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1.
利用ISSR分子标记技术对144份木棉(Bombax ceiba)种质资源遗传多样性进行分析。结果表明: 木棉种质资源具有较高的遗传多样性,采用筛选的26个ISSR引物共扩增出179个位点,多态性位点161个,多态性位点百分率为899%,有效等位基因数为16,Nei基因多样性指数为0350 5, Shannon信息多样性指数为0523 3,相似性系数为0238 6~0910 6。UPGMA聚类分析得出,木棉种质之间的亲缘关系与来源没有明显的相关性,对同一产地来说,绝大部分种质聚在一起,亲缘关系较近,同时不同产地之间多数木棉种质亲缘关系也较近。  相似文献   

2.
利用SRAP分子标记建立广东省4个种群153个单株的广宁红花油茶种质资源遗传多样性评价体系,从594对引物组合中最终选出13对引物,结果表明:13对引物组合共扩增出206条带,平均每对引物组合获得15.85条,多态性条带为187条,多态性条带比率(PPB)为90.78%。种群Nei's基因多样度(h)、Shannon多样性指数(I)、多态性位点百分比(PPL)变化范围分别为0.217 9~0.356 3,0.321 7~0.524 8及58.25%~92.72%,平均值分别为0.307 8,0.456 3及83.62%,表明广宁红花油茶具有丰富的遗传多样性。聚类分析表明,当阈值为0.93时,可将广宁红花油茶4个种群分为2大类,广东清远单独成为一类,第二类包括广东广宁县,广东增城,广东云浮。广东云浮与广东增城遗传距离为0.019 3,遗传距离最小,说明二者的亲缘关系最近。AMOVA分子变异方差分析显示,在广宁红花油茶总的遗传变异中,种群内占95%,而种群间仅占5%。  相似文献   

3.
利用RAPD技术对3个不同盐度梯度下入侵杂草一年蓬的遗传多样性和遗传分化进行了研究。结果表明,12个随机引物在90株个体中共检测到187个可重复位点,其中多态位点158个,总多态位点百分率为84.49%,3个种群平均多态位点百分率为70.77%。采用Shannon信息指数计算的3个种群总的遗传多样性为0.4522,平均为0.4027;采用Nei指数计算的3个种群总的基因多样性为0.3042,平均为0.2746。3个种群的多态位点百分率、Shannon信息指数、Nei指数大小顺序均为P2>P1>P3。AMOVA分子变异显示,88.54%变异来源于种群内,11.46%变异来源于种群间。一年蓬高的遗传多样性与低的遗传分化与其生物学特性有关,是其广泛入侵的重要原因。  相似文献   

4.
地涌金莲野生与栽培种群遗传多样性RAPD分析   总被引:5,自引:4,他引:5       下载免费PDF全文
利用RAPD分子标记技术对采自滇川两省的12个地涌金莲野生和栽培种群进行遗传多样性分析.选择10条随机引物在12个种群中共扩增出88条带,其中多态性带85条,整个种的多态性位点百分比PPB为96.59%,遗传多样性指数H为0.289 0以及Shannon信息指数I为0.441 6.种群间的遗传分化系数Gst为0.568 2,即43.18%的遗传变异来自于种群内,56.82%的遗传变异来自于种群间,种群间的遗传分化水平略高于种群内.种群间遗传一致度变化范围为在0.66~0.95之间.聚类结果显示:野生种群之间遗传距离较近,与地理分布基本相一致;栽培种群遗传距离较远,与地理分布不一致.  相似文献   

