673 resultados para MtDNA


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运用21种限制性内切酶对银细自然群体进行了mtDNA的限制性片断长度多态性 (RFLP)分析。发现银姻自然群体存在丰富的mtDNA多态性,从4个群体39个个体中,共检测 到12种单倍型,对这一现象的成因进行了探讨。依据单倍型和群体的系统发育关系,结合地 理分布的资料,对其现今分布区相互间的历史联系及其对银姻起源和分化的影响进行了分析。

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测定了线粒体DNA(mtDNA)控制区(D-loop)的核苷酸序列,并进行了分子系统学和遗传差异分析。研究结果表明:(1)UPGMA,NJ和MP分子系统学分析方法以及遗传差异分析都支持了亚洲远东地区中吻鲟和北美中吻鲟为一个有效种的观点;(2)同样研究方法并结合相关群体遗传资料表明,长江达式鲟与中华鲟关系最近,提出了达式鲟与中华鲟的一陆封类群的假说。

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用6种限制性内切酶对洱海的四种鲤鱼--洱海鲤(C. barbatus)、春鲤(C. longipectoralis)、大眼鲤(C. megalophthalmus)和杞麓鲤(C. carpio chila),其中前三种为洱海特有,进行了线粒体DNA(mtDNA)的限制性片段长度多态性(RFLP)分析,构建了它们的mtDNA限制性内切酶图谱。结果表明,这四种鲤鱼在种内和种间均缺乏mtDNA RFLP。这种现象在鱼类种间的mtDNA的RFLP研究中是罕见的。分析这一现象的原因,可能在于这些物种是同域形成物种,并且其分化时间还相当短。

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测定了83例广西壮族人的线粒体DNA(mtDNA)第一高变区515bp的序列,并从这一母系遗传标记的角度对壮族人群的起源和群体的遗传结构进行了探讨。结合已相关报道的人群比较分析显示,壮族和我国北方民族群体亲缘关系较远,而与南方的少数民族及南方汉族亲缘关系较近。壮族人群中单倍型辐射群体分布频率、系统树中壮族人群与其他人群聚类先后次序都表明壮族是一个较为典型的南方群体。

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采用RFLP技术,对四川白鹅和朗德鹅及其杂交后代进行了线粒体DNA(mtDNA)多态分析。在所使用的19种限制性内切酶中,有4个酶(Eco RV、HaeII、HincII和KpnI)检测出多态,共获得两种mtDNA单倍型,四川白鹅和以四川白鹅为母本杂交后代的mtDNA为I型,朗德鹅的mtDNA为II型。以上结果为中国鹅和欧洲鹅存在两种不同起源学说提供了分子遗传学的证据。

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用18种限制性内切酶分析云南猪种的mtDNA多态性。在全部18头个体中只检出一种限制性类型,结果表明,云南猪种的mtDNA变异度很低,遣传多样性贫乏。

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从9种zhao科鱼类的福尔马林标本中获得了333bp的细胞色素b基因片段的序列。经MUST软件排序后,有101个变异位点,其中有39个信息位点。序列在成对物种间的距离为8-48。平均遗传距离为2.4%-14.4%。简约分析产生了最大简约系统树,Bagarius是最原始的属,并与所有其他的物种形成姊妹群。其余8个属形成一个单系类群并分为二个姊妹群,而鳗zhao鱼类并未形成一个单系类群。

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采用蛋白电泳和线粒体DNA RFLP分析方法,研究了浙江七个地方品种猪及浙江野猪的遗传多样性状况。从分析的30个遗传座位、99个地方品种个体中发现MDH,PEPB,6PGD,AK,ADA,PHI六个座位具有多态性,其中AK,MDH多态座位在家猪中首次发现。浙江地方猪种的亲缘关系很近。在mtDNA RFLP水平,25种限制性内切酶在27个地方品种个体及3个野猪个体中共检出30种限制性态型,可归结成三种单倍型。各单倍型间平均遗传距离(P)为0.005,群体平均多态度(#pi#))为0.000 8,处于遗传多样性贫乏范围。

