因数、平均期望杂合度及平均观测杂合度都比较高。64个数据系列(4个居群×16个位点)中的26个显著偏离HardyWeinberg平衡,推测可能由于无效等位基因的存在所引起。分析显示研究开发的16对多态性SSR引物可以用于后续遗传多样性、物种进化与亲缘关系等方面研究,丰富了绣线菊遗传多样性研究的分子标记。  相似文献   

12.
Phylogeographical and mismatch analysis of chloroplast DNA (cpDNA) variation were used to infer the temporal dynamics of distributional and demographic history of Taiwan fir (Cunninghamia konishii). We examined 64 and 52 trees from 17 populations of C. konishii and 14 provenances of C. lanceolata, respectively, by sequencing three intergenic spacers and one intron using cpDNA universal primers. Of the aligned 1888 base pairs (bp) sequence, 30 varied among 28 haplotypes, which consisted of three transitions, 14 transversions and 13 indels. One ancestral haplotype was found in 86 individuals across the surveyed range of both species, C. konishii and C. lanceolata, which was distributed in all populations and provenances. The 28 haplotypes also included 15 C. konishii specific and 12 C. lanceolata-specific haplotypes. Ancestral haplotype was found fixed in five populations of C. konishii and five provenances of C. lanceolata. Other haplotypes occurred mainly as singletons. The levels of population differentiation studied are relatively low in both Cunninghamia species. The nucleotide diversity (theta) of chloroplast DNA sequences within C. konishii was slightly higher than that of C. lanceolata. Excess in singletons as well as star-like phylogeny of haplotypes suggested no clearcut migration patterns of C. konishii after glacial maximum. One probable demographic history of C. konishii is the postglacial population growth of C. konishii after a glacial bottleneck event. This inference is supported by the combined results of fossil pollen record, low nucleotide diversity, significant Tajima's d-value, phylogeographical analysis and unimodal mismatch distribution. Similarities and discrepancies between our results and those of Lu et al. (2001) are discussed.  相似文献   

13.
A natural hybrid species in Petrocosmea named Longianthera in Yanshan County,Yunnan Province is confirmed for the first time based on molecular and morphological evidence.The character count procedure of the variable characters show that Longianthera populations are characteristic of the intermediate morphological traits between its putative parents Yanshan and Petrocosmea martinii.The nuclear ribosomal internal transcribed spacer region and three chloroplast regions of matK,trnL-F,and trnT-L are sequenced in the putativehybrid and the related species.Both alignment of DNA sequences and the phylogenetic trees could exclude all the other species in Petrocosmea as the parental species except for Yanshan and P martinii.Eight haplotypes in the 31 internal transcribed spacer sequences and six haplotypes in 42 cpDNA sequences were found from 14 individuals of Longianthera populations.The analyses of DNA sequences,haplotypes,and phylogenetic trees indicate that Longianthera is likely a hybrid species between its putative parents Yanshan and P martinii,in which Yanshan might be the most possible maternal parent.Several factors may contribute to the natural hybridization between these two parental species in Petrocosmea,such as the overlapped geographic distribution,habitats,flowering periods,and shared pollinators.Finally,the new species of Yanshan and the natural hybrid species of Longianthera are described.  相似文献   

14.
Abstract The Mediterranean species complex of Senecio serves to illustrate evolutionary processes that are likely to confound phylogenetic inference, including rapid diversification, gene tree‐species tree discordance, reticulation, interlocus concerted evolution, and lack of complete lineage sorting. Phylogeographic patterns of chloroplast DNA (cpDNA) haplotype variation were studied by sampling 156 populations (502 individuals) across 18 species of the complex, and a species phylogeny was reconstructed based on sequences from the internal transcribed spacer (ITS) regions of nuclear ribosomal DNA. For a subset of species, randomly amplified polymorphic DNAs (RAPDs) provided reference points for comparison with the cpDNA and ITS datasets. Two classes of cpDNA haplotypes were identified, with each predominating in certain parts of the Mediterranean region. However, with the exception of S. gallicus, intraspecific phylogeographic structure is limited, and only a few haplotypes detected were species‐specific. Nuclear sequence divergence is low, and several unresolved phylogenetic groupings are suggestive of near simultaneous diversification. Two well‐supported ITS clades contain the majority of species, amongst which there is a pronounced sharing of cpDNA haplotypes. Our data are not capable of diagnosing the relative impact of reticulation versus insufficient lineage sorting for the entire complex. However, there is firm evidence that S. flavus subsp. breviflorus and S. rupestris have acquired cpDNA haplotypes and ITS sequences from co‐occurring species by reticulation. In contrast, insufficient lineage sorting is a viable hypothesis for cpDNA haplotypes shared between S. gallicus and its close relatives. We estimated the minimum coalescent times for these haplotypes by utilizing the inferred species phylogeny and associated divergence times. Our data suggest that ancestral cpDNA polymorphisms may have survived for ca. 0.4–1.0 million years, depending on molecular clock calibrations.  相似文献   

