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1.
为研究青海湖不同支流中青海湖裸鲤(Gymnocypris przewalskii)群体间的遗传差异,我们对采自于不同支流中的群体进行了扩增片段长度多态性分析(AFLP)。应用10对多态性引物在6个青海湖裸鲤群体中共扩增位点348个,其中多态性位点184个,多态性条带占总扩增条带的比例为52.9%;筛选得到79个特异位点,构建了AFLP指纹图谱,根据谱带特征可以将不同支流中的青海湖裸鲤准确区分。遗传聚类分析对比结果表明:当遗传相似系数为0.87时,将六条河流的裸鲤归为为四支,沙柳河、甘子河、黑马河各归一支,哈尔盖河、泉吉河、布哈河为同一支。研究结果为青海湖裸鲤遗传多样性检测和亲本选育提供了技术参数,对青海湖裸鲤资源保护和人工增殖放流工作中野生亲鱼的选择策略具有指导意义。  相似文献   

2.
青海湖裸鲤是青海湖唯一的经济鱼类,由于湖区生态环境的恶化,使得该鱼种群数量越来越稀少.2004年中国环境发展国际合作委员会在<中国物种红色名录>中,将其列为濒危物种.研究利用生物素-磁珠富集法获得10个具有多态的微卫星分子标记,检测6个野生裸鲤群体:布哈河群体、沙柳河群体、哈尔盖河群体、泉吉河群体、黑马河群体、淡水系群体的遗传多样性.结果表明:每个座位上的等位基因数为2~8个, 大小在161~486bp之间.有效等位基因数在1.00~5.45个, 平均多态信息含量分别为0.3642、0.4044、0.3830、0.4047、0.3869和0.3940, 无偏观测杂合度的平均值在0.4145~0.5105之间, 说明这几个群体属于中度多态, 遗传多样性水平较高.根据群体间的遗传距离和遗传相似系数发现,布哈河群体与淡水系群体之间的遗传距离最大(DA=0.1607),哈尔盖河群体与泉吉河群体之间的遗传距离最小(DA=0.0125).由UPGMA聚类图可知:哈尔盖河和泉吉河两个群体聚为一个分支,布哈河、沙流河、黑马河和淡水系4个群体聚为另一个分支.  相似文献   

3.
该研究比较观察青海湖裸鲤(Gymnocypris przewalskii)两亚种(青海湖裸鲤指名亚种(Gymnocypris przewalskii przewalskii)和青海湖裸鲤甘子河亚种(Gymnocypris przewalskii ganzihonensis))鳃的形态及显微结构。结果显示,指名亚种的第一鳃弓鳃耙数多、密集且较长,而甘子河亚种则耙数少、稀疏且短;两者的鳃丝间距及鳃小片间距无明显差异,指名亚种的鳃丝较长;指名亚种扁平上皮细胞形态以不规则椭圆形为主,鳃丝表面有黏液细胞,其上分布的氯细胞数量多于甘子河亚种,而甘子河亚种扁平上皮细胞的形态以六边形为主,鳃丝表皮未观察到黏液细胞。由此推测,青海湖裸鲤两亚种鳃形态的差异与其食性和栖息环境相适应。  相似文献   

4.
AFLP分析江西省4个斑点叉尾鮰养殖群体遗传多样性   总被引:1,自引:0,他引:1  
本文运用AFLP分子标记技术,对江西省4个斑点叉尾鮰(Ictalurus punctatus)养殖群体(GZ、XJ、PYA和PYB)进行遗传多样性分析。结果表明,在64对引物组合中,E3/M2、E4/M7、E3/M8和E5/M5引物从4个群体72个体中共扩增出179个位点,其中多态位点为109,占60.89%。其中,PYA、GZ、XJ和PYB群体的多态位点比例(P)分别为56.54%、56.47%、56.32%和56.14%。Shannon多样性指数(I)分别为0.2890、0.3003、0.2896和0.2852,平均杂合度(H)分别为0.1935、0.2027、0.1938和0.1898。4个群体间的遗传分化系数(Gst)为0.1314,说明群体间发生了一定程度的遗传分化,但分子方差分析(AMOVA)显示,群体的遗传变异90.98%来源于群体内的个体间,9.02%来源于群体间。聚类分析也表明,4个群体所产生的遗传分化主要也来源于群体内。本研究为斑点叉尾鮰种质资源的调查和保护提供参考,为斑点叉尾鮰优良品种的选育提供科学依据。  相似文献   

