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Genetic heterogeneity in age classes of naturally regenerated old growth forest of Picea abies (L.) Karst

205 (1): 19-31. CHEN, X.Y. and Y. C. SONG (1997): Temporal genetic structure of a Cyclobalanopsis glauca population in Huangshan. J East China Normal Univ (Nat Sci) (4): 79-84. CHUNG, M.Y., B. K. EPPERSON and M. G. CHUNG (2003): Genetic structure of age classes in Camellia japonica (Theaceae). Evolution 57 (1): 62-73. ECHT, C. S., L. L. DEVERNO, M. ANZIDEI and G. G. VENDRAMIN (1998): Chloroplast microsatellites reveal population genetic diversity in red pine, Pinus resionsa, Ait. Mol Ecol 7: 307

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Association of Mitochondrial DNA Variants and Cognitive Impairment of Phenylketonuria Patients / POVEZANOST VARIJANTI U MITOHONDRIJALNOJ DNK I KOGNITIVNOG FENOTIPA KOD PACIJENATA SA FENILKETONURIJOM

, Torroni A, et al. Mitochondrial DNA sequence diversity in bipolar affective disorder. Am J Psychiatry 2000; 157: 1058-64. 29. Kato T, Kunugi H, Nanko S, Kato N. Mitochondrial DNA polymorphisms in bipolar disorder. J Affect Disord 2001; 62: 151-64. 30. Kazuno AA, Munakata K, Nagai T, Shimozono S, Tanaka M, Yoneda M, et al. Identification of mitochondrial DNA polymorphisms that alter mitochondrial matrix pH and intracellