104 resultados para Population genetic


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Understanding the population genetic structure is a prerequisite for conservation of a species. The degree of genetic variability characteristic of the mitochondrial DNA control region has been widely exploited in studies of population genetic structure and can be useful in identifying meaningful population subdivisions. To estimate the genetic profile of the Yangtze finless porpoise (Neophocaena phocaenoides asiaeorientalis), an endangered freshwater population endemic to China, the complete mtDNA control region was examined in 39 individuals belonging to seven different stocks inhabiting the middle and lower reaches of the Yangtze River. Very low genetic diversity was found (nucleotide diversity 0.0011 +/- 0.0002 and haplotypic diversity 0.65 +/- 0.05). The mtDNA genetic pattern of the Yangtze population appears to indicate a founder event in its evolutionary history and to support the marine origin for this population. Analyses by F-st and Phi(st) yielded statistically significant population genetic structure (F-st = 0.44, P < 0.05; phi(st) = 0.36, P < 0.05). These results may have significant implications for the management and conservation of the Yangtze finless porpoise in the future.

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The population genetic structure of the crimson snapper Lutjanus erythropterus in East Asia was examined with a 427-bp hypervariable portion of the mtDNA control region. A total of 262 samples were collected and 75 haplotypes were obtained. Neutrality tests (Tajima's and Fu's) suggested that Lutjanus erythropterus in East Asia had experienced a bottleneck followed by population expansion since the late Pleistocene. Despite the low phylogeographic structures in mtDNA haplotypes, a hierarchical examination of populations in 11 localities from four geographical regions using analysis of molecular variance (AMOVA) indicated significant genetic differentiation among regions (Phi(CT) = 0.08564, p < 0.01). Limited gene flow between the eastern region (including a locality in the western Pacific Ocean and two localities in the East Sea) and three geographic regions of the South China Sea largely contributed to the genetic subdivision. However, comparisons among three geographic regions of the South China Sea showed little to no genetic difference. Populations of Lutjanus erythropterus in East Asia are inferred to be divided into two major groups: an eastern group, including populations of the western Pacific Ocean and the East Sea, and a South China Sea group, consisting of populations from northern Malaysia to South China. The results suggest that fishery management should reflect the genetic differentiation and diversity in East Asia. (c) 2006 International Council for the Exploration of the Sea. Published by Elsevier Ltd. All rights reserved.

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Genetic variation of four populations of Sargassum thunbergii (Mert.) O. Kuntze and one outgroup of S. fusiforme (Harv.) Setchell from Shandong peninsula of China was studied with random amplified polymorphic DNA (RAPD) and inter-simple sequence repeat (ISSR) markers. A total of 28 RAPD primers and 19 ISSR primers were amplified, showing 174 loci and 125 loci, respectively. Calculation of genetic diversity with different indicators (P%, percentage of polymorphic loci; H, the expected heterozygosity; I, Shannon's information index) revealed low or moderate levels of genetic variations within each S. thunbergii population. High genetic differentiations were determined with pairwise Nei's unbiased genetic distance (D) and fixation index (F-ST) between the populations. The Mantel test showed that two types of matrices of D and FST were highly correlated, whether from RAPD or ISSR data, r=0.9310 (P = 0.008) and 0.9313 (P=0.009) respectively. Analysis of molecular variance (AMOVA) was used to apportion the variations between and within the S. thunbergii populations. It indicated that the variations among populations were higher than those within populations, being 57.57% versus 42.43% by RAPD and 59.52% versus 40.08% by ISSR, respectively. Furthermore, the Mantel test suggested that the genetic differentiations between the four populations were related to the geographical distances (r > 0.5), i.e., they conformed to the IBD (isolation by distance) model, as expected from UPGMA (unweighted pair group method with arithmetic averages) cluster analysis. As a whole, the high genetic structuring between the four S. thunbergii populations along distant locations was clearly indicated in the RAPD and ISSR analyses (r > 0.8) in our study.

