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1.
 利用9对SSR引物对中华猕猴桃(Actinidia chinensis)和美味猕猴桃(A. deliciosa)两近缘种的5个同域分布复合体和各自1个非同域分布居群进行了遗传多样性、居群遗传结构的分析以及种间杂交渐渗的探讨。结果表明:1)两物种共有等位基因比例高达81.13%,物种特有等位基因较少(中华猕猴桃:13.27%,美味猕猴桃:5.61%),但共享等位基因表型频率在两近缘种间存在差异,而且与各同域复合体中两物种样本的交错程度或间距存在关联;2)两种猕猴桃均具有极高遗传多样性,美味猕猴桃的遗传多样性(Ho=0 .749, PIC=0.818)都略高于中华猕猴桃(Ho=0.686,PIC=0.799);3)两猕 猴桃物种均具有较低的Nei’s居群遗传分化度,但AMOVA分析结果揭示种内异域居群间(FST=0.091 5)和同域复合体种间(FST=0.111 5)均存在一定程度的遗传分化;中华猕猴桃居群遗传分化(GST=0.086; FST=0.212 1)高于美味猕猴桃(GST= 0.080;FST=0.142 0);4)同域分布复合体两物种间的遗传分化(GST=0.020)低于物种内异域居群间的遗传分化(中华猕猴桃:GST=0.086; 美味猕猴桃:GST=0.080),同域复合体物种间的基因流(Nm=7.89 -29.75)远远高于 同种异域居群间(中华猕猴桃:Nm =2.663; 美味猕猴桃:Nm=2.880); 5)居群UPGMA聚类揭示在同一地域的居群优先聚类,个体聚类结果显示多数个体聚在各自居群组内,但各地理居群并不按地理距离的远近聚类,这与Mantel相关性检测所揭示的居群间遗传距离与地理距离没有显著性相关的结果一致。进一步分析表明两种猕猴桃的遗传多样性和居群遗传结构不仅受其广域分布、远交、晚期分化等生活史特性的影响,同时还与猕猴桃的染色体基数高 (x=29)、倍性复杂和种间杂交等因素密切相关,其中两种猕猴桃的共享祖先多态性和同域分布种间杂交基因渗透对两猕猴桃的居群遗传结构产生了重要影响。  相似文献   

2.
极濒危植物中华水韭休宁居群的遗传结构   总被引:12,自引:0,他引:12  
采用超薄平板微型聚丙烯酰胺等电聚焦电泳方法对极濒危蕨类植物中华水韭(Isoetes sinensis)现存于安徽休宁的5个亚居群的等位酶多样性和遗传结构进行了研究。结果表明:中华水韭居群每位点平均等位基因数A=1.7,平均多态位点比率P=55.56%,平均预期杂合度He=0.201。居群中半数的多念位点表现为等位基因的“固定杂合”,5个亚居群的遗传多样性无显著差异,但都表现出严重偏离Hardy—Weinberg平衡的杂合子过昔;其遗传变异主要发生于亚居群内(94.27%),亚居群之间的遗传分化较小(Gsl=0.0573),亚居群间遗传一致度较高(I=0.960—0.999)。我们推断这可能是由于居群构建之初的奠基者效应或者原种群曾经历了较为严重的遗传瓶颈所导致;此外亚居群间便利的基因交流也可能起到了很大作用(Nm=4.5062)。取自休宁居群的75株样品由13个专一多位点基因型(18个位点等位酶基因型)组成,亚居群及个体间高度遗传均质。本文还就中华水韭休宁野生居群濒危的遗传因素进行了探讨,并提出了相应的保育策略。  相似文献   

3.
中国板栗自然居群微卫星(SSR)遗传多样性   总被引:8,自引:0,他引:8  
采用8对微卫星分子标记对中国板栗(Castanea mollissima)的28个自然居群进行了遗传多样性与遗传结构分析。在849个个体上扩增得到128个等位基因, 每位点平均等位基因数(A)为16。中国板栗居群的平均预期杂合度(HE)为0.678, 平均观察杂合度(HO)为0.590。华中地区的中国板栗居群遗传多样性最高(A = 8.112, HE = 0.705, HO = 0.618), 其次为西北地区和华东地区, 而西南地区遗传多样性最低(A = 6.611, HE = 0.640, HO = 0.559)。基于无限等位基因模型(IAM)和基于逐步突变模型(SMM)的遗传分化系数分别为FST = 0.120和RST = 0.208。分子方差分析(AMOVA)结果表明中国板栗野生居群的遗传变异主要存在于居群内(87.16%)。Mantel检测揭示遗传距离与地理距离之间无显著相关性, 表明基因流不是主导中国板栗居群遗传结构的关键因素。华中地区(尤其是神农架及其周边地区)是中国板栗遗传多样性的现代分布中心, 因而应该得到优先保护, 同时该区域的野生板栗居群可优先作为栽培板栗遗传育种的材料和基因库。  相似文献   

