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1.
采用线粒体细胞色素b基因(Cyt b)序列,分析了采自新疆克孜河3个群体(斯木哈纳SM、牙师YS、卡拉贝利KL)的塔里木裂腹鱼(Schizothorax biddulphi)41尾个体及1个斑重唇鱼(Diptychus maculates)群体(斯木哈纳)23尾个体的种群遗传多样性和遗传结构.结果显示,塔里木裂腹鱼检测到6个碱基变异位点,定义了4种单倍型,平均单倍型多样性指数及核苷酸多样性指数分别为0.525 4和0.001 16.分子变异分析(AMOVA)结果提示,塔里木裂腹鱼的遗传变异全部发生于群体内部;群体间Kimura-2-parameter遗传距离、分化指数(F<,st><0.085 25)和基因流(N<,m>>3.18)都显示3个群体没有种群分化,属于单一种群.斑重唇鱼检测出7个变异位点,定义了8个单倍型,平均单倍型多样性指数与核苷酸多样性指数分别为0.830 1和0.001 13.研究表明,克孜河的塔里木裂腹鱼和斑重唇鱼均处于很低的遗传多样性水平,物种维持力较弱.  相似文献   

2.
基于线粒体Cyt b基因的龙头鱼群体遗传结构分析   总被引:1,自引:0,他引:1  
在我国黄海、东海和南海海岸带上, 选取青岛、南通、舟山、三门、宁德、泉州和湛江共7个群体164尾龙头鱼(Harpadon nehereus)为研究对象, 通过PCR扩增共获得长度为1112 bp的线粒体DNA细胞色素b (Cyt b)基因序列, 共检测到32个变异位点, 其中单变异位点27个, 简约信息位点1个。164条序列定义了29个单倍型, 平均单倍型多样性(Hd)和核苷酸多样性(π)分别为0.3026±0.0479和0.000371±0.000379, 其中泉州群体的单倍型多样性和核苷酸多样性均最低。分析比较了不同龙头鱼群体间遗传变异情况, 发现群体间平均遗传距离为0.00035, 遗传分化指数FST值均小于0.05, 群体间没有发生明显的遗传分化。AMOVA分析结果显示龙头鱼群体遗传差异主要来源于群体内个体间的变异。中性检验的Tajima’s D和Fu’s Fs统计值均为负值且显著偏离中性, 核苷酸不配对分布图呈现明显的单峰分布, 表明龙头鱼历史上经历了群体扩张事件, 参考已知海洋鱼类Cyt b基因2%每百万年的进化速率, 估算群体扩张发生的时间大约在0.08—0.32百万年前的第四纪更新世中晚期。  相似文献   

3.
为探讨周公河中齐口裂腹鱼(Schizothorax prenanti)的遗传多样性和遗传结构, 沿周公河连续设定6个采样点进行齐口裂腹鱼采集, 在进行基因组DNA提取后以线粒体控制区(D-loop)为分子标记进行种群遗传多样性和遗传结构的评估。结果从63尾齐口裂腹鱼中共检测到32个单倍型, 核苷酸多样性(π)为0.013, 单倍型多样性(h)为0.966。遗传多样性最高的为张家湾种群(PopF, π=0.018, h=1.000), 核苷酸多样性最低的为罗坝种群(PopC, π=0.010, h=0.970), 单倍型多样性最低的为瓦屋山大坝下游种群(PopB, π=0.015, h=0.867)。种群间共享13个单倍型, 多数齐口裂腹鱼种群间的遗传分化水平中等或较低, 仅Pop C和Pop F (Fst=0.195, P<0.01), 种群Pop A 和PopE (Fst=0.158, P<0.01)分化程度较高, 显示各种群间较密切的遗传关系。周公河不同河段齐口裂腹鱼群体的遗传多样性处于较高的水平, 各种群间具有较近的遗传关系。  相似文献   

4.
四川裂腹鱼乌江种群mtDNA控制区序列的遗传多样性分析   总被引:1,自引:0,他引:1  
采用PCR扩增和直接测序法分析了四川裂腹鱼乌江种群32个个体mtDNA控制区的序列差异和遗传多样性.在该种群mtDNA控制区长度为464 bp的同源序列中,共计有9个变异位点,占总位点数的1.94%.32个个体共定义了9种单倍型,单倍型间平均遗传距离(P)为0.0060,单倍型多样度(Hd)为0.768.核苷酸多样性(π)为0.00324,平均核苷酸差异数(K)为1.500.用单倍型间遗传距离构建的NJ分子系统树聚为两个分支.结果提示四川裂腹鱼乌江种群遗传多样性匮乏,保护四川裂腹鱼乌江种群刻不容缓.  相似文献   