5.
采用ISSR标记方法,对广西火桐Erythropsis kwangsiensis 10个自然种群和1个迁地保护种群的遗传多样性和遗传结构进行了分析和比较。结果表明:用10个引物从广西火桐总DNA中共扩增出60条带,其中多态性条带51条。自然种群中以维新种群的遗传多样性最高,而三叠岭瀑布种群最低。自然种群的总遗传变异Ht为0.281 5,种群内遗传变异HS为0.076 4,种群间遗传变异为0.205 1,基因流为0.183 2。迁地保护种群的HEt和HES均为0.118 8。自然种群间存在一定程度的遗传分化(Gst=0.731 9),种群间变异占主导地位。合并后的自然种群的多态性条带百分率(RPPB)、Nei’s多样性指数(H)和Shannon信息指数(I)均高于迁地保护种群,分别为85.00%和31.67%、0.284 1和0.118 8、0.428 5和0.175 7。研究结果表明:广西火桐迁地保护种群的遗传多样性较低,未能涵盖整个种群。建议从多个自然种群中收集种子,尽可能多的采集样本,分区育苗种植,以增加遗传多样性水平。  相似文献   

6.
利用ISSR分子标记对钩栗Castanopsis tibetana Hance 9个野生居群进行了遗传多样性分析。利用100条引物分别对111份钩栗基因组DNA进行PCR扩增,共扩增出158条清晰条带,其中多态性条带141条,多态性条带百分率(P)平均为89.01%。钩栗9个居群的Nei’s基因多样性指数、Shannon’s信息指数分别为0.332 3、0.492 0;总种群基因多样度(Ht)、各种群基因多样度分别为(Hs)0.410 8、0.334 6,表明钩栗的遗传多样性较高。9居群的基因分化系数Gst为0.185 5,占总遗传多样性的81.45%。分子方差分析表明,80.21%的遗传差异存在于群体内,19.79%的遗传差异存在于群体间。基因流为2.196 0。用NTSYS软件计算出9居群111材料的DICE相似系数在0.811 6~0.921 8之间,遗传亲缘关系较近。各居群间的遗传距离差异较大;其中,邵武与建瓯居群的遗传距离最近,仅为0.081 5;浏阳和周宁居群的遗传距离最远,为0.198 4。聚类分析结果表明,采自福建的邵武、建瓯、建阳、屏南和周宁居群聚在一起;恩施和桑植居群聚在一起;永顺和浏阳居群聚为一起,种群遗传变异分布模式基本上与其地理生态格局一致。研究结果表明:供试的钩栗具有较高的遗传多样性,存在着较为频繁的基因交流;基于ISSR标记分析能较准确地揭示出钩栗种间的遗传多样性。  相似文献   

7.
本文应用6条ISSR引物对石蒜和忽地笑11个种群共279个样本进行试验,欲从分子水平上研究其遗传差异,并对其遗传多样性和遗传结构等方面进行研究。6条引物共扩增出62个条带,其中多样性条带为60条,多态性可达96.8%。其中有5条引物可以扩增出鉴别石蒜和忽地笑的特异性扩增条带,共计11条,其中4条为石蒜种群特有,7条为忽地笑种群特有,从而将二者鉴别出来。另外石蒜和忽地笑种群多态位点百分率(PPB)分别为95.2%和58.1%,Nei’s基因多样性(H)分别为0.297和0.157,Shannon多样性指数(I)分别为0.454和0.248。石蒜和忽地笑种群的基因分化系数Gst分别为0.374和0.457,说明其天然种群的大部分变异(62.6%和54.3%)存在于种群内。石蒜和忽地笑种群的基因流Nm分别为0.836和0.593,比较小。UPGMA聚类结果显示,8个石蒜种群聚为一类,然后与3个忽地笑种群最后聚在一起。  相似文献   

8.
采用ISSR分子标记技术,对我国濒危植物福建柏的7个种群进行遗传多样性分析。结果显示:17个引物共扩增出202个位点,多态性位点167个,占总位点的82.67%;引物UBC849可以将24份福建柏样本完全鉴别出来;7个福建柏种群的多态位点百分率在17.82%~54.95%之间;群体总观测等位基因数Na为1.821 8,有效等位基因数Ne为1.431 3,Nei指数为0.258 2,Shannon指数为0.394 0;种群内平均Na指数为1.372 0,平均Ne指数为1.289 2,平均Nei指数为0.160 0,平均Shannon指数为0.203 5;基因分化系数Gst为32.41%,种群间基因流Nm为0.878 0;7个种群遗传相似度在0.668 3~0.806 9之间,遗传距离在0.214 5~0.404 3之间;利用UPGMA法进行聚类,将泉州市、福州市和龙岩市种群分为第一类,将南平市、三明市和漳州市种群分为第二类,将宁德市种群分为第三类。  相似文献   

