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为了阐明加拿大一枝黄花成功入侵的机制,利用简单序列重复区间标记(ISSR)方法对加拿大一枝黄花和本地一枝黄花的遗传多样性进行比较研究。从100条引物中筛选出12条引物用于PCR扩增,利用POPGEN32软件对2种一枝黄花进行遗传多样性分析。结果表明,加拿大一枝黄花在物种水平上的多态位点百分率为95.19%,Nei’s基因多样性指数为0.308 5,Shannon’s信息指数为0.415 8;本地一枝黄花在物种水平上的多态位点百分率(89.80%)、Nei’s基因多样性指数(0.249 1)和Shannon’s信息指数(0.383 4)都比加拿大一枝黄花小。加拿大一枝黄花和本地一枝黄花居群间遗传分化系数分别为0.118 2和0.131 3,居群内变异分别为0.881 8和0.868 7,表明2个物种居群间的遗传分化不明显,遗传一致度高,且主要的遗传变异存在于居群内。入侵植物加拿大一枝黄花具有较高遗传多样性,且高于本地一枝黄花,这可能是加拿大一枝黄花成功入侵的原因之一。  相似文献   
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缢蛏6个群体遗传结构的ISSR分析   总被引:7,自引:0,他引:7  
采用ISSR分子标记对采自福建宁德(ND)、浙江台州(TZ)、上海崇明(CM)、山东海阳(HY)、天津汉沽(HG)和辽宁庄河(ZH)的缢蛏6个野生群体进行遗传多样性和遗传关系分析.筛选出10条ISSR引物对6个群体共216个样品进行扩增,共得到138个清晰的扩增位点,其中多态性位点135个,多态位点百分率为97.83%,在物种水平上的遗传多样性较为丰富.群体遗传多样性分析结果表明,6个群体的多态位点百分率在61.59%~72.46%之间,基因多样性指数和Shannon's信息指数分别在0.104 3~0.176 6和0.178 9~0.280 8之间,其中ND群体的多样性指数最低.群体间遗传分化、遗传距离和聚类结构显示,ND群体和TZ群体亲缘关系最近,首先聚为一支,之后依次与CM群体及HG群体和HY群体聚类,最后与ZH群体聚在一起,表明地理位置较远的群体,遗传距离也较远.  相似文献   
3.
The Greater Sudbury region in Northern Ontario is known as one of Canada's most ecologically disturbed regions because of the effects of heavy metal pollution. The main objectives of the present study were to assess the effects of soil liming of sites contaminated with metals on species richness and abundance, forest health in general, and to determine the level of genetic variability in white birch populations from Northern Ontario. Shannon-Wiener diversity index and tree species richness values were higher in populations from limed and control sites compared to the unlimed areas. A significant improvement in forest population health (measured using a scale of 1 to 10) in limed sites over the unlimed areas was observed. Key results revealed no significant difference for metal content in white birch (Betula papyrifera) leaves from limed compared to unlimed sites. But higher levels of Al, Ca, Mg, Mn, Ni, Sr, and Zn in leaves compared to the bioavailable amount in soil were observed. The levels of genetic variability in white birch populations were moderate to high, ranging from 30% to 79% of polymorphic loci. A high level of genetic variability such as observed in the present study is usually associated with long term sustainability in plant populations. No association was found between metal accumulation in soil or plants and the levels of genetic variation.  相似文献   
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利用ISSR分子标记技术对湖北省大贵寺国家森林公园野生青檀(Pteroceltis tatarinowii Maxim.)居群进行遗传多样性分析。用11条ISSR引物对6个青檀居群64个样品进行扩增,扩增片段长度在200bp至3000bp之间,检测到179个位点,其中多态位点165个,多态位点百分率(P)为92.14%。青檀在物种水平上的Nei基因多样性指数(胁)和Shannon信息指数∽分别为0.273和0.423,在居群水平上分别为0.225和0.343,显示出青檀有着较高的遗传多样性。居群间的遗传分化系数(Gsr)为0.192,表明青檀居群间存在着较大的遗传分化;UPGMA聚类分析表明遗传距离与海拔差距有一定的相关性,相邻海拔的青檀居群间遗传距离较近。不同海拔导致的异质生境可能是影响青檀居群遗传分化的主要原因。  相似文献   
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岩生植物金发草遗传多样性的ISSR和AFLP比较研究   总被引:4,自引:0,他引:4  
禾本科岩生植物金发草〔Pogonatherum paniceum(Lam.)Hack.〕具有开发为新型国产草坪草种的潜力.用IS-SR与AFLP分子标记,分析了四川、重庆、云南及广西等地22个金发草种群的遗传多样性.用14个ISSR引物、10对AFLP引物分别扩增出239、485条谱带,多态位点百分率分别为94.98%、90.93%.两种标记均揭示出金发草种群具有丰富的遗传多样水平.由于标记原理不同,两种标记的结果呈现出微小的差别.相对而言,基于ISSR标记分析的遗传多样性参数高于AFLP标记得到的遗传多样性参数,这可能是由于金发草种群间存在着大量的微卫星变异所致.两种标记基于Nei遗传距离的聚类分析结果存在着一定的差异,但用Mantel测试对两种方法检测的遗传一致度进行相关性分析表明,它们之间存在着显著的相关性(r=0.3146,P=0.0150),用SPSS11.5软件进一步分析两种标记遗传一致度的相关性,Pearson相关系数为0.315(在0.01水平上),两种标记的聚类分析都揭示出金发草的遗传变异呈现出一定的地域分布规律.ISSR标记与AFLP标记均能应用于金发草种群的遗传多样性研究.图1表2参16  相似文献   
6.
Chinese pine, Pinus tabulaeformis Carr., a species that ranges broadly across northeastern to southwestern China, plays a vital role in the maintenance of the structure and function of these ecosystems. In this study, we examined the genetic diversity of five widespread populations in Shanxi Plateau, the distribution center of Chinese pine, using 15 random amplified polymorphic DNA (RAPD) primers and five inter simple sequence repeat (ISSR) primers in 140 individual tree samples. Similar genetic differentiation results were obtained from the data of RAPD and ISSR. Based on the two sets of data, Nei’s genetic diversity was 0.2842 and 0.3078 and Shannon’s indices of diversity were 0.4332 and 0.4468. Genetic diversity at the species level was found high relative to that for other genera of Pinaceae. The greatest diversity was observed in the Lingkong Mountain population (0.3860), while the lowest was recorded in the Luya Mountain population (0.3352), most likely as a result of natural adaptation and anthropogenic perturbation. The relative magnitude of differentiation among populations (G ST) was 0.1491 and 0.1356, respectively, implying that most genetic variation was within the populations (∼0.8509), rather than among populations. Published in Russian in Ekologiya, 2008, No. 1, pp. 36–42. The article was translated by the authors.  相似文献   
7.
麻疯树种质资源遗传多样性的ISSR分析   总被引:12,自引:0,他引:12  
采用ISSR分子标记技术对大戟科属麻疯树9个自然居群的遗传多样性水平和遗传结构进行了研究.用10个引物对9个居群共135个样品进行了扩增,共获得169条清晰的扩增位点,其中多态性位点164个.POPGENE分析结果表明,麻疯树居群具有丰富的遗传多样水平(多态百分率PPB=97.04%,Neis遗传多样性H=0.2357,Shannon信息指数I=0.3760).AMOVA分析表明,9个自然居群间遗传多样性出现了较大的遗传分化(Gst=0.5398)可能与其有限的基因流(Nm=0.4667)和遗传漂变有关;而居群内有限的遗传分化可能是由于麻疯树自交、近交占主导方式的繁育方式有关.并进行了麻疯树居群的聚类分析.图3表4参19  相似文献   
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