80 resultados para MDH


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Genetic variation of four hatchery stocks of Thai pangas, Pangasius hypophthalmu [sic] of Bogra region, Bangladesh was studied from 1 January 2002 to 31 December 2003. Muscle samples were collected for allozyme analysis from four (Bhai-Bhai, Jahangir, Belal and Bhai-Bon) different hatchery populations. For allozyme electrophoresis, eight enzymes were used and 11 loci viz. Adh-1*, Est-1*, GJpdh-1*, Gpi-1*, Gpi-2*, Jdhp-1*, Ldh-1*, Ldh-2*, Mdh-1*, Mdh-2*and Pgm* were identified, of which three loci (Est-1*, Gpi-2*, G3pdh-1 and Pgm*) were polymorphic in all the four populations. The mean proportion of polymorphic loci per population and the mean proportion of heterozygous loci per individual was 36.36% and 13.33, respectively for all the population studied. The highest variability measured by the mean number of alleles per locus was 1.545 in Bhai-Bon hatchery population. Based on Nei's (1972) genetic distance, the dendrogram (UPGMA) shows that four populations have made two clusters by D-value (D=0.043). Bhai-Bhai and Jahangir hatchery populations have made cluster-I, and Belal Uddin and Bhai-Bon hatchery populations formed cluster-II. Among the four populations, BhaiBhai and Jahangir hatchery populations were differentiated from each other by the D-value of 0.013, and Belal Uddin and Bhai-Bon populations were differentiated from each other by the D-value of 0.002, which suggests that the four populations may be fallen into the local population or race.

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Genetic structure of hatchery population of Thai pangas (Pangasius hypophthalmus) of Jessore region, Bangladesh has been investigated from 1 January 2004 to 31 December 2004. Samples for this study were collected from five fish hatcheries viz. Asrom, Banchte Shekha, Chowdhury, Maola and Rezaul Haque. The enzymes were encoded by 15 gene loci: Adh-1*, Est-1*, G3pdh-2*, Gpi-1*, Gpi-2*, Idhp-1*, Idhp-2*, Ldh-1*, Ldh-2*, Mdh-1*, Mdh-2*, Pgm*, Sdh-1*, Sdh-2* and Sod*. Among them four (Est-1*, G3pdh-2*, Gpi-2*and Pgm*) were found to be polymorphic in different populations but only Gpi-2* was polymorphic in all the sampled populations. The mean proportion of polymorphic loci per population was the highest (26.7%) in Banchte Shekha hatchery while the mean proportion of heterozygous loci was 13.33% per individual in Banchte Shekha and Maola hatcheries. The UPGMA dendrogram of Nei's (1972) genetic distances indicated a relationship between the genetic distance and geographical difference. High genetic variability in stocks of Thai pangas was observed in the Banchte Shekha and Maola hatcheries and less variability was found in the other three hatcheries.

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Genetic and morphological characters of four hatchery population (Shambhuganj, Brahmaputra, Anudan and Bhai-Bhai) of Thai pangas, Pangasius hypophthalmus in Mymensingh region of Bangladesh was studied using morphological characters and allozyme markers from 29 November 2001 to 29 November 2002. A total of 14 morphometric and 6 meristic characters were verified, among which 3 morphometric (BDA, PELFL and HW) and 2 meristic characters (AFR, CFR) of Anudan hatchery population were found to be significantly higher (p>0.001) than those of the other three hatchery populations. Brahmaputra hatchery population was also significantly higher in two meristic characters (PCFR and CFR). For allozyme electrophoresis nine enzyme markers were used viz.: Esr-1*, G3pdh-2*, Gpi-1*, Gpi-2*, Ldh-1*, Ldh-2*, Mdh-1*, Mdh-2* and Pgm* where three loci (Esr-1*, Gpi-2* and Pgm*) were polymorphic (p>0.95) in Anudan and Brahmaputra hatchery populations. The mean proportion of polymorphic loci per population was higher (33.3%) in Brahmaputra and Anudan hatchery populations. Also the expected heterozygosity levels were 0.149 and 0.177 in Brahmaputra and Anudan hatchery populations, respectively. Based on Nei's (1972) genetic distances, the UPGMA dendrogram grouped the populations into two clusters. The Brahmaputra and Anudan populations are in one group; Shambhuganj, and Bhai-Bhai populations are in the second group. High genetic variation in Thai pangas was observed in the Brahmaputra and Anudan hatchery populations and less variation in the other two hatchery populations.

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实验采用水平板淀粉凝胶电泳技术,对中国地方猪五大类型9个品种、1个引入品种共201个个体进行了遗传多样性分析。共分析遗传座位30个,其中只有MDH、PEPB、AK、6PGD、ADA、PHI 6个座位具有多态性。中国主要地方猪品种的多态座位百分比P=0.200,平均杂合度H=0.065,平均等位基因数A=1.300。根据基因频率采用PHYLIP3.5c软件包计算Nei氏遗传距离,然后用“NEIGHBOR”程序分别构建NJ和UPGMA系统树。

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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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We examined protein polymorphism of 20 native pig breeds in China and 3 introduced pig breeds. Thirty loci have been investigated, among which six loci were found to be polymorphic. Especially, the polymorphism of malate dehydrogenase (MDH), adenylate kinase (AK), and two new alleles of adenosine deaminase (ADA) had not been reported in domestic pigs and wild pigs. The percentage of polymorphic loci (P), the mean heterozygosity (H), and the mean number of alleles (A) are 0.200, 0.065, and 1.300, respectively. The degree of genetic variability of Chinese pigs as a whole was higher than that of goats, lower than that of cattle and horses, and similar to that of sheep. Using the gene frequencies of the 30 loci, Nei's genetic distance among the 20 native breeds in China and 3 introduced pig breeds was calculated by the formula of Nei. The program NEIGHBOR in PHYLIP 3.5c was chosen to construct an UPGMA tree and a NJ tree. Our results show that, of the total genetic variation found in the native pig breeds in China, 31% (0.31) is ascribable to genetic differences among breeds. About 69% of the total genetic variation is found within breeds. Most breeds are in linkage disequilibrium. The patterns of genetic similarities between the Chinese native pig breeds were not in agreement with the proposed pig type classification.

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利用聚丙烯酰氨凝胶电泳技术 ,对采自武汉沙湖螅状独缩虫自然种群的酯酶 (EST)、苹果酸脱氢酶 (MDH)、乳酸脱氢酶 (LDH)和酸性磷酸酶 (ACP)四种同工酶酶系进行了研究。实验表明 :EST同工酶酶系由六个基因座位(Est 1—Est 6 )控制 ,其中Est 1、Est 2、Est 3和Est 5为杂合基因座位 ,而Est 4和Est 6为纯合基因座位。螅状独缩虫物种中EST同工酶四级结构既有单体也有二聚体 ;MDH同工酶酶系由五个基因座位 (Mdh 1—Mdh 5 )控制 ,其中Mdh 2和M

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采用垂直板聚丙烯酰胺梯度凝胶电泳对栉江珧(Atrina pectinata Linnaeus)消化盲囊进行了5 种酶(SOD、EST、MDH、ME、LDH) 的同工酶分析。结果表明不同个体的同工酶表达呈现多态现象,个体间酶带带型既有相一致的共同特征谱带,又有较多的变异,5种酶均可把样品大致区分为差异明显的2 种或3 种类型,而且酶谱类型与形态类型基本对应,同工酶表达上的多样性表明栉江珧种内在生化遗传上存在较大的变异, 具有较丰富的遗传多态性。

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采用垂直板状聚丙烯酰胺梯度凝胶电泳分离技术,对企鹅珍珠贝闭壳肌、外套膜、鳃、消化盲囊、足组织的SOD、EST、LDH、G6PDH、MDH、ME 6种同工酶酶谱特征及其遗传控制进行了研究。6种同工酶在不同组织中的表达有明显的差异,同工酶分析共检测到18个位点,其中有16个位点具多态性,群体中,多态位点比例为88.8%,平均杂合度为0.396±0.029。有13个多态位点上的基因型频率与Hardy-Weinberg定律相符(P>0.05),位点Ldh-1、Ldh-2、Sod-2极显著偏离该平衡(P<0.01)