9.
采用SRAP分子标记技术,对采自我国云南、广东、广西、江西、福建、湖南、贵州7个省以及越南安沛省的20个白花树天然群体共269个个体的遗传多样性和遗传结构进行研究。8对引物共获得88个条带,多态性条带81个。白花树在物种水平上的多态条带百分率(PPB)为91.0%,Shannon表型多样性指数(Ho)为0.4536;在群体水平上PPB为49.49%,Ho为0.2841,表现出高的遗传多样性。AMOVA分析显示,30.40%的变异存在于白花树群体间,69.60%的变异存在于群体内;群体内与群体间的遗传分化均很明显。Mantel检测表明群体间的遗传距离与地理距离存在显著的相关性。  相似文献   

10.
珙桐天然种群遗传多样性的ISSR标记分析   总被引:1,自引:1,他引:0  
利用ISSR分子标记分析来自11个天然珙桐种群的遗传多样性。从100条引物中筛选出5条引物能扩增出稳定、清晰且具多态性的条带,共扩增出77个条带。其中74个为多态,多态条带百分率(PPB)为96.10%;各种群PPB值为37.66%~63.64%,平均为54.07%。种内Shannon多样性指数(HSP)为0.4849,种群内Shannon多样性指数(HPOP)为0.1886~0.3274,平均为0.2774。这表明珙桐在物种和种群水平上均维持较高的遗传多样性。分子方差分析显示,种群间与种群内遗传变异分别占总遗传变异的46.22%,53.78%,种群间呈高度遗传分化。种群间遗传距离与对应的地理距离呈显著正相关(r=0.546,P<0.01)。UPGMA法聚类分析将11个珙桐种群分为3组。研究结果为珙桐遗传资源保护策略制定提供有价值的种群遗传学信息。  相似文献   

11.
不同榉树种源遗传多样性的ISSR分析   总被引:7,自引:4,他引:7  
应用ISSR(Inter S imp le Sequence Repeat)分子标记技术对云南邱北、易门、龙庆、双柏和浙江平湖5个种源(每种源19个样本)的榉树进行了遗传多样性的研究。由其18条ISSR引物扩增得到216个清晰的条带,其中多态性条带215个,多态性条带百分率(PPB)为99.54%。POPGENE软件分析结果表明,邱北种群的遗传多样性水平最高(PPB=88.43%,HE=0.260 5,HO=0.401 4),其次是易门种群,龙庆、双柏、平湖3个种群的遗传多样性水平相差较小。Ne i’s遗传多样性的分析表明,5个榉树种源在其总的遗传变异中有80.28%的存在于群体内,群体间的遗传变异仅占总变异的19.72%。由UPGMA聚类分析可知,易门和龙庆种群的亲缘关系最近,先聚合在一起,然后依次与邱北、双柏聚类,最后与亲缘关系最远的平湖种群聚合。其研究结果对榉树资源的遗传多样性保护具有指导作用。  相似文献   

12.
云南河谷构树的遗传多样性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
以云南省境内金沙江、元江、红河和怒江流域自然分布的构树为试材,采用AFLP分子标记技术对90份构树种质资源进行了遗传多样性分析研究.结果表明:筛选出的7对引物组合共扩增获得786条清晰可辩的条带,其中,多态性带632条,多态性条带百分率达80.4%,平均每对引物组合检测出90.3个多态位点.分布于4条水系流域的构树居群间,金沙江流域构树居群的遗传多样性水平最高,Nei's基因多样性指数为0.145 5,而元江流域构树居群的遗传多样性水平最低,Nei's基因多样性指数为0.1129.4个构树居群间的遗传分化系数为0.038 6,表明构树的遗传变异主要存在于居群内不同个体之间.在遗传距离为0.003时,4个构树居群可分为2组,第1组由金沙江流域的构树居群构成,第2组包含分布于红河、怒江和元江流域的3个构树居群.  相似文献   