5.
应用随机扩增多态性DNA(RAPD)技术及细胞色素b(Cytb)基因序列,分析了长江口及其南部邻近地区大弹涂鱼(Boleophthalmus pecinirostris)群体遗传结构及种群历史,结果显示这一区域大弹涂鱼群体的遗传多样性水平很高。(1)RAPD分析结果:从100个10碱基随机引物中筛选出30个多态性引物,对长江口九段沙湿地、浙江舟山定海、福建霞浦群体各20个体进行RAPD分析,3个群体分别获得236、270、274条带,共301个有效位点。3群体多态位点比例(P)、Nei基因多样性指数(H)、Shannon多样性指数(I)分别在93.02%—96.35%、0.3890—0.4219、0.5618—0.6044。分子方差分析(AMOVA)表明,大弹涂鱼群体间存在显著的遗传分化(Fst= 0.03004-0.03254,P<0.05),但仅3.2%的遗传变异来自群体间。(2)Cytb基因序列分析结果:从采自九段沙、定海、霞浦及浙江慈溪的42尾大弹涂鱼样本中,共获得33个Cytb基因单倍型(序列长1 141 bp)。4群体的平均单倍型多样性(h)、核甘酸多样性(π)分别为0.9814、0.0048。4群体间的遗传分化指数Fst为0.00043—0.07814,仅1.93%的变异来自群体间(AMOVA分析),而基因交流值却达14.50—30.79,群体间K2-P遗传距离为0.0040—0.0056,从而显示大弹涂鱼群体间没有发生明显的地理分化。以Cyt b基因序列构建的NJ树揭示4个群体的个体组成2个谱系,但这2个谱系与地理分布并不相关。中性检验、错配分析和网络亲缘关系分析皆表明大弹涂鱼群体有过种群扩张,扩张时间约在更新世末期的0.057—0.023百万年前。  相似文献   

6.
银[鱼句](Squalidus argentatus)是长江常见小型鱼类,分布广泛于干支流,资源量较大。本研究采用线粒体DNA(mtDNA)细胞色素b基因序列对长江中上游干流江津、荆州、监利、洪湖、黄石江段及支流赤水河、湘江等7个江段共217尾银[鱼句]样品的遗传结构和遗传多样性进行了分析。结果显示,银[鱼句]群体Cyt b基因序列分别检出了81个变异位点和97个单倍型,平均单倍型多样性(Hd)和核苷酸多样性(Pi)分别为0.966和0.008 6。分子方差分析(AMOVA)显示,长江中上游银[鱼句]群体存在显著遗传分化。群体间两两比较分析发现,赤水河群体与其他群体基因交流程度低,遗传分化显著,其他群体间没有显著遗传分化。中性检验结果不支持银 历史上发生过群体扩张。  相似文献   

7.
我国沿海缢蛏群体遗传结构的mtDNA-COⅠ分析   总被引:2,自引:0,他引:2  
采集了我国沿海共计9个缢蛏(Sinonovacula constricta)地理群体的197个样本,分别是北部组群的3个群体:辽宁省庄河群体(ZH),天津市汉沽群体(HG),山东省海阳群体(HY);中部组群的3个群体:江苏省盐城群体(YC),上海市崇明县东滩群体(DT)和堡镇群体(BZ);以及南部组群的3个群体:浙江省宁波群体(NB),浙江省台州群体(TZ)以及福建省宁德群体(ND)。利用线粒体COⅠ标记分析了9个群体的遗传多样性和遗传分化。结果表明,在共计197个个体中检测到125个单倍型和96个变异位点,核苷酸多样性指数位于2.1764~7.4970之间,其中中部组群的群体遗传多样性指数最高。AMOVA分析结果显示,组间遗传变异量占总变异的80.27%,18.74%来自于群体内,只有0.99%来自于组内群体间。群体间遗传分化系数位于0.0219~0.8706之间,不同群体间具有一定的遗传分化,尤其是中部群体与其他群体间遗传分化值达到了0.8以上,为极高度分化。遗传距离和聚类结果显示,北部3群体和南部3群体首先聚在一起,之后与中部3群体聚类。  相似文献   