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The anadromous Chinese sturgeon (Acipenser sinensis), mainly endemic to the Yangtze River in China, is an endangered fish species. The natural population has declined since the Gezhouba Dam blocked its migratory route to the spawning grounds in 1981. In the near future, the completion of the Three Gorges Dam, the world's largest hydroelectric project, may further impact this species by altering the water flow of the Yangtze River. Little is currently known about the population genetic structure of the Chinese sturgeon. In this study, DNA sequence data were determined from the control region (D-loop) of the mitochondrial genome of adult sturgeons (n = 106) that were collected between 1995-2000. The molecular data were used to investigate genetic variation, effective female population size and population history of the Chinese sturgeon in the Yangtze River. Our results indicate that the reduction in abundance did not change genetic variation of the Chinese sturgeon, and that the population underwent an expansion in the past. AMOVA analysis indicated that 98.7% of the genetic variability occurred within each year's spawning populations, the year of collection had little influence on the diversity of annual temporary samples. The relative large effective female population size (N-ef) indicates that good potential exists for the recovery of this species in the future. Strikingly, the ratio of N-ef to the census female population size (N-f) is unusually high (0.77-0.93). This may be the result of a current bottleneck in the population of the Chinese sturgeon that is likely caused by human intervention.

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Habitat fragmentation may have some significant effects on population genetic structure because geographic distance and physical barriers may impede gene flow between populations. In this study, we investigated whether recent habitat fragmentation affected genetic structure and diversity of populations of the nematode Procamallanus fulvidraconis in the yellowhead catfish, Pelteobagrus fin't4draco. The nematode was collected from 12 localities in 7 floodplain lakes of the Yangtze River. Using I I intersirnple sequence repeat markers, analysis of molecular variance showed that genetic diversity occurred mainly within populations (70.26%). Expected heterozygosity (He) of P. fulvidraconis was barely different between connected (0.2105) and unconnected lakes (0.2083). Population subdivision (Fst) between connected lakes (0.2177) was higher than in unconnected lakes (0. 1676). However, the connected and unconnected lakes did not Cluster into 2 clades. A Mantel test revealed significant positive correlation between genetic and geographic distances (R = 0.5335, P < 0.01). These results suggest that habitat fragmentation did not cause genetic differentiation among populations or a reduction of diversity in isolated populations of P. fulvidraconis. At least 2 factors may increase the dispersal range of the nematode, i.e., flash flooding in summer and other species of fish that may serve as the definitive hosts. Moreover, lake fragmentation is probably a recent process; population size of the nematode in these lakes is large enough to maintain Population structure.

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Six polymorphic microsatellites (eight loci) were used to study the genetic diversity and population structure of common carp from Dongting Lake (DTC), Poyang Lake (PYC), and the Yangtze River (YZC) in China. The gene diversity was high among populations with values close to 1. The number of alleles per locus ranged from 2 to 11, and the average number of alleles among 3 populations ranged from 6.5 to 7.9. The mean observed (H (O)) and expected (H (E)) heterozygosity ranged from 0.4888 to 0.5162 and from 0.7679 to 0.7708, respectively. Significant deviations from Hardy-Weinberg Equilibrium expectation were found at majority of the loci and in all three populations in which heterozygote deficits were apparent. The analysis of molecular variance (AMOVA) indicated that the percent of variance among populations and within populations were 3.03 and 96.97, respectively. The Fst values between populations indicated that there were significant genetic differentiations for the common carp populations from the Yangtze River and two largest Chinese freshwater lakes. The factors that may result in genetic divergence and significant reduction of the observed heterozygosity were discussed.

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The genetic structure of populations of the fish cestode, Bothriocephalus acheilognathi collected from Bailianhe Reservoir (BLH), Changshou (CSH) and Liangzi (LZH) Lakes was investigated by using 8 microsatellite loci. A total of 108 adult worms were genotyped at each of the 8 loci. For the 3 populations, the mean number of alleles per locus ranged from 2.38 to 5.5, and the mean expected heterozygosity ranged from 0.432 to 0.559. The average polymorphic information content (PIC) was from 0.384 to 0.492. The significant F-is values indicated non-random mating within LZH and BLH populations. On the other hand, when samples were further classified into subpopulations at the level of host fish species, no or little heterozygote deficiency was detected at most loci, showing that cross-fertilization, predominantly, but not exclusively, must have occurred within the subpopulations. Microsatellite markers also revealed an unexpected high level of genetic differentiation, as measured by R-st and N-m values or by deltau(2) genetic distance among subpopulations from different hosts. Factors influencing the population genetic structure and the parasite host specificity are discussed.