13.
中国鹅掌楸遗传多样性研究   总被引:7,自引:1,他引:7  
刘丹  顾万春  杨传平 《林业科学》2006,42(2):116-119
鹅掌楸属(Liriodendron)为古老残遗双种属植物,该属植物在第三纪曾广布于北半球.由于第四纪冰川的压力,现存于中国的鹅掌楸(L.chinense)处于濒危状态,急需保护.中国鹅掌楸星散分布于长江流域以南海拔450~1 800 m的阔叶林中(方炎明,1994;郝明日等,1995),是优质速生的工业用材树种和园林绿化树种,是我国二级重点保护的濒危树种.  相似文献   

14.
The molecular variation and genetic relationships among five populations of the fall webworm (Hyphantria cunea Drury) in China were assessed using microsatellite technology. Ten microsatellite primers, producing polymorphic bands, were used across 300 samples. The percentage of polymorphic loci (PPB) was 98.36%; the percentage of polymorphic loci in five populations ranged from high to low in the following order: Cangzhou population, Yantai population, Qinhuangdao population, Dandong population, and Shijiazhuang population. The results showed that 34.38% of the total genetic variation of the fall webworm (GST) occurs among populations, while most variation (65.62%) exists within populations. Nei’s genetic distances ranged from 0.1386 to 0.3224. Using the unweighted pair group method with arithmetic mean (UPGMA), Nei’s genetic distances were analyzed by a clustering technique and the dendrogram shows that population differentiation is closely related to the time and geographic origin of the invasion. The major factors impacting genetic diversity of fall webworm populations are longitude, the plain area ratio, annual precipitation, latitude and time of invasion. The formation of genetic structure is correlated with characteristics of the life history and invasion ecology of the species.  相似文献   

15.
大花黄牡丹遗传多样性的SRAP分析   总被引:2,自引:0,他引:2  
应用SRAP标记对西藏特有植物大花黄牡丹的遗传多样性进行研究。用16对引物从5个自然居群79个单株中共检测到396个有效位点,其中多态性位点357个。在物种水平上,多态位点百分率(Ppl)为90.15%,Shannon表型多样性指数(Ηsp)平均为0.2521;居群水平上的Ppl为31.82%,Shannon表型多样性指数(Ho)为0.0694~0.3428,平均值(Ηpop)为0.1307。上述遗传参数表明,大花黄牡丹具有丰富的物种遗传多样性,5个居群中自然居群C的遗传多样性最高(Ppl=82.32%,Ho=0.3428)。据AMOVA分析结果,总的变异中有41.58%的变异存在于居群间,58.42%的变异存在于居群内,居群分化较显著(ΦST=0.4158,P<0.001),由POPGENE1.32得到的居群间遗传分化系数GST(0.4309)和Shannon表型多样性指数计算的居群间遗传多样性所占比例(0.4816)也表明了类似的遗传结构。Mantel检测表明地理距离和Nei’s遗传距离间相关不显著(P>0.05)。利用NTSYSPC(2.1)软件构建大花黄牡丹5个居群79个个体的UPGMA聚类图,遗传相似系数变幅在0.47~0.99,大多数居群内的个体表现出较为密切的亲缘关系(如居群B,D,E),但也有一些居群的个体未聚在一起(如居群C)。依据大花黄牡丹居群遗传变异特点,初步探讨其保护和利用策略。  相似文献   

16.
以云南省香格里拉县4个滇牡丹天然居群为研究对象,采用ISSR分子标记技术,对98份材料进行遗传多样性分析,用多态性高、稳定性强的10条引物进行扩增,共获得96条扩增产物,其中多态性条带有82条,多态性百分比为85.42%;滇牡丹总体基因多样性为0.3438, Shannon 指数为0.5009;通过Nei’ s和聚类分析,居群间的遗传分化系数为0.7973,居群间的遗传变异占总遗传变异的79.73%,而居群内的遗传变异只有20.27%,表明滇牡丹居群间的遗传分化较大,遗传变异主要存在于居群间。因此,滇牡丹虽然为分布区狭窄的特有种,但是与一些典型稀有和濒危的物种相比,遗传多样性并不低,滇牡丹的分布区域和种群数量呈现狭窄化、缩小化的趋势,主要原因是受人为过度采挖,生境受到破坏所致。  相似文献   