8.
陈涛  王小蓉  罗华  王春涛  张家志  罗明敏 《遗传》2012,(11):1491-1499
中国樱桃(Cerasus pseudocerasus Lindl.)是我国古老的具有较高经济价值的栽培果树之一,个别性状突出的野生中国樱桃是对现有栽培品种进行遗传改良的重要资源。四川野生中国樱桃资源丰富,为了明确该地区野生中国樱桃群体的遗传多样性和遗传结构,文章对9个野生中国樱桃群体(其中7个分布四川,2个来自陕西和贵州)共145个个体的叶绿体基因间隔区trnQ-rps16序列进行了测定和分析。结果表明:9个群体145个个体的trnQ-rps16序列比对后共检测到13个多态位点,占位点总数的1.87%,其中3处碱基替换,10处插入/缺失。9个群体总的遗传多样性水平较低(h=0.562,π=0.00184),相对于其他地区的2个群体(h=0.733;π=0.00243),四川的7个群体表现出更低的遗传多样性水平(h=0.544;π=0.00203),且群体间的遗传多样性水平存在较大差异(h=0-0.708;π=0-0.00298),其中北川桃龙群体最高(h=0.708,π=0.00298),而峨眉群体最低(h=0.000,π=0.000)。群体内低的遗传多样性可能与群体的边缘性所产生的奠基者效应以及近期群体收缩和随机遗传漂变造成的瓶颈效应导致群体内遗传多样性丢失有关。此外,9个群体遗传分化水平较低,平均FST为0.21573。分析认为主要是由于野生中国樱桃较强的种子传播能力增加了群体间的基因流动而导致遗传分化不明显,也可能与野生中国樱桃较长的世代周期有关。针对上述研究结果,建议在资源保护中采取减少群体数目而加大群体内的个体数量的保护策略。  相似文献   

9.
青鱼野生与养殖群体遗传变异的微卫星分析   总被引:3,自引:0,他引:3  
研究利用自主开发的12个微卫星标记, 对来自于长江水系4个野生群体(湖北石首、湖南湘江、江苏邗江、浙江嘉兴)和1个养殖群体(江苏吴江)青鱼(Mylopharyngodon piceus)进行遗传多样性和遗传结构分析。遗传多样性分析结果显示这12个位点多态信息含量(PIC)介于0.660—0.923, 表明这12个位点均具有高度多态性(PIC>0.5)。5个群体的平均等位基因数(Na)介于7.917—11.667, 平均有效等位基因数(Ne)介于4.837—6.035; 平均观测杂合度介于0.713—0.861; 平均期望杂合度介于0.749—0.819; 平均多态信息含量介于0.711—0.788, 表明这5个群体均具有较高的遗传多样性。遗传距离分析结果表明4个野生群体之间遗传距离较近, 养殖群体与这4个野生群体遗传距离均较远。UPGMA系统进化树显示, 湘江群体和石首群体首先聚为一支, 然后与邗江群体和嘉兴群体聚为一支, 最后与吴江养殖群体聚为一支。这12个微卫星位点具有较为丰富的遗传多样性特征, 可以用于青鱼不同群体的种质资源的评估和遗传多样性的分析。  相似文献   

10.
以线粒体Cyt b基因为分子标记, 对雅鲁藏布江下游墨脱江段及察隅河的墨脱裂腹鱼进行遗传多样性及种群历史动态分析。结果显示, 167尾墨脱裂腹鱼样本共检测到21个单倍型, 呈现较高的单倍型多样性(h=0.768)和较低的核苷酸多样性(π=0.00167)。基于单倍型构建的分子系统发育树及Network网络关系图表明, 所有来自墨脱江段及察隅河的单倍型不能按照地理分布各自聚类, 而是相互混杂聚在一起。不同地理种群间的遗传分化指数(FST)为–0.014—0.771, 其中金珠藏布(JZZB)与其他种群呈现出高度分化(FST: 0.372—0.771)。分子方差分析(AMOVA)显示当JZZB种群为一组, 剩余6个种群为一组时, 组间遗传差异最大, 表明JZZB种群与其他种群具有显著分化。相反, 虽然察隅河与墨脱江段的地理距离较远, 但是察隅河与墨脱江段其他种群之间(除了JZZB)的FST为0.093—0.169, 仅显示中等分化水平, 表明察隅河种群与雅鲁藏布江种群尚有少量的基因交流。中性检验、错配分析及BSP (Bayesian skyline plot)分析显示, 雅鲁藏布江下游墨脱江段及察隅河的墨脱裂腹鱼种群在末次间冰期(0—0.137 Ma)发生过种群扩张现象。  相似文献   