4.
濒危物种巴东木莲的等位酶遗传多样性及其保护策略   总被引:17,自引:0,他引:17  
为了确定中国特有濒危植物巴东木莲(Manglietia patungensis)的就地保护优先单元和制定迁地保护的取样策略,采用超薄平板聚丙烯酰胺等电聚焦电泳技术对巴东木莲的7个野生居群的等位酶遗传多样性及遗传结构进行了分析。通过对8个酶系统19个酶位点的分析结果来看,巴东木莲具有较高的遗传多样性和一定程度的遗传分化。每位点平均等位基因数(A)为1.57,多态位点百分率(P)为48.1%,平均预期杂合度(He)为0.192。巴东木莲居群间的遗传分化系数(GST)为0.165,说明其16.5%的遗传变异存在于居群间;基于遗传分化系数计算的基因流(Nm)为1.27,说明居群间存在适度的基因流;固定指数(F)为-0.191,显示巴东木莲居群杂合体轻微过量,纯合体略显不足。本研究表明,目前巴东木莲仍具有较高的遗传多样性并且在其适宜生境中可以完成自然更新,因此应采取以就地保护为主的综合保育策略。  相似文献   

5.
中华水韭松阳居群的群落结构与种间联结性研究   总被引:12,自引:0,他引:12  
朱圣潮 《生物多样性》2006,14(3):258-264
为全面了解国家一级保护植物中华水韭(Isoetessinensis)的濒危机制,作者对分布于浙江松阳的中华水韭居群的自然生境进行了野外观察,在1m×1m样方尺度上研究了中华水韭与群落中出现频率较高的27个物种之间的联结性。结果表明:群落中物种组成贫乏,其组成成分中温带性质明显,中华水韭在不同小群落中分布密度差异较大,在少数小群落中能形成优势种群。中华水韭与薄叶假耳草(Neanotishirsuta)、鳢肠(Ecliptaprostrata)、短尖苔草(Carexbrevicuspis)等7个种群的种间联结性极显著,与多数种群间联结性不显著;中华水韭与大多数种群的联结系数(AC)值在–0.4至0.4之间,即关联小,说明中华水韭在群落中的存在是相对独立的;仅少数小群落的优势种与中华水韭之间有种间竞争。中华水韭受生境和种间竞争影响较大,生态适应性差。此研究结果对制定该物种合适的就地保护措施和恢复计划具有参考价值。  相似文献   

6.
药用植物华中五味子的种群遗传多样性及遗传结构   总被引:2,自引:0,他引:2  
华中五味子(Schisandra sphenanthera)是著名的药用植物,具有悠久的药用历史和巨大的开发潜力。为了有效评估、利用和保护华中五味子资源,应用自主开发的9对SSR引物研究了华中五味子自然种群的遗传多样性与遗传结构。结果表明:在10个采样种群中,共检测到58个等位基因,平均预期杂合度HE为0.528,平均观察杂合度HO为0.519,较大的连续种群保持了较高的遗传多样性,而小种群的遗传多样性则相对较低;华中五味子总体表现为显著的杂合子缺失,内繁育系数FIS为0.042;种群间总的遗传分化系数FST为0.108,两两种群间分化显著;贝叶斯聚类结果把10个采样种群按遗传组成分为江南组和江北组2组,长江所形成的特殊地理屏障对华中五味子江南和江北地区间较高的遗传分化造成了影响。  相似文献   