5.
6个地区青海湖裸鲤肌肉营养成分分析   总被引:4,自引:1,他引:3  
采用常规生化分析方法,测定青海湖6个不同地区的青海湖裸鲤(Gymnocypris przew alskii)肌肉主要营养成分,对其营养价值进行评价。结果表明,淡水青海湖裸鲤肌肉中脂肪含量显著大于(P<0.05)其他5个地区,蛋白含量显著大于(P<0.05)黑马河青海湖裸鲤肌肉的蛋白含量,6个地区青海湖裸鲤肌肉营养成分存在一定的地区差异。总体上,青海湖裸鲤肌肉(鲜样)中粗蛋白含量为17.26%~18.87%;粗脂肪含量为1.51%~3.37%;灰分含量为1.42%~1.61%;18种氨基酸总量15.48%~17.16%,其中除色氨酸外7种人体必需氨基酸总量6.38%~7.05%,4种鲜味氨基酸总量5.82%~6.49%。青海湖裸鲤肌肉中蛋白质含量较高,氨基酸种类齐全,必需氨基酸与鲜味氨基酸含量较高,尤其是淡水青海湖裸鲤品质更佳,淡水的生态环境可能更适合青海湖裸鲤的生长。  相似文献   

6.
三个地理群体赤眼鳟遗传多样性的RAPD分析   总被引:1,自引:0,他引:1  
利用RAPD技术对宿鸭湖、青龙湖和丹江口水库3个野生赤眼鳟群体的遗传多样性进行分析.9个RAPD引物共获得93个扩增位点,其中多态位点56个,多态位点比例为60.22%.3个群体的多态位点比例分别为53.01%、54.12%和57.95%,遗传距离分别为0.1548、0.1613和0.1764,Shannon信息指数分别为0.2249、0.2318和0.2437.群体间遗传距离以宿鸭湖和青龙湖群体最近(0.1257),青龙湖与丹江口水库群体最远(0.1416).结果表明3个赤眼鳟群体的遗传多样性均较丰富,但群体间地理遗传分化差异并不明显.  相似文献   

7.
利用ISSR技术对"全红"瓯江彩鲤(Cyprinus car pio var. color)4个世代群体的遗传结构及其分化进行了分析。筛选的15个ISSR引物从4个世代群体中分别扩增到120、118、101和110条扩增谱带,全部扩增片段长度在200—2500bp之间。根据扩增结果,利用POPGENE version 1.31进行分析,结果表明:4个群体的多态位点比例(P)为51.49%—67.80%,Shannon信息指数(Ho)为0.2176—0.2745之间,并随着世代的增加,选育群体的遗传多样性呈现下降趋势。有70%的遗传变异来自于群体内;结合遗传分化指数Gst、UPGMA聚类分析,证实"全红"瓯江彩鲤4个世代间存在一定程度的遗传分化,即任意两个群体间的遗传分化达到较大的水平(Gst均为0.1588—0.2766)。  相似文献   

8.
自然产卵场是维持物种延续最关键的栖息地,青海湖裸鲤(Gymnocypris przewalskii)的自然繁殖栖息地状况和生境特征尚缺乏详细的定量研究。以青海湖入湖河流泉吉河为例,在平水期采用现场调查和无人机遥测的方法对青海湖裸鲤的自然产卵场分布及生境状况进行调查,确定其产卵场生境特征参数,建立基于无人机遥测识别产卵场的方法并进行复核验证。结果表明:泉吉河河道形态可分为弯曲型、分汊型和顺直型等三种典型河型,青海湖裸鲤自然产卵场主要分布在弯曲型和分汊型河道中,分汊型河道几乎100%都有产卵场分布,弯曲型河道有70%为产卵场;产卵场河道平均长度(135.13±61.13) m,平均宽度(30.01±17.51) m,平均曲折度1.09±0.07;平均面积(4586.6±4201.61) m2;产卵场常位于缓水浅滩处,平均水深(0.19±0.10) m (范围:0.03-0.44m),平均流速(0.24±0.20) m/s (范围:0.01-0.81m/s),河床质为含有沙粒的卵石(粒径:163-256mm)底质。河道形态、沙洲分布、水深特征等特征参数可作为无人机遥测识别产卵场的判断条件,并实现验证成功。研究结果可为开展整个流域的青海湖裸鲤自然产卵场现状评估及保护对策制定提供技术支撑。  相似文献   