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ISSR analysis was used to investigate genetic variations of 184 haploid and diploid samples from nine North Atlantic Chondrus crispus Stackhouse populations and one outgroup Yellow Sea Chondrus ocellatus Holmes population. Twenty-two of 50 primers were selected and 163 loci were scored for genetic diversity analysis. Genetic diversity varied among populations, percentage of polymorphic bands (PPB) ranged from 27.0 to 55.8%, H(Nei's genetic diversity) ranged from 0.11 to 0.20 and I(Shannon's information index) ranged from 0.16 to 0.30. Estimators PPB, H and I had similar values in intra-population genetic diversity, regardless of calculation methods. Analysis of molecular variance (AMOVA) apportioned inter-population and intra-population variations for C crispus, showing more genetic variance (56.5%) occurred in intra-population, and 43.5% variation among nine populations. The Mantel test suggested that genetic differentiation between nine C. crispus populations was closely related with geographic distances (R = 0.78, P = 0.002). Results suggest that, on larger distance scale (ca. > 1000 km), ISSR analysis is useful for determining genetic differentiations of C crispus populations including morphologically inseparable haploid and diploid individuals. (c) 2007 Elsevier B.V. All rights reserved.

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Sargassum muticum is important in maintaining the structure and function of littoral ecosystems, and is used in aquaculture and alginate production, however, little is known about its population genetic attributes. In this study, random amplified polymorphic DNA (RAPD) and inter-simple sequence repeat (ISSR) markers were used to investigate the genetic structure of four populations of S. muticum and one outgroup of S. fusiforme (Harv.) Setchell from Shandong peninsula of China. The selected 24 RAPD primers and 19 ISSR primers amplified 164 loci and 122 loci, respectively. Estimates of genetic diversity with different indicators (P%, percentage of polymorphic loci; H, the expected heterozygosity; I, Shannon's information index) revealed low or moderate level of genetic variations within each S. muticum population, and a high level of genetic differentiations were determined with pairwise unbiased genetic distance (D) and fixation index (F-ST ) among the populations. The Mantel test showed that two types of matrices of D and F-ST were highly correlated whether from RAPD (r = 0.9706, P = 0.009) or ISSR data (r = 0.9161, P = 0.009). Analysis of molecular variance (AMOVA) was conducted to apportion the variations among and within the S. muticum populations. It indicated that variations among populations were higher than those within populations, being 55.82% verse 44.18% by RAPD and 55.21% verse 44.79% by ISSR, respectively. Furthermore, the Mantel test suggested that genetic differentiations among populations were related to the geographical distances (r > 0.6), namely, conformed to the IBD (isolation by distance) model, as expected from UPGMA (unweighted pair group method with arithmetic averages) cluster analysis. On the whole, the high genetic structuring among the four S. muticum populations along the distant locations was clearly indicated in RAPD and ISSR analyses (r > 0.9, P < 0.05) in our study.

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We used random amplified polymorphic DNA markers (RAPDs) to assess genetic variation between- and within-populations of Anisodus tanguticus (Solanaceae), an endangered perennial endemic to the Qinghai-Tibetan Plateau with important medicinal value. We recorded a total of 92 amplified bands, using 12 RAPD primers, 76 of which (P = 82.61%) were polymorphic, and calculated values of H-t and H-sp of 0.3015 and 0.4459, respectively, suggesting a remarkably high rate of genetic variation at the species level. The average within-population diversity also appeared to be high, with P, H-e and H-pop values of 55.11%, 0.1948 and 0.2918, respectively. Analyses of molecular variance (AMOVA) showed that among- and between-population genetic variation accounted for 67.02% and 32.98% of the total genetic variation, respectively. In addition, Nei's coefficient of differentiation (G(ST)) was found to be high (0.35), confirming the relatively high level of genetic differentiation among the populations. These differentiation coefficients are higher than mean corresponding coefficients for outbreeding species, but lower than reported coefficients for some rare species from this region. The genetic structure of A. tanguticus has probably been shaped by its breeding attributes, biogeographic history and human impact due to collection for medicinal purposes. The observed genetic variations suggest that as many populations as possible should be considered in any planned in situ or ex situ conservation programs for this species.

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Genetic variation of 10 Rhodiola alsia ( Crassulaceae) populations from the Qinghai - Tibet Plateau of China was investigated using intersimple sequence repeat (ISSR) markers. R. alsia is an endemic species of the Qinghai - Tibet Plateau. Of the 100 primers screened, 13 were highly polymorphic. Using these primers, 140 discernible DNA fragments were generated with 112 (80%) being polymorphic, indicating pronounced genetic variation at the species level. Also there were high levels of polymorphism at the population level with the percentage of polymorphic bands (PPB) ranging from 63.4 to 88.6%. Analysis of molecular variance (AMOVA) showed that the genetic variation was mainly found among populations (70.3%) and variance within populations was 29.7%. The main factors responsible for the high level of differentiation among populations are probably the isolation from other populations and clonal propagation of this species. Occasional sexual reproduction might occur in order to maintain high levels of variation within populations. Environmental conditions could also influence population genetic structure as they occur in severe habitats. The strong genetic differentiation among populations in our study indicates that the conservation of genetic variability in R. alsia requires maintenance of as many populations as possible.