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应用非损伤性DNA测序技术测定了来自不同国家的长蠹科害虫的线粒体DNA ND4基因的部分序列。在获得的204bp的序列中,5种昆虫的序列变异丰富,多数变异发生在密码子的第3位点上。用PAUP3.1.1数据分析软件构建了5个种的合意简约树。并将实验结果与形态学特征比较分析,探讨5个种及所在属的系统进化。结果表明:双钩异翅长蠹所在的异翅长蠹属分化最早,其次是竹大长蠹所在的大长蠹属、双棘长蠹和黑双棘长蠹所在的双棘长蠹属及红艳长蠹所在的钻木长蠹属。双棘长蠹和黑双棘长蠹隶属同一个属,遗传关系最近,分化最晚,与形态学研究结果相吻合。

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Two different forms of Chinese pangolins can be recognized according to the color of their scales, i.e., brown and dusky. We analyzed mitochondrial DNA (mtDNA) purified from the livers of seven dusky and six brown Chinese pangolins from the same locality, using cleavage patterns from 19 restriction enzymes. From the 19 6-bp recognition enzymes used, 51-56 sites were observed. By combining the cleavage patterns for each enzyme, the 13 samples were classified into four restriction types: two in dusky and two in brown Chinese pangolins. The estimated number of nucleotide substitutions per site in dusky and brown types is 0.002, and that between dusky and brown types is 0.012. Divergence between brown and dusky forms began 0.6 Myr ago, provided the mean rate of sequence divergence is 0.02 per Myr in mtDNA. Our results suggest that there is considerable divergence in Chinese pangolins, and brown and dusky Chinese pangolins may be quite different forms or, at least, belong to different maternal groups.

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Restriction site mapping of mitochondrial DNA (mtDNA) with 16 restriction endonucleases was used to examine the phylogenetic relationships of Ochotona cansus, O. huangensis, O. thibetana, O. curzoniae and O. erythrotis. A 1-kb length variation between O. erythrotis of subgenus Pika and other four species of subgenus Ochotona was observed, which may be a useful genetic marker for identifying the two subgenera. The phylogenetic tree constructed using PAUP based on 61 phylogenetically informative sites suggests that O. erythrotis diverged first, followed by O. cansus, while O. curzoniae and O. huangensis are sister taxa related to O. thibetana, The results indicate that both O. cansus and O. huangensis should be treated as independent species. If the base substitution rate of pikas mtDNA was 2% per million years, then the divergence time of the two subgenera, Pika and Ochotana, is about 8.8 Ma ago of late Miocence, middle Bao-dian of Chinese mammalian age, and the divergence of the four species in subgenus Ochotona would have occurred about 2.5 - 4.2 Ma ago, Yushean of Chinese mammalian age. This calculation appears to be substantiated by the fossil record.

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The sequences of the mitochondrial ND4 gene (1339 bp) and the ND4L gene (290 bp) were determined for all the 14 extant taxa of the Drosophila nasuta subgroup The average A + T content of ND4 genes is 76.5% and that of ND4L genes is 83.5%. A total of 114 variable sites were scored. The ND4 gene sequence divergence ranged from 0 to 5.4% within the subgroup. The substitution rate of the ND4 gene is about 1.25% per million years. The base substitution of the genesis strongly transition biased. Neighbor-joining and parsimony were used to construct a phylogeny based on the resultant sequence data set. According to these trees, five, distinct mtDNA clades can be identified. D. niveifrons represents the most diverged lineage. D, sulfurigaster bilimbata and D. kepulauana form two independent lineages. The other two clades are the kohkoa complex and the albomicans complex. The Kohkoa complex consists of D. sulfurigaster sulfurigaster, D. pulaua, D. kohkoa, and Taxon-F. The albomicans complex can be divided into two groups: D. nasuta, D. sulfurigaster neonasuta, D. sulfurigaster albostrigata, and D.. albomicans from Chiangmai form one group; and D. pallidifrons, Taxon-I, Taxon-J, and D. albomicans from China form the other group. High genetic differentiation was found among D. albomicans populations. Based on our phylogenetic results, we hypothesize that D. niveifrons diverged first from the D, nasuta subgroup in Papua New Guinea about 3.5 Mya. The ancestral population spread to the north and when it reached Borneo, it diversified sequentially into the kohkoa complex, D. s. bilimbata, and D. kepulauana. About 1 Mya, another radiation occurred when the ancestral populations reached the Indo-China Peninsula, forming the albomicans complex. Discrepancy between morphological groupings and phylogenetic results suggests that the male morphological traits may not be orthologous. (C) 1999 Academic Press.