11.
我国草鱼野生群体D-Loop序列遗传变异分析   总被引:3,自引:0,他引:3  
利用线粒体DNA的D-Loop区序列, 对来自长江水系(邗江、吴江、九江、石首、木洞和万州)、珠江水系(肇庆)和黑龙江水系(嫩江)的8个草鱼野生群体开展了遗传变异分析。在424尾鱼中检测到34个变异位点, 34个单倍型, 单倍型多样性介于0.4740.708。群体间Kimura双参数遗传距离介于0.00200.0049。长江下游3个群体间遗传距离最近, 遗传分化不显著(P0.05); 肇庆群体与长江上游3个群体遗传距离较近, 与九江群体遗传分化不显著(P0.05); 嫩江群体与长江上游2个群体遗传距离较近, 与万州群体遗传分化不显著(P0.05)。遗传距离与地理距离存在极显著正相关(R=0.61, P0.01)。分子方差分析显示, 不同流域间遗传变异占总变异26.24%, 差异极显著(P0.01)。34个单倍型分为2个分支, 分化极显著(FST=0.644, P0.01), 推测分化时间为第四纪更新世纪晚期。    相似文献   

12.
Misgurnus anguillicaudatus, an important aquatic species, is mainly distributed in the Yangtze River basin. To reveal the population genetic structure of M. anguillicaudatus distributed in the Yangtze River basin, genotyping by sequencing (GBS) technique was employed to detect the genome wide genetic variations of M. anguillicaudatus. A total of 30.03 Gb raw data were yielded from 70 samples collected from 15 geographic sites located in the Yangtze River basin. Subsequently, 2092 high quality SNPs were genotyped across these samples and used for a series of genetic analysis. The results of genetic analysis showed that high levels of genetic diversity were observed and the populations from upper reaches (UR) were significantly differentiated from the middle and lower reaches (MLR) of Yangtze River basin. Meanwhile, no significant isolation by distance was detected among the populations. Ecological factors (e.g. complicated topography and climatic environment) and anthropogenic factors (e.g. aquaculture and agriculture cultivation) might account for the genetic disconnectivity between UR and MLR populations. This study provided valuable genetic data for the future breeding program and also for the conversation and scientific utilization of those abundant genetic resources stored in the Yangtze River basin.  相似文献   

13.
The genetic diversity and genetic structure of Potamogeton maackianus A. Benn. in seven lakes of the middle reaches of the Yangtze River were studied using random amplified polymorphic DNA (RAPD). The gene flow and genetic relationships between populations were analyzed in combination with the geographic distribution and the river system of the lakes. A total of 112 bands were amplified and 59 bands (52.7%) were polymorphic. Each of the 86 individuals investigated exhibited a unique genotype. The Shannon index was used to measure genetic diversity, and the total genetic diversity was 0.414 and the mean genetic diversity of populations was 0.148. P. maackianus showed a relatively high level of genetic diversity. Analyses of molecular variance (AMOVA) revealed that 63.8% of the total genetic diversity existed among populations and 36.2% within them, which was consistent with the genetic structure computed by the Shannon index: among-population variation and within population variation accounted for 64.4 and 35.7%, respectively. The gene flow among populations was very limited, and genetic isolation among populations occurred even though they were connected through the Yangtze River. Cluster analysis divided the seven populations into two groups, and the genetic relationships among the populations had no obvious association with their geographic distribution, or the historical relations with the river system of the lakes where they occurred. Mantel tests revealed that distance was an important factor affecting the genetic structure in populations. The development history of P. maackianus populations in Honghu Lake had an obvious effect on its genetic structure.  相似文献   

14.
为探究新疆塔里木河叶尔羌高原鳅(Triplophysa yarkandensis)遗传多样性现状,研究基于线粒体Cytb和D-loop序列对塔里木河两条支流(车尔臣河和渭干河)的8个地理群体进行了遗传学多样性和遗传结构分析.结果显示,基于Cytb和D-loop序列分别获得了41和51个单倍型,单倍型多样性指数/核苷酸多...  相似文献   

15.
长江水系钱草鱼遗传结构及变异性的RAPD研究   总被引:44,自引:10,他引:34  
采用随机扩增多态性DNA(RAPD)技术对长江中游的湖北嘉鱼与江西瑞昌两个地理群体和中游的汉江和湘江两大水系的鲢和草鱼的群体进行了遗传学研究。发现长江水系链的遗传变异要高于草鱼,与现今生物量成反比的反常现象。鲢遗传多样性从大到小的分布是嘉鱼→湘江→瑞昌→汉江。草鱼遗传多样性从大到小的分布是瑞昌→汉江→湘江→嘉鱼,鲢和草鱼的遗传多样性地理分布并不一致。遗传分化指数Gst分别为12.3%和17.5%,表明鲢和草鱼的四个地理群体的遗传分化度较低,可能与地理较近和基因交流频繁有关。  相似文献   