7.
云南疣粒野生稻的居群遗传结构及其在原位保护中的意义   总被引:7,自引:0,他引:7  
用 1 2种酶系统 1 7个等位酶位点对采自云南思茅地区疣粒野生稻Oryzameyeriana(Zoll.etMerr.exSteud .)Baill.7个居群的 1 6 4个个体进行了遗传多样性的研究 .相对于以前报道过的具有相同生活史特性和繁育系统的种子植物和稻属中的其他种类 ,疣粒野生稻的遗传多样性水平极低 (A =1 .1 ,P =8.0 % ,Ho=0 .0 0 4和He=0 .0 1 5 ) ,但居群间的遗传分化较大 .FST高达 0 .6 4 9,表明在遗传变异总量中的6 4 .9%存在于居群间 .对这样在较小的地理区域内居群间就呈现出剧烈遗传分化的物种来说 ,大多居群均有保护的价值 .因此 ,进行原位保护时原则上应建立较大的自然保护区 ,涉及较多数目的居群 .同时 ,提出了在云南进行原位保护时应优先考虑的地点 .  相似文献   

8.
采用微卫星技术研究了板栗(Castanea mollissima)和锥栗(C. henryi)同域分布居群的空间遗传结构, 探讨了它们的遗传变异空间分布特征及其形成机制。结果表明,采用的7个微卫星在两物种中共扩增出173个等位基因,两物种都具有较高的遗传多样性且种间遗传分化水平较低(FST=0.051), 但空间自相关分析揭示板栗和锥栗在同域居群中具有不同的空间遗传结构,锥栗在100 m内有空间遗传结构,而板栗没有;同时,基于亲缘关系系数FijSp统计值也显示锥栗具有比板栗更强的空间遗传结构(板栗的Sp=0.002;锥栗的Sp=0.018)。居群遗传变异的空间结构是其传粉和种子散播及生境共同作用的结果,其中种子的近距离散播和居群密度可能是主要的因素。板栗和锥栗居群在小尺度上空间遗传结构的差异可能反映了它们种子的大小及扩散过程的差异。  相似文献   

9.
采用微卫星分子标记对中华水韭(Isoetessinensis)安徽休宁、浙江建德和东方水韭(I.orientalis)浙江松阳三个孑遗居群的迁地保护居群开展了遗传多样性检测与遗传结构分析。7对多态性微卫星引物在36个迁地保护亚居群的720个样本中共检测到59个等位基因,每位点平均等位基因数(A)为8·43。迁地保护亚居群均维持很高的遗传多样性,多态信息含量(PIC)平均为0·707。迁地保护亚居群间遗传分化较低,遗传分化系数GST仅为0·070,居群间具有较大基因流(Nm=3·59)。单因素方差分析发现水韭孢子或孢子体在沿主要水流方向上的长距离传播能力要强于弱水流方向上的短距离传播能力,水流动态对水韭植物的基因流有重要影响。这与UPGMA聚类分析中迁地保护亚居群按邻近位置或水流相通程度优先聚类的结果相一致,水流所带动的强大基因流导致了不同孑遗居群来源的迁地保护亚居群间的遗传混杂。建议在开展水韭植物的迁地保护或回归自然重建时,对具有地方适应分化或者显著性进化的水韭植物居群应相互隔离而不宜配置在一起,以避免远交衰退的遗传风险。  相似文献   

10.
北京地区野生大豆种群SSR标记的遗传多样性评价   总被引:7,自引:0,他引:7       下载免费PDF全文
 使用40对SSR引物分析了北京地区野生大豆(Glycine soja)天然种群的遗传结构与遗传多样性。10个种群共检测到526个等位变异, 平均每对引物等位基因数为13.15个, 种群平均Shannon指数(I)为0.658, 群体平均位点预期杂合度(He)为0.369, 群体平均位点杂合度(Ho)为1.29 %。平均种群内遗传多样度(Hs)为0.362, 平均种群间遗传多样度(DST)为0.446, 基因分化程度(GST)为0.544。该研究显示, 中-西部生态区种群比北部和东部山区种群有较高的遗传多样性。在地理上, 环绕北京地区的太行山和燕山两大余脉区域野生大豆种群遗传分化表现出地理差异。可能是经过干旱选择而形成的有抗旱潜力的种群在遗传上表现单一化。期待该种群提供耐旱基因。  相似文献   