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本报告对木根麦冬的生态、遗传与进化等方面进行了综合研究,分析了木根麦冬居群内个体育性变异与基因流的模式与强度,研究了木根麦冬居群遗传变异在时间与空间的动态变化过程,深入探讨了该物种的适应策略、自然选择与进化模式。同时对生物进化中的一些基本问题进行了尝试性探讨。 一、影响有性繁殖生物居群中交配与繁殖成功的行为、生态与遗传现象最终决定等位基因与基因型的相对频率及其在世代间的变化。植物的交配系统不仅决定了居群未来世代的基因型频率,而且还影响到植物居群的有效大小、基因流和选择等其它进化因素。我们利用等位酶多态性,采用似然性方法与计算机模拟为木根麦冬三个居群的种子确定父本。共有90.1%的种子可以在居群中找到唯一的最可能父本。在这些种子中,56.1%在0.95的显著水平上可以确定唯一亲本。并且还发现:1.个体自交越多,产生的种子就越多;2.个体提供 给自己的有效花粉比提供给别的植株的有效花粉多,3.只接受花粉而不提供花粉的植株产生的种子少;4.只接受花粉而不提供花粉的植株产生种子的机会也少,综合我们以前的研究结果,可以认为,木根麦冬的交配系统正在或已经发 生了转变,从以异交为主到以自交为主。 二、点模式分析的结果表明在所研究的三个居群中,木根麦冬个体都表现出相对随机的分布。空间自相关分析却发现开花个体在空间聚集分布,呈斑块状开花。这个结果也表明个体空间分布模式与开花状态没有直接关系,集团性开花可能是一个促进花粉传播的适应特征:开花个体的聚集可能对传粉者形成强有力的吸引。空间自相关分析表明木根麦冬居群中大多数等位基因都聚集成一定大小的斑块。基因的聚集突出的说明了木根麦冬居群内基因流动的状况,花粉与种子的传播受到限制。传粉能力弱的传粉者以及种子的近距离的散布使基因局限于一定的小范围内,从而形成基因斑块,而斑块的大小由传粉者的活动范围及种子的传播距离决定。 三、基因纯合导致有害的隐性基因或部分致死的基因表达,使纯合子适合度降低,因此纯合子频率在世代间的变化将是衡量近交衰退的一个较好的指标。木根麦冬中亲代居群的观察杂合度大大高于子代居群,这个结果表明大量的纯合子在从种子到成株的过程中被淘汰。大量的纯合子被淘汰可能时由于隐性致死或有害等位基因纯合的结果,自交以及有亲缘关系的个体之间交配使有害等位基因与致死等位基因纯合,从而使一个远交种中出现自交衰退,过量的纯合子被淘汰是自交衰退的直接后果。