15.
The geographical distribution of chloroplast DNA (cpDNA) haplotypes and nuclear ribosomal internal transcribed spacer (nrITS) genotypes of Japanese Corylopsis (Hamamelidaceae), which consists of four species, was investigated. Two hundred and five individuals belonging to four species from 30 populations, covering the entire geographical range, were studied. Based on approximately 1108 bp of the three non-coding regions of cpDNA, nine haplotypes were detected, and each was distinguished from adjacent haplotypes by one substitution. Based on approximately 507-bp nrITS sequences, 47 genotypes were detected, for which three clades were identified in the phylogenetic analysis. There was inconsistency between the cpDNA haplotypes, nrITS genotypes, and classification of Corylopsis taxa, possibly because of incomplete lineage sorting or introgressive hybridization. The distribution of the haplotypes was highly structured geographically, and N ST (0.893) was significantly greater than G ST (0.819), implying that the current distribution of Corylopsis species was structured phylogeographically during Quaternary climatic oscillations. The haplotype composition and results of analysis of molecular variance showed that the populations in Hokuriku were highly divergent, suggesting that they are long-term persistent populations arising from refugia during the Quaternary climatic oscillations. Refugial populations in Chugoku and Shikoku may have lost genetic diversity because of a bottleneck resulting from a small population size, followed by post-glacial range expansion. Pre-existing refugia may have been so small that the subsequent range expansion replaced the pre-existing genetic structure.  © 2008 The Linnean Society of London, Botanical Journal of the Linnean Society , 2008, 157 , 501–518.  相似文献   

16.
Aim We analysed variation in chloroplast DNA (cpDNA) in red maple (Acer rubrum L.) and silver maple (Acer saccharinum L.) across a large part of their geographic ranges. Acer rubrum is one of the most common and morphologically variable deciduous trees of eastern North America, while its sister species A. saccharinum has a more restricted habitat distribution and displays markedly less morphological variation. Our objective was to infer the impact of biogeographic history on cpDNA diversity and phylogeographic structure in both species. Location Deciduous forests of eastern North America. Methods We sequenced 1289 to 1645 bp of non‐coding cpDNA from A. rubrum (n = 258) and A. saccharinum (n = 83). Maximum parsimony networks and spatial analysis of molecular variance (SAMOVA) were used to analyse phylogeographic structure. Rarefaction analyses were used to compare genetic diversity. Results A total of 40 cpDNA haplotypes were recovered from A. rubrum (38 haplotypes) and A. saccharinum (7 haplotypes). Five of the seven A. saccharinum haplotypes were shared with nearby samples of A. rubrum. SAMOVA recovered four phylogeographic groups for A. rubrum in: (1) south‐eastern USA, (2) the Gulf and south‐eastern Coastal Plain, (3) the lower Mississippi River Valley, and (4) the central and northern regions of eastern North America. Acer saccharinum had significantly lower haplotype diversity than A. rubrum, and novel haplotypes in post‐glaciated northern limits of its range were shared with A. rubrum. Main conclusions This is the first study of A. rubrum to report a distinct phylogeographic group centred on the lower Mississippi River, and the first to examine data comparatively with A. saccharinum. We hypothesized that A. rubrum would display stronger phylogeographic structure and greater haplotype diversity than A. saccharinum because of its greater geographic range, and ecological and morphological variation. This hypothesis was supported by the cpDNA analysis. The sharing of cpDNA and chloroplast simple sequence repeat (cpSSR) haplotypes in areas of geographic overlap provides evidence of introgression, which led to an increase in haplotype diversity in both species, and to novel phylogeographic structure in A. rubrum. We recommend that introgression be considered, along with other potential causes, as an explanation for the phylogeographic structure of cpDNA in plants.  相似文献   