9.
长江中上游两个鲢群体遗传变异的微卫星分析   总被引:9,自引:0,他引:9  
王长忠  梁宏伟  邹桂伟  罗相忠  李忠  田华  呼光富 《遗传》2008,30(10):1341-1348
对长江中上游2个鲢群体使用39个微卫星标记进行了遗传多样性分析, 计算并统计了平均观测等位基因数、平均有效等位基因数、多态信息含量、遗传杂合度、Hardy-Weinberg平衡偏离指数、遗传相似系数、遗传距离等遗传参数。结果表明: 万州鲢和监利鲢群体所检测微卫星位点的平均观测等位基因数分别为6.128和4.974; 平均有效等位基因数分别为4.107和3.395; 多态位点百分率分别为100和94.87; 39个微卫星标记共有等位基因259个, 173个等位基因为两群体所共有; 多态微卫星位点的PIC在0.077~0.865之间变动,平均为0.617; 两群体所检测位点平均观测杂合度为0.834和0.775, 平均期望杂合度为0.713和0.623; 两个群体间的遗传相似系数为0.618, 群体间的遗传距离为0.482。结果显示长江中上游两个鲢群体间存在显著遗传分化, 应隶属于不同的种群。  相似文献   

10.
青海湖裸鲤mtDNA遗传多样性的初步研究   总被引:22,自引:4,他引:18  
赵凯  李军祥  张亚平  罗静  李太平  吴华  田海宁 《遗传》2001,23(5):445-448
本用Bcl、AvaⅠ,BamHⅠ,PstⅠ,KpnⅠ,PvuⅡ共6种限制性内切核酶,分析了15尾青海湖裸鲤mtDNA的限制片段长度多态性,共检测出20个酶切位点,发现BclⅠ,BamHⅠ和PvuⅡ三种酶切类型具有多态性。根据不同个体mtDNA的酶切类,青海湖裸鲤存在4种mtDNA单位型,计算mtDNA多态度π值为0.0043,初步认为青海湖裸鲤在线粒体DNA上存在较丰富的群体内变异。  相似文献   

11.
Amplified fragment length polymorphism (AFLP) was used to analyse the genetic structure of 45 individuals of Gymnocypris przewalskii (Kessler, 1876), an endangered and state‐protected rare fish species, from three areas [the Heima (HM), Buha (BH) and Shaliu rivers (SL), all draining into Qinghai Lake]. A total of 563 polymorphic loci were detected. The HM, BH and SL populations have 435, 433 and 391 loci, respectively ( Zhu and Wu, 1975 ), which account for 77.26%, 76.91% and 69.45% of the total number of polymorphic loci of each population, respectively. The Nei indices of genetic diversities (H) of the three populations were calculated to be 0.2869 (HM), 0.2884 (BH) and 0.2663 (SL), respectively. Their Shannon informative indices are 0.4244, 0.4251 and 0.3915, respectively. Research results show that the mean genetic distance between HM and BH is the smallest (0.0511), between BH and SL is the second shortest (0.0608), and between HM and SL is the largest (0.0713), with the mean genetic distance among the three populations being over 0.05. Data mentioned above indicate that the three populations have a certain genetic differentiation. The total genetic diversity (Ht = 0.3045) and the mean value of genetic diversity within the population (Hs = 0.2786) indicate that the variations have mainly come from within the population.  相似文献   

12.
微卫星DNA标记探讨镜鲤的种群结构与遗传变异   总被引:17,自引:2,他引:15  
全迎春  李大宇  曹鼎辰  孙效文  梁利群 《遗传》2006,28(12):1541-1548
采用30个微卫星分子标记, 对5个镜鲤群体的观测杂合度(Ho)、期望杂合度(He)、多态信息含量(PIC)和有效等位基因数(Ae)等进行了遗传检测, 根据基因频率计算遗传相似系数和Nei氏标准遗传距离, 以c2检验估计Hardy-Weinberg平衡, 以近交系数(FST)和基因流(Nm)分析群体的遗传分化。同时, 使用PHYLIP3.63软件绘制基于Nei氏标准遗传距离的UPGMA聚类图, 并进行bootstrap自举检验验证进化树的可靠性。在德国镜鲤选育系(Scattered Cyprinus carpio L.)和来自4个不同养殖场(松浦、东岗、奉城和辽中)的德国镜鲤群体中共检测到7 083个扩增片段, 长度在102 ~ 446 bp之间, 在群体内扩增出等位基因1~16个不等, 共计356个等位基因。结果表明: (1)5个群体检测的有效等位基因数在1.07~12.30个不等, 平均多态信息含量为0.74、0.74、0.69、0.75和0.75, 无偏期望杂合度的平均值为0.74、0.78、0.70、0.76和0.78, 说明这几个群体属于高度多态, 遗传多样性水平较高。(2)群体间相似系数在0.52以上, 相似性较高。聚类分析显示, 东岗、奉城和辽中3个养殖场的德国镜鲤群体聚类成一个分支, 而德国镜鲤选育系与松浦群体聚类成另一分支。聚类的先后与它们在地理分布上距离远近有一定的相关性。(3)在与功能基因相关的多个微卫星基因座位上, 扩增产物呈现不同程度的缺失现象, 这些无效等位基因的产生可能与结构基因在育种中受到人工选择的影响较大有关。  相似文献   