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物种形成是生物进化的重要步骤,是进化生物学中的基本问题。研究一些关键地区植物的物种形成,将提高对这些地区植物区系发生与发展的认识,横断山区就是这样一个非常独特与关键的地区。本文通过对主要分布于横断山区的紫乌头A.delavayi复合体进行nrDNA ITS序列、等位酶与RAPD分析,初步探讨了横断山区紫乌头A.delavayi复合体的起源与物种形成。同时对使用RAPD与等位酶数据研究群体遗传结构的方法进行了探讨。主要研究结果如下: 1. ITS序列研究 对乌头属27个类群的ITS序列进行了简约法与邻接法的研究,两种方法得到的系统发育树基本一致。乌头亚属的蔓乌头系 Ser. Volublia不是一个单系起源的类群,显拄乌头系 Ser. Sstylosa 与兴安乌头系Ser. Ambigua各自作为单系起源也没有得到支持。特产于云南西北部横断山区的一些种之间存在非常近的系统发育关系,说明这些种是近期物种形成的产物。紫乌头A.delavayi复合体的不同类群在系统发育树上被分到不同的分支中,含西南乌头A. episcopale的分支最为独特,处于系统发育树靠近基部的位置;松潘乌头 A.sunpanense与四川西北部的弯喙乌头A.campylorrhynchum组成一个分支,另一个分支含土官村乌头A.tuguancunense、紫乌头A.delavayi、玉龙乌头A.stapfianum与黄草乌A.vilmorinianum; 表明紫乌头A.delavayi复合体有3个独立的起源,因而该复合体在遗传上是不成立的。但是为了讨论与叙述的方便,本研究仍使用紫乌头A.delavayi复合体这个名字。 2. 等位酶研究 用10种酶系统14个位点,对紫乌头A.delavayi分布于云南横断山区的4种8个居群进行了等位酶分析。结果表明横断山区紫乌头A.delavayi复合体居群的遗传多样性明显低于北美和欧洲的乌头属植物。呈垂直替代关系的紫乌头A.delavayi与玉龙乌头A.stapfianum居群之间出现有规律的遗传多样性变化,表明冰川对横断山区植物的遗传多样性有重大影响。聚类分析的结果与ITS分析的结果基本一致,西南乌头A. episcopale仍然是较为独特的一类;其余3个种的居群聚为一类,紫乌头A.delavayi与玉龙乌头A.stapfianum之间的遗传一致度非常高,超过0.95。8个居群的主成分分析没有证实西南乌头A. episcopale中存在杂交渗入。Mantel 检验的结果显示8个居群之间的遗传趋异程度与地理距离之间显著相关。基因分化系数GST与近交系数FIS均显示这些居群不是以异交为主。居群间每代迁移个体数Nm显示这些居群间基因流较弱。 3. RAPD研究 用20个随机引物得到117个RAPD位点,对23个居群进行研究。其中19个属于紫乌头A.delavayi复合体,4个属于与之近缘的瓜叶乌头A.hemsleyanum。根据RAPD表型频率与单倍型频率,分别对23个居群进行了聚类分析。结果显示这两种方法所得结果高度一致,而且也与ITS和等位酶的分析结果基本一致。西南乌头A. episco pale仍然是最为独特一个分支,在本文中称为分支1。其余的居群聚成两个关系较近的大分支,一个分支包含所有分布于云南与四川西南部横断山区的居群,称为分支2,另一个包括所有分布于四川西北部与北部横断山区、重庆东北部、湖北西部与陕西的居群。大部分种处于同一分支中,只有弯喙乌头A.campylorrhynchum与瓜叶乌头A.hemsleyanum的居群分别被聚在分支2与分支3中,完全符合居群的地理位置。从3个分支内的聚类关系可以看出居群间遗传趋异等级与地理隔离程度明显相关。在遗传多样性水平上,分支1明显比分支2和分支3低许多,分支2又高于分支3。 在分支2内部,紫乌头A.delavayi与玉龙乌头A.stapfianum之间的遗传多样性变化与等位酶结果相同。在分支3的松潘乌头 A.sunpanense 5个居群中,横断山区海拔最高的2个居群遗传多样性最低。将23个居群划分成不同等级进行AMOVA分析,结果表明总遗传多样性主要分布于地区间,其次是居群间,居群内遗传多样性所占比例很低。 4.群体遗传结构研究中的数据处理方法 本研究结果表明,在使用RAPD表型数据进行AMOVA分析时,最好采用欧氏距离平方系数。本研究还说明,计算GST的两种不同方法将导致结果不同,而要与Hamrick and Godt(1990)的总结进行对比的话,最好使用他们采用的计算方法。 基于以上研究结果,可得出如下结论:⑴ 紫乌头A.delavayi复合体有3个不同的起源。西南乌头A. episcopale是一个古特有种,其余均为近期物种形成的产物。⑵地理隔离在横断山区紫乌头A.delavayi复合体的物种形成过程中影响最大。而地理隔离主要起因于连续分布区的片段化与瓶颈效应,而这两个原因又与横断山区的地质历史与冰川进退密切相关。