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对藏北高原 3种裸鲤的乳酸脱氢酶(LDH)、苹果酸脱氢酶 (MDH )和脂酶 (EST)进行电泳分析的结果表明 ,3种裸鲤酶谱均表现出种间的差别 ,而且在同一种群个体之间也存在着明显的分化 ,但无性别差异。 3种裸鲤被检测的 3种同工酶均有沉默基因表达的现象 ,重复基因LDH -A2 、LDH -B2 、s -MDH -A2 和m -MDH -B2 也在部分个体中表达。遗传距离分析表明 ,色林错裸鲤(G .selincuoensis)与错鄂裸鲤 (G .cuoensis)之间较之于与纳木错裸鲤 (G .n

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采用垂直板聚丙烯酰胺梯度凝胶电泳对 4种不同类型无裂栉江珧Atrinapectinata的肾脏、后闭壳肌和鳃组织进行了酯酶 (EST)、过氧化物歧化酶 (SOD)、乳酸脱氢酶 (LDH)、苹果酸脱氢酶 (MDH)、苹果酸酶 (ME) 5种同工酶的比较研究。结果表明这 4种类型的酶谱表达有差异 ,特别是肾组织的EST ,后闭壳肌的EST、SOD和鳃组织的SOD、MDH的酶谱表型差异明显 ,其特征谱带可作为区别无裂栉江珧种内差异的一种分子标记。

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取源于武汉两个不同渔场两尾白鲢的卵子,经紫外照射遗传物质失活的鲤鱼精子刺激雌核发育和热休克诱导第二极体保留的基因组操作技术,获得了两个不同的人工雌核发育白鲢群体。采用聚丙烯酰胺垂直板电泳技术,分析了这两个不同人工雌核发育白鲢群体(分别称为Hy-G1和Hy-G2)内不同个体的肝脏、肌肉组织以及红细胞中乳酸脱氢酶(LDH)、苹果酸脱氢酶(MDH)、酯酶(EST)、超氧化物歧化酶(SOD)等几种同工酶的表达谱式,并与普通繁殖的同龄白鲢进行了比较。结果表明,各个雌核发育白鲢群体内不同个体间的酶谱表现出很大程度的一

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用聚丙烯酰胺梯度凝胶电泳比较分析了单倍体、二倍体、三倍体和复合四倍体4类不同倍性鲫鱼以及单倍体和二倍体鲤鱼在胚胎发育时期4种同工酶(EST,LDH,MDH,SOD)酶谱。结果表明,单倍体鲫鱼和单倍体鲤鱼胚胎与各自的二倍体胚胎相比,同工酶酶谱看不出差异;天然三倍体银鲫胚胎的MDH和SOD同工酶酶谱与二倍体鲫相似,但EST和LDH同工酶比二倍体增多了酶带,有的酶带如EST5和EST6还可在鲤鱼胚胎中找到相应的表达产物,提供了天然雌核发育三倍体银鲫杂交起源的证据;复合四倍体由于含有鲤鱼的一个外来基因组,其胚胎的

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采用淀粉凝胶电泳方法分析鲂成体不同组织(脑、眼、肌、心、肝、肾)和早期发育阶段9种同工酶(LDH、MDH、ADH、IDH、GTDH、IDDH、G3PDH、SOD、EST)的分化表达模式。鲂同工酶的表达具有明显的组织特异性。早期发育阶段LDH、IDH、IDDH、SOD和EST具有不同的发育变化谱式,而MDH、ADH、GTDH和G3PDH酶谱在整个早期发育阶段均无明显变化。上述结果可以为鲂种群遗传结构分析、种群演化以及鲂类的系统发育问题提供基础资料。

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用聚丙烯酰胺梯度凝胶电泳分析了鲢×鳙、鲢×团头鲂的二倍体和异源三倍体杂种,以及同源三倍体鲢及其亲本种的8种蛋白质和同工酶的表型。二倍体杂交子代的基因表达是多样的,这些多样的表达可能与双亲的这些蛋白质和同工酶的表型差异有关。如与二倍体杂交子代相比,鲢×鳙异源三倍体的肌肉蛋白和血清蛋白有较一致的表型。此外在两种异源三倍体中EST和MDH同工酶的表型接近母本。这些结果表明异源三倍体由于增加了一套母本染色体组,基因的表达较接近母本或趋向一致。同源三倍体鲢与二倍体鲢的肌肉蛋白、血清蛋白、G3PDH、MDH和LDH同