13.
The objective of this study was to examine the spatial genetic relationships of the Lake Qinghai scaleless carp Gymnocypris przewalskii within the Lake Qinghai system, determining whether genetic evidence supports the current taxonomy of Gymnocypris przewalskii przewalskii and Gymnocypris przewalskii ganzihonensis and whether Gymnocypris przewalskii przewalskii are returning to their natal rivers to spawn. Comparison of mitochondrial (control region) variation (42 haplotypes in 203 fish) of G. przewalskii with the postulated ancestral species found in the Yellow River, Gymnocypris eckloni (10 haplotypes in 23 fish), indicated no haplotype sharing, but incomplete lineage sorting. Consistent with the sub-species status, an AMOVA indicated that the Ganzi River population was significantly different from all other river populations (F(ST) = 0·1671, P < 0·001). No genetic structure was found among the other rivers in the Lake Qinghai catchment. An AMOVA of amplified fragment length polymorphism (AFLP) loci, however, revealed significant genetic differences between most spawning populations (F(ST) = 0·0721, P < 0·001). Both mitochondrial and AFLP data found significant differences among G. p. przewalskii, G. p. ganzihonensis and G. eckloni (F(ST) values of 0·1959 and 0·1431, respectively, P < 0·001). Consistent with the incomplete lineage sorting, Structure analysis of AFLP loci showed evidence of five clusters. One cluster is shared among all sample locations, one is unique to G. p. ganzihonensis and G. eckloni, and the others are mostly found in G. p. przewalskii. Genetic evidence therefore supports the current taxonomy, including the sub-species status of G. p. ganzihonensis, and is consistent with natal homing of most Lake Qinghai populations. These findings have significant implications for the conservation and management of this unique and threatened species. The evidence suggests that G. p. przewalskii should be treated as a single population for conservation purposes. Exchangeability of the populations, however, should not be used to promote homogenization of fish spawning in the different rivers. As some degree of genetic divergence was detected in this study, it is recommended that the spawning groups be treated as separate management units.  相似文献   

14.
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   

15.
水杉栽培居群的遗传多样性研究   总被引:1,自引:0,他引:1  
利用RAPD技术,对9个水杉(Metasequoiaglyptostroboides)栽培居群的遗传多样性进行了初步研究。用10bp的随机引物16条,共扩增出103个位点,其中37个为多态位点,占35.92%。各居群的多态位点百分率在16.50%~33.01%之间。POPGENEversion1.31软件处理结果如下:居群的Shannon’s信息指数为0.1930。遗传距离在0.0130~0.0650之间,遗传一致度在0.9370~0.9871之间。AMOVA分析结果显示遗传变异主要存在于居群内,占89.05%,居群之间有一定的分化。上述结果表明水杉栽培居群的遗传多样性略低于自然居群,涵盖了自然居群近80%的遗传多样性。由此可以确认栽培水杉的种源是经过混合的,它们在相当程度上代表了自然居群的遗传多样性水平。采自潜江的9株丛枝水杉(Metasequoiaglyptostroboidesvar.caespitosa)没有扩增出特有位点,将其视为一个居群根据遗传一致度作UPGMA聚类分析时,该居群和湖北的3个居群及南京(NJ)、成都(CD)居群聚在一起;单株聚类时丛枝水杉也没有聚成独立的一支,而是比较分散,因此不支持将丛枝水杉作为水杉的一个变种的分类处理。从亲缘关系上看,丛枝水杉应当归属于湖北潜江蚌湖种子园(BH)和湖北潜江广华(GH)居群,这与其分布现状也是吻合的。  相似文献   