16.
研究基于线粒体DNA细胞色素b (mtDNA Cyt b)基因序列, 对2013—2017年间采自我国长江上游贵州省赤水市和重庆市万州区共161尾岩原鲤(Procypris rabaudi)个体进行了遗传多样性分析。结果表明, 在所有个体序列中, A、T、C、G碱基的平均含量分别为30.2%、27.9%、28.2%和13.7%, (A+T)含量(58.1%)明显大于(G+C)含量(41.9%), 表现出较强的反G偏倚性。161条序列检测到18个变异位点, 定义了15种单倍型, 整体单倍型多样性指数(Hd)、核苷酸多样性指数(Pi)分别为0.590、0.00132; 岩原鲤赤水群体遗传多样性水平低于万州群体; 万州群体的单倍型多样性和核苷酸多样性均呈现逐年降低的趋势, 但是赤水群体的单倍型多样性和核苷酸多样性呈现逐年增加的趋势。基于最大似然法构建的系统发育树和单倍型网络图结果一致, 万州和赤水群体并未形成明显的地理分布格局。Mega 6.0软件计算2个群体之间的遗传距离为0.001。Fst值统计表明, 2个地理群体间Fst值为0.01749 (P>0.05), 群体间没有出现遗传分化现象。两群体间基因交流频繁, 基因流Nm=24.71。分子方差分析(Analysis of Molecular Variance, AMOVA)显示: 98.25%的遗传变异是由群体内产生的。中性检验结果表明万州岩原鲤群体历史上曾发生过种群扩张事件, 时间约为0.15百万年前。岩原鲤群体整体上遗传多样性偏低, 急需提出合理的管理措施, 以加强长江流域岩原鲤物种的资源保护。  相似文献   

17.
Mitochondrial 16S rDNA and CO I gene were used as molecular markers for the analysis of the genetic diversity and differentiation of Daphnia galeata populations in nine water bodies in the middle and lower reaches of the Yangtze River. In the combined 16S rDNA and CO I gene sequences, 54 variable sites and 44 haplotypes were observed among 219 individuals belonging to nine D. galeata populations. Average haplotype diversity and nucleotide diversity were, respectively, 0.72% and 0.56%. The F‐statistics (FST) value of the D. galeata populations was 0.149. According to the results of the neutral test, D. galeata in the middle and lower reaches of the Yangtze River had experienced a bottleneck effect in the history. Molecular variance analysis indicated that the genetic differentiation of the D. galeata populations mainly occurred within populations (85.09%). Greater genetic differentiations of D. galeata among individuals within populations appeared in the populations from the Huaihe River basin, whereas smaller genetic differentiations occurred in the populations from the middle reaches of the Yangtze River. Strong gene flows were all observed between Group I (four populations from the middle reaches of the Yangtze River) and Group ΙΙ (three populations from the middle and lower reaches of the Yangtze River), and Group ΙΙΙ (two populations from the Huaihe River basin). The effective migration rates (M) were 851.49 from Group I to Group ΙΙ and 685.96 from Group I to Group ΙΙΙ, respectively. However, no significant relationship was observed between the genetic differentiation and geographical distance of the nine populations (r = .137, p > .05). Results suggested that the genetic differentiation of D. galeata in the water bodies in the middle and lower reaches of the Yangtze River resulted mainly from geographical isolation.  相似文献   

18.
The elongate loach (Leptobotia elongata) is a typical migratory fish that was formerly found in abundance throughout the upper and middle reaches of the Yangtze River but is now classified as a highly threatened fish on the China Species Red List. Here, a comparative study of microsatellite loci was performed to evaluate the genetic diversity and analyze the population structure in seven locations in the upper reaches of the Yangtze River, China. The results showed that genetic diversity of L. elongata is generally still at a high level. Populations from Xinshi, Panzhihua, Hechuan and Chishui, were found to have lower levels of genetic diversity than those that lived in Leshan, Yibin and Jiangjin. The IAM model indicated that populations from Panzhihua, Xinshi and Hechuan have undergone recent bottlenecks. AMOVA analysis revealed a small amount of differentiation among populations (3.6%), but most of the total variation occurred within populations (96.4%). Pairwise comparisons of populations confirmed a low population differentiation. STRUCTURE analysis showed no obvious genetic structure among populations, indicating that L. elongata living in the main stem of the river and its tributaries should be considered a single management unit.  相似文献   

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