11.
In ectotherms, variation in life history traits among populations is common and suggests local adaptation. However, geographic variation itself is not a proof for local adaptation, as genetic drift and gene flow may also shape patterns of quantitative variation. We studied local and regional variation in means and phenotypic plasticity of larval life history traits in the common frog Rana temporaria using six populations from central Sweden, breeding in either open‐canopy or partially closed‐canopy ponds. To separate local adaptation from genetic drift, we compared differentiation in quantitative genetic traits (QST) obtained from a common garden experiment with differentiation in presumably neutral microsatellite markers (FST). We found that R. temporaria populations differ in means and plasticities of life history traits in different temperatures at local, and in FST at regional scale. Comparisons of differentiation in quantitative traits and in molecular markers suggested that natural selection was responsible for the divergence in growth and development rates as well as in temperature‐induced plasticity, indicating local adaptation. However, at low temperature, the role of genetic drift could not be separated from selection. Phenotypes were correlated with forest canopy closure, but not with geographical or genetic distance. These results indicate that local adaptation can evolve in the presence of ongoing gene flow among the populations, and that natural selection is strong in this system.  相似文献   

12.
This paper examines two wild populations of Limonium carolinianum for population genetic subdivision and spatial patterns of genetic variation in an attempt to simultaneously test for both the action of local adaptation to tidal gradients and isolation by distance (IBD). A VNTR (variable number of tandem repeats) genetic “fingerprinting” marker was used to infer relatedness among mapped plants in two populations. Band sharing within and between populations estimated F'ST, an approximate measure of FST. Regression models were used to analyze the relationship between band sharing and spatial separation in tidal elevation and horizontal distance, as well as the relationship of fecundity differences with band sharing and spatial distance. Populations differed in band size frequency distributions and mean number of bands per profile and, therefore, likely differed in effective population size. F'ST was estimated at 0.0678 and was significantly greater than F'ST among randomly constructed subpopulations. Band sharing decreased 0.13% per meter in one population but showed no significant relation to distance in the other. In the population with significant IBD band sharing increased with increasingly different tidal elevation, contrary to an adaptive hypothesis, possibly due to directional gene flow or drift. Deme sizes were approximately 25 meters and greater than 100 meters, spanning larger areas than the entire environmental gradient. Fecundity differences were not associated with spatial parameters or band sharing. Unequal potential maternal fecundity measured as variance in number of seeds per maternal family was a significant source of genetic sampling variance. The VNTR marker employed is capable of detecting adaptation as identity by descent in ecological time and is an appropriate method for estimating the net evolutionary fate of polygenic traits. The results show that the net balance between selection along an environmental gradient and the effects of IBD and unequal maternal fecundity favor genetic differentiation by random processes in populations of Limonium.  相似文献   

13.
In this study we investigated the within- and between-population genetic variation using microsatellite markers and quantitative traits of the shea tree, Vitellaria paradoxa, an important agroforestry tree species of the Sudano–Sahelian region in Africa. Eleven populations were sampled across Mali and in northern Côte d’Ivoire. Leaf size and form and growth traits were measured in a progeny test at the nursery stage. Eight microsatellites were used to assess neutral genetic variation. Low levels of heterozygosity were recorded (1.6–3.0 alleles/locus; HE = 0.25–0.42) and the fixation index (FIS = −0.227–0.186) was not significantly different from zero suggesting that Hardy–Weinberg equilibrium is encountered in all populations sampled. Quantitative traits exhibited a strong genetic variation between populations and between families within populations. The degree of population differentiation of the quantitative traits (QST = 0.055–0.283, QSTmean = 0.189) strongly exceeds that in eight microsatellite loci (FST = −0.011–0.142, FSTmean = 0.047). Global and pairwise FST values were very low and not significantly different from zero suggesting agroforestry practices are amplifying gene flow (Nm = 5.07). The population means for quantitative traits and the rainfall variable were not correlated, showing variation was not linked with this climatic cline. It is suggested that this marked differentiation for quantitative traits, independent of environmental clines and despite a high gene flow, is a result of local adaptation and human selection of shea trees. This process has induced high linkage disequilibrium between underlying loci of polygenic characters.  相似文献   