16.
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.  相似文献   

17.
【目的】本研究旨在探明短额负蝗Atractomorpha sinensis不同地理种群对环境温度响应的适应性差异。【方法】以大豆叶片为食物饲养,在恒温16, 20, 24, 28和32℃, 相对湿度70%,光周期16L∶8D条件下,系统观测陕西延安、河南郑州、四川成都、云南曲靖和广东广州5个短额负蝗地理种群的生长发育过程,比较不同地理种群各虫态的发育历期、发育速率及发育起点温度和有效积温的差异性,分析种群生物学指标与栖息地环境温度的相关性。【结果】不同种群短额负蝗发育速率均随着温度升高而加快,但在16℃下成都和广州种群不能完成世代发育。随着不同种群栖息地纬度和海拔升高,其  相似文献   

18.
长江水系草鱼遗传多样性的微卫星DNA分析   总被引:41,自引:6,他引:35  
利用已发表的鲤微卫星引物在草鱼中进行PCR扩增,结果有5对引物(6个座位)能成功扩增并且有较高多态性,等位基因数在3-7个之间。这些异种扩增的草鱼微卫星符合孟德尔遗传规律。测序证明草鱼中的微卫星核心重复序列部分与鲤中的原始核心序列相似,也有一些变化。随后用这6个多态微卫星座位研究了来自长江水系的四个草鱼群体的遗传结构,结果显示每个群体的平均等位基因数在38与48之间,平均观测杂合度(Ho)在04000与05741之间,平均期望杂合度(HE)在04773与06489之间,有多个座位在不同的群体中偏离哈代-温伯格平衡。遗传距离分析表明四川群体与洞庭湖群体遗传距离最远,而嘉鱼群体与鄱阳湖群体遗传距离较近。分子变异分析(AMOVA)表明,群体内遗传变异与群体间遗传变异分别占总遗传变异的9560%与440%,固定系数(FST)为0044,这表明长江水系草鱼目前的群体分化很微弱。    相似文献   

19.
Using five microsatellite loci, genotyping and genetic diversity estimates were obtained for nine samples representing seven common carp breeds most widespread in Russia. For comparison, the samples of Amur wild common carp (Cyprinus carpio haematopterus) and a sample of European Hungarian carp were used. In the samples examined (n = 148) a total of 78 alleles were revealed. The highest mean allele number per locus (7.3) was identified in Amur wild common carp, while the lowest number was found in Cherepets carps (4.0). In different breeds, the observed heterozygosities varied from 0.819 (Altai carp) to 0.651 (Cherepets scaly carp). Three out of five microsatellite loci (MFW-24, MFW-28, and MFW-19) revealed a high level of population differentiation. In the dendrogram of genetic differences, all breeds clustered into two groups. One of these groups was composed of the two strains of Ropsha carp, Stavropol carp, Amur wild common carp, and the two samples of Cherepets carp. The second cluster included Altai carp (Priobskii and Chumysh populations), two Angelinskii carp breeds (mirror and scaly), and Hungarian carp. The pairs of breeds/populations/strains, having common origin, were differentiated. Specifically, these were two populations of Altai carp, two strains of Ropsha carp, as well as the breeds of Angelinskii and Cherepets carps. The reasons for genetic differentiation of Russian common carp breeds, as well as the concordance of the evolutionary histories of these breeds, some of which originated from the European breeds, while the others contain substantial admixture of the Amur wild common carp, are discussed.  相似文献   

20.
鄱阳湖日本沼虾15个群体遗传多样性的微卫星分析   总被引:1,自引:0,他引:1  
利用徽卫星分子标记研究鄱阳湖15个日本沼虾(Macrobrachium nipponense野生群体的遗传多样性.结果表明:10个微卫星位点呈高度多态性,共检测到129个多态性位点;每个群体中至少有5个位点显著偏离Hardy-Weinberg平衡,表现出杂合不足;15个日本沼虾群体均表现出较高的遗传多样性,其中大坝外群体和星池群体遗传多样性较高,万户和湖口群体相对较低.瓶颈效应和突变-漂移平衡分析表明,鄱阳湖日本沼虾群体近期没有经历过瓶颈效应,群体数量也没有下降.群体间F统计量及AMOVA分析显示,鄱阳湖日本沼虾群体存在极显著的遗传分化程度(FST=0.04709,P<O.01).综上所述,鄱阳湖日本沼虾群体具有丰富的遗传多样性,可作为日本沼虾选育的基础群.  相似文献   

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