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A survey of restriction fragment polymorphism in mitochondrial DNA of three subspecies of Carassius auratus throughout four provinces in China was undertaken using 17 restriction enzymes. Two carp, Cyprinus carpio rubbrofuscus and Cyprinus carpio carpio, were included as the outgroup. A total of 16 haplotypes was observed: 5 in tetraploids of C. auratus auratus; 8 in hexaploids of C. auratus auratus; and 2 in C. auratus gibelio and C. auratus cuvieri, respectively. The tetraploids and hexaploids share three common haplotypes as I, V, and VI. C. a. Cuvieri may have diverged first among the three subspecies. Interestingly, C. a. auratus and C. a. cuvieri did not form monophyletic clades, which indicated that the classification of carassius auratus required further studies. The current hypothesis, that hexaploids originated from tetraploids by a polyploidy event, is less favorable, based on the distribution of haplotypes and the lower diversity in tetraploids than in hexaploids. Our data also indicate that divergence of hexaploids and tetraploids might be recent and mtDNA polymorphism existed before the divergence. Meanwhile, genetic isolation exists between the hexaploids and the tetraploids.

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The giant panda skeletal muscle cells, uterus epithelial cells and mammary gland cells from an adult individual were cultured and used as nucleus donor for the construction of interspecies embryos by transferring them into enucleated rabbit eggs. All the three kinds of somatic cells were able to reprogram in rabbit ooplasm and support early embryo development, of which mammary gland cells were proven to be the Lest, followed by uterus epithelial cells and skeletal muscle cells. The experiments showed that direct injection of mammary gland cell into enucleated rabbit ooplasm, combined with in vivo development in ligated rabbit oviduct, achieved higher blastocyst development than in vitro culture after the somatic cell was injected into the perivitelline space and fused with the enucleated egg by electrical stimulation. The chromosome analysis demonstrated that the genetic materials in reconstructed blastocyst cells were the same as that in panda somatic cells. In addition, giant panda mitochondrial DNA (mtDNA) was shown to exist in the interspecies reconstructed blastocyst. The data suggest that (i) the ability of ooplasm to dedifferentiate somatic cells is not species-specific; (ii) there is compatibility between interspecies somatic nucleus and ooplasm during early development of the reconstructed egg.

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Ten restriction endonucleases were used to investigate the mitochondrial DNA restriction fragment length polymorphism (mtDNA RFLP) of 11 native cattle breeds and one cultivated cattle breed in South China. Twenty-three restriction morphs were detected, which can be sorted into five haplotypes, A phylogenetic tree of the haplotypes was constructed by using the 'upgma' method. Our study showed that haplotype I and II are identical to the zebu (Bos indicus) and taurine (Bos taurus) haplotypes, respectively. Zebu and taurine were the two major origins of cattle populations in South China, and the zebu probably had more influence on the native cattle population than taurine did. Haplotype III is identical to haplotype I of yak (Bos grunniens), which was only detected in the Diqing cattle breed. Haplotype IV was detected for the first time. This haplotype, found only in Dehong cattle, might be from an independent domestication event, probably from another Bos indicus population. Divergence of haplotypes I and IV occurred about 268,000-535 000 years ago, much earlier than the 10,000-year history of cattle husbandry. Our results also suggest a secondary introgression of mtDNA from yak to Diqing cattle.