14.
A combination of founder effects and local adaptation – the Monopolization hypothesis – has been proposed to reconcile the strong population differentiation of zooplankton dwelling in ponds and lakes and their high dispersal abilities. The role genetic drift plays in genetic differentiation of zooplankton is well documented, but the impact of natural selection has received less attention. Here, we compare differentiation in neutral genetic markers (FST) and in quantitative traits (QST) in six natural populations of the rotifer Brachionus plicatilis to assess the importance of natural selection in explaining genetic differentiation of life‐history traits. Five life‐history traits were measured in four temperature × salinity combinations in common‐garden experiments. Population differentiation for neutral genetic markers – 11 microsatellite loci – was very high (FST = 0.482). Differentiation in life‐history traits was higher in traits related to sexual reproduction than in those related to asexual reproduction. QST values for diapausing egg production (a trait related to sexual reproduction) were higher than their corresponding FST in some pairs of populations. Our results indicate the importance of divergent natural selection in these populations and suggest local adaptation to the unpredictability of B. plicatilis habitats.  相似文献   

15.
Gene flow is often considered to be one of the main factors that constrains local adaptation in a heterogeneous environment. However, gene flow may also lead to the evolution of phenotypic plasticity. We investigated the effect of gene flow on local adaptation and phenotypic plasticity in development time in island populations of the common frog Rana temporaria which breed in pools that differ in drying regimes. This was done by investigating associations between traits (measured in a common garden experiment) and selective factors (pool drying regimes and gene flow from other populations inhabiting different environments) by regression analyses and by comparing pairwise FST values (obtained from microsatellite analyses) with pairwise QST values. We found that the degree of phenotypic plasticity was positively correlated with gene flow from other populations inhabiting different environments (among‐island environmental heterogeneity), as well as with local environmental heterogeneity within each population. Furthermore, local adaptation, manifested in the correlation between development time and the degree of pool drying on the islands, appears to have been caused by divergent selection pressures. The local adaptation in development time and phenotypic plasticity is quite remarkable, because the populations are young (less than 300 generations) and substantial gene flow is present among islands.  相似文献   

16.
The comparison of the degree of differentiation in neutral marker loci and genes coding quantitative traits with standardized and equivalent measures of genetic differentiation (FST and QST, respectively) can provide insights into two important but seldom explored questions in evolutionary genetics: (i) what is the relative importance of random genetic drift and directional natural selection as causes of population differentiation in quantitative traits, and (ii) does the degree of divergence in neutral marker loci predict the degree of divergence in genes coding quantitative traits? Examination of data from 18 independent studies of plants and animals using both standard statistical and meta‐analytical methods revealed a number of interesting points. First, the degree of differentiation in quantitative traits (QST) typically exceeds that observed in neutral marker genes (FST), suggesting a prominent role for natural selection in accounting for patterns of quantitative trait differentiation among contemporary populations. Second, the FSTQST difference is more pronounced for allozyme markers and morphological traits, than for other kinds of molecular markers and life‐history traits. Third, very few studies reveal situations were QST < FST, suggesting that selection pressures, and hence optimal phenotypes, in different populations of the same species are unlikely to be often similar. Fourth, there is a strong correlation between QST and FST indices across the different studies for allozyme (r=0.81), microsatellite (r=0.87) and combined (r=0.75) marker data, suggesting that the degree of genetic differentiation in neutral marker loci is closely predictive of the degree of differentiation in loci coding quantitative traits. However, these interpretations are subject to a number of assumptions about the data and methods used to derive the estimates of population differentiation in the two sets of traits.  相似文献   

17.
Although loss of genetic variation is frequently assumed to be associated with loss of adaptive potential, only few studies have examined adaptation in populations with little genetic variation. On the Swedish west coast, the northern fringe populations of the natterjack toad Bufo calamita inhabit an atypical habitat consisting of offshore rock islands. There are strong among‐population differences in the amount of neutral genetic variation, making this system suitable for studies on mechanisms of trait divergence along a gradient of within‐population genetic variation. In this study, we examined the mechanisms of population divergence using QST–FST comparisons and correlations between quantitative and neutral genetic variation. Our results suggest drift or weak stabilizing selection across the six populations included in this study, as indicated by low QSTFST values, lack of significant population × temperature interactions and lack of significant differences among the islands in breeding pond size. The six populations included in this study differed in both neutral and quantitative genetic variation. Also, the correlations between neutral and quantitative genetic variation tended to be positive, however, the relatively small number of populations prevents any strong conclusions based on these correlations. Contrary to the majority of QST–FST comparisons, our results suggest drift or weak stabilizing selection across the examined populations. Furthermore, the low heritability of fitness‐related traits may limit evolutionary responses in some of the populations.  相似文献   

18.