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银杉(Cathaya argyrophylla)是中国特有的濒危裸子植物,孤立分布于我国亚热带山地。虽然以往等位酶和RAPD标记的研究表明,银杉群体的遗传多样性水平很低而群体间的遗传分化很高,但迄今对该种群体的动态变化以及物种的进化历史仍缺乏了解,包括影响群体遗传结构的因素以及物种可能的避难所等,对如何有效地保护和恢复银杉群体仍缺乏科学依据。本文根据8个核基因片段和2个线粒体片段的序列数据,运用群体遗传学和谱系地理学方法,探讨了银杉在DNA水平上的多样性和群体的动态历史,探讨了影响银杉特殊的群体遗传结构的各种因素,并推测了银杉第四纪冰期的避难所,对银杉花粉活力及其变异进行检测。在此基础上,提出了保护和恢复银杉群体的具体策略和措施。主要研究结果如下:   1. 核甘酸多态性和群体遗传结构   从101个核基因片段中筛选了8个适用于银杉的片段,对来自四个地区15个群体共86个个体的胚乳总DNA进行了扩增和测序。8个核基因座位的平均核苷酸多态性(θs=0.0022,πs=0.0027)显著低于其它松杉植物遗传多态性的多座位估计值。四个地区中,大瑶山(DY)的多态性最高(θs=0.0026,πs=0.0027),八面山(BM)最低(θs=0.0014,πs=0.0018),大娄山(DL)和越城岭(YC)介于二者之间。大多数座位内的多态位点间紧密连锁,座位间的连锁只在八面山地区检测到。AMOVA分析表明显著性的多态性比例存在于地区间(20.05%)和地区内群体间(9.37%)。FST分析也显示群体间(FST=0.294)和地区间(FST =0.131-0.319)存在显著的遗传分化。推测伴随着瓶颈效应而出现的遗传漂变及其有限的基因流(Nm=1.2)是导致银杉群体低水平多态性和群体间强烈分化的主要原因。   2.谱系地理学分析   利用2个线粒体片段(nad1和nad4)序列以及高变异量的核2009片段序列对银杉的谱系地理进行了探讨。2个线粒体片段的多态位点组合成3种单倍型,将银杉分成大娄山(DL)、八面山(BM)以及越城岭(YC)和大瑶山(DY)3个地区,地区间的单倍型完全不同(GST=1.0),结合核基因呈现的群体遗传结构,推测现存银杉群体至少来源于4个冰期避难所,相当于银杉现存的4个相互隔离的地区。2009座位上12个变异位点组合成8种单倍型,位于单倍型谱系内部节点的4种祖先单倍型分布广泛、出现频率最高,其它7个核基因座位具有类似谱系结构。遗传距离和地理距离没有相关性,NST (0.138)与GST (0.134)没有显著性差异,说明现存的银杉群体是相对较近的时间内片断化的产物。2009片段分离位点的失配分布(mismatch distribution)呈双峰和多峰,表明银杉群体没有经历近期的扩张,与古生物学研究证据相吻合。   3. 银杉的基因杂合性和花粉生命力   利用2009和cad两个核基因片段,采用多胚乳序列法得到总的杂合体比率为64%(2009)和60%(cad),说明银杉群体中存在高比例的杂合体。大娄山地区的杂合体比率是八面山地区的2倍。银杉杂合体比率的高低可能与其遗传多态性有关,也可能是自然选择的结果。采用TTC染色法对银杉的花粉生命力进行了测定,在干燥低温条件下银杉花粉的活力很稳定,保存一年后有活力的花粉数仍高达80%以上。通过对来自两个地区(DY和YC)7个群体共16个银杉个体花粉活力的测定发现,银杉有活力花粉比例高达93.3%,与其它裸子植物相当。花粉活力在地区间和群体间存在显著差异,花坪地区(95.2%)的花粉活力高于大瑶山(91.3%)。花粉活力在群体内个体间差异不显著。   4.银杉的进化历史及其保护   银杉的低水平的遗传多样性和独特的群体遗传结构对我们推测其冰川期避难所提供了重要依据。本研究在银杉4个孤立分布区发现了彼此不重叠的线粒体单倍型,同时核基因表现出了4个地理群,说明随着第四纪冰期气候的波动和银杉分布范围的片段化,原来广布的群体逐步萎缩,最后被保留在位于西部大娄山(DL),东部八面山(BM),中南部越城岭(YC)和南部大瑶山(DY) 4个相互隔离的避难所。银杉独特的群体结构和动态历史对进一步制定相应的保护措施具有重要参考价值。由于遗传多态性很低,群体又小,几乎所有现存的银杉群体都面临由于随机事件导致的物种灭绝。更严重的是,当前该物种的适生环境不断恶化和片段化,以及异常低的生殖和存活率导致银杉与其它物种竞争能力很低。因此,除目前采取的原地保护策略外,迁地保护应给予优先考虑。此外,采用传统的控制授粉策略(在遗传上有显著差异的群体间开展人工杂交)是丰富其遗传多态性、恢复衰退群体的可行措施之一。