17.
Various factors, including taxon density, sampling error, convergence, and heterogeneity of evolutionary rates, can potentially lead to incongruence between phylogenetic trees based on different genomes. Particularly at the generic level and below, chloroplast capture resulting from hybridization may distort organismal relationships in phylogenetic analyses based on the chloroplast genome, or genes included therein. However, the extent of such discord between chloroplast DNA (cpDNA) trees and those trees based on nuclear genes has rarely been assessed. We therefore used sequences of the internal transcribed spacer regions (ITS-1 and ITS-2) of nuclear ribosomal DNA (rDNA) to reconstruct phylogenetic relationships among members of the Heuchera group of genera (Saxifragaceae). The Heuchera group presents an important model for the analysis of chloroplast capture and its impact on phylogenetic reconstruction because hybridization is well documented within genera (e.g., Heuchera), and intergeneric hybrids involving six of the nine genera have been reported. An earlier study provided a well-resolved phylogenetic hypothesis for the Heuchera group based on cpDNA restriction-site variation. However, trees based on ITS sequences are discordant with the cpDNA-based tree. Evidence from both morphology and nuclear-encoded allozymes is consistent with the ITS trees, rather than the cpDNA tree, and several points of phylogenetic discord can clearly be attributed to chloroplast capture. Comparison of the organellar and ITS trees also raises the strong likelihood that ancient events of chloroplast capture occurred between lineages during the early diversification of the Heuchera group. Thus, despite the many advantages and widespread use of cpDNA data in phylogeny reconstruction, comparison of relationships based on cpDNA and ITS sequences for the Heuchera group underscores the need for caution in the use of organellar variation for retrieving phylogeny at lower taxonomic levels, particularly in groups noted for hybridization.  相似文献   

18.
利用trnL intron、trnL-trnF、trnS-psbC和accD-psa I等4个叶绿体DNA片段对来自湖北省的88份梨属种质资源进行系统进化和遗传多样性分析。结果表明,4个cpDNA片段共检测到变异位点11个,其中单一突变位点6个,插入/缺失(Indel)位点5个。acc D-psa I多态性最高,其变异位点数、核苷酸多态性和单倍型多样性均为最高。供试梨种质的核苷酸多样性和单倍型多样性分别为0.00112和0.769;Tajima's D检验值在P0.10水平上均不显著,表明所检测的4个区域以及合并后的片段均遵循中性进化模型;4个序列合并共检测到叶绿体单倍型10个,其中兴山梨种质中检测到的单倍型最多,荆门其次;Hap2和Hap5是2个主要单倍型,分别占总样本数的31.82%和30.68%;中介邻接网络图显示东方梨和西洋梨独立进化,而较为原始的稀有单倍型Hap8和Hap9均位于荆门,暗示该地区可能为砂梨的起源中心或多样性中心之一。  相似文献   

19.
In the present study, we used two chloroplast DNA (cpDNA) fragments (trnL-F and rps16) and the nuclear ribosomal internal transcribed spacer (ITS) sequence data to examine intraspecific differentiation and phylogeographical history of Allium wallichii. Based on wide scale sampling (28 populations and 174 individuals) across the entire distribution range of this species, 33 cpDNA haplotypes and 25 ITS ribotypes were detected in our investigation. These cpDNA haplotypes were divided into three major lineages, which was further supported by the ITS phylogenetic results. High haplotype/ribotype diversity and population differentiation, together with most of the haplotypes/ribotypes being exclusive to single populations, implied restricted gene flow among populations and significant geographical isolation. Nearly all populations with high haplotype/ribotype diversity were found in the Hengduan Mountain Region (HMR), whereas the populations of the Himalayas and Nanling Mountains showed a lower level, suggesting the HMR might serve as a potential divergence center for A. wallichii. The main lineages of A. wallichii diverged from each other between Mid–Late Pliocene and Early Quaternary based on two sets of molecular markers, indicating that the Quaternary climatic fluctuation could not have contributed greatly to the divergence of the main lineages of A. wallichii. Instead, the intricate topography and heterogeneous habitats resulting from the drastic uplift of the Qinghai–Tibet Plateau from the Late Pliocene could be responsible for the intraspecific differentiation of A. wallichii. The present study further highlights the importance of geographic isolation and habitat heterogeneity in shaping and maintaining high species diversity within the HMR.  相似文献   

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