Background and Aims

Natural selection and genetic drift are important evolutionary forces in determining genetic and phenotypic differentiation in plant populations. The extent to which these two distinct evolutionary forces affect locally adaptive quantitative traits has been well studied in common plant and animal species. However, we know less about how quantitative traits respond to selection pressures and drift in endangered species that have small population sizes and fragmented distributions. To address this question, this study assessed the relative strengths of selection and genetic drift in shaping population differentiation of phenotypic traits in Psilopeganum sinense, a naturally rare and recently endangered plant species.

Methods

Population differentiation at five quantitative traits (QST) obtained from a common garden experiment was compared with differentiation at putatively neutral microsatellite markers (FST) in seven populations of P. sinense. QST estimates were derived using a Bayesian hierarchical variance component method.

Key Results

Trait-specific QST values were equal to or lower than FST. Neutral genetic diversity was not correlated with quantitative genetic variation within the populations of P. sinense.

Conclusions

Despite the prevalent empirical evidence for QST > FST, the results instead suggest a definitive role of stabilizing selection and drift leading to phenotypic differentiation among small populations. Three traits exhibited a significantly lower QST relative to FST, suggesting that populations of P. sinense might have experienced stabilizing selection for the same optimal phenotypes despite large geographical distances between populations and habitat fragmentation. For the other two traits, QST estimates were of the same magnitude as FST, indicating that divergence in these traits could have been achieved by genetic drift alone. The lack of correlation between molecular marker and quantitative genetic variation suggests that sophisticated considerations are required for the inference of conservation measures of P. sinense from neutral genetic markers.  相似文献   

19.
Zymoseptoria tritici, the causal agent of Septoria tritici blotch, has emerged and evolved as a pathogen on wheat in the Fertile Crescent. Iran is located in this region, and study on the ancient pathogen populations in the country can improve our understanding on adaptive potential of aggressiveness, the role of local adaptation in shaping population structure and the involvement of selection and genetic drift in favouring aggressiveness adaptation to environments. To this aim, three aggressiveness components including days until first lesion (DUFL), days until first pycnidia (DUFP) and percentage of leaf area covered by pycnidia, in five populations of the pathogen collected from different provinces of Iran were compared in greenhouse conditions. All populations except for Golestan showed high within‐population diversity for the examined traits. No difference in aggressiveness components was found between fungal collections from Khuzestan and Fars; however, significant variation was evident among the populations originated from other provinces. Comparisons of estimated QST values to FST indicated that genetic differentiation in pycnidial coverage has been the result of selection imposed by different variables; however, the divergence found for DUFL and DUFP has been achieved by genetic drift. The possible mechanisms involved in aggressiveness diversity of the pathogen populations and the impact of these findings on breeding programs for quantitative resistance are discussed.  相似文献   

20.
Evaluating the relative importance of neutral and adaptive processes as determinants of population differentiation across environments is a central theme of evolutionary biology. We applied the QSTFST comparison flanked by a direct test for local adaptation to infer the role of climate‐driven selection and gene flow in population differentiation of an annual grass Avena sterilis in two distinct parts of the species range, edge and interior, which represent two globally different climates, desert and Mediterranean. In a multiyear reciprocal transplant experiment, the plants of desert and Mediterranean origin demonstrated home advantage, and population differentiation in several phenotypic traits related to reproduction exceeded neutral predictions, as determined by comparisons of QST values with theoretical FST distributions. Thus, variation in these traits likely resulted from local adaptation to desert and Mediterranean environments. The two separate common garden experiments conducted with different experimental design revealed that two population comparisons, in contrast to multi‐population comparisons, are likely to detect population differences in virtually every trait, but many of these differences reflect effects of local rather than regional environment. We detected a general reduction in neutral (SSR) genetic variation but not in adaptive quantitative trait variation in peripheral desert as compared with Mediterranean core populations. On the other hand, the molecular data indicated intensive gene flow from the Mediterranean core towards desert periphery. Although species range position in our study (edge vs. interior) was confounded with climate (desert vs. Mediterranean), the results suggest that the gene flow from the species core does not have negative consequences for either performance of the peripheral plants or their adaptive potential.  相似文献   

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