17.
Taxus chinensis and T. wallichiana in have been threatened in their distribution areas in recent decades because of their over-exploitation and reduction and destruction of native habitats. Determining the genetic diversity in populations of the two species will provide guidelines for their protection and preservation. Two hundred and fifteen trees from six populations of T. chinensis and150 sampled trees of T. wallichiana were sampled. Six microsatellite primer pairs selected from 16 primer pairs were used to investigate genetic variation at the population and species levels. Five yielded polymorphic alleles, and among the 13 putative alleles amplified, 11 were polymorphic(accounting for 76.33 %).Shannon's information index(I) and percentage of polymorphic bands(PPB)(I = 0.202 and PPB = 67.22 % for T. chinensis; I = 0.217 and PPB = 65.03 % for T. wallichiana). Both species had low levels of genetic diversity(mean H_o= 0.107, H_e= 0.121 for T. chinensis; H_o= 0.095, H_e= 0.109 for T. wallichiana). Genetic differentiation among populations was higher(FST= 0.189) for T. chinensis and lower(0.156) for T.wallichiana, indicating limited gene flow(Nm) among populations for T. chinensis(0.68) and T. wallichiana(0.65).Variation among individuals of T. chinensis was 63.59 and73.12 % for T. wallichiana. Thus, the threatened status of the two conifers is related to a lack of genetic diversity. All populations are isolated in small forest remnants. An ex situ conservation site should be established with a new population for these species that comprises all the genetic groups for the best chance to improve their fitness under environmental stresses.  相似文献   

18.
Random amplified polymorphic DNA (RAPD) markers were used to analyze genetic variation of Podocarpus imbricatus in Hainan Island and Mainland of China. Two populations of Dacrydium pierrei were used as comparison materials. Both Podocarpus imbricatus and Dacrydium pierrei showed a low level of genetic diversity. However, Podocarpus imbricatus showed higher genetic diversity and higher population differentiation than Dacrydium pierrei. The geographic range may affect the geneticdiversity of Podocarpus imbricatus and Dacrydium pierrei signific antly. The UPGMA cluster tree showed that populations of Podocarpus imbricatus in Hainan Island and Guangxi Zhuang Autonomous Region were closer than those in Yunnan Province,indicating possible gene flow between Hainan Island and Guangxi Zhuang Autonomous Region. The young geological history of Hainan Island and the three times of unification and separation between Hainan Island and the Mainland may give the two species more possibilities of gene flow.  相似文献   

19.
The Burmese python(Python bivittatus) has recently suffered large population declines in the wild in China due to illegal capture, overexploitation, deforestation and the loss of its natural habitat. Greater knowledge of the genetic diversity and structure of wild P. bivittatus populations is needed to help ensure its effective management.In this study, we investigated the genetic diversity and population genetic structure of wild P. bivittatus in China in detail. 109 P. bivittatus individuals from five distribution areas in Guangdong(GD), Guangxi(GX), Hainan(HN),Fujian(FJ) and Yunnan(YN) province of China were collected, and their genetic structure and diversity were analyzed. Eight highly polymorphic microsatellite loci were utilized to reveal high levels of genetic diversity in the P. bivittatus population. Genetic diversity was highest in GX, and lowest in GD. All geographic populations demonstrated a bottleneck effect indicating recent population decline. Fstand AMOVA analyses revealed that there was moderate genetic differentiation among the five populations, and that only 10.59 % of total genetic diversity occurred among populations. Fstvalues between populations were positively correlated with their geographical distances. Genetic structure analyses revealed that the HN,GX and GD populations, which were geographically closest, were assigned to a genetic cluster, while the YN and FJ populations constituted a single cluster,respectively.  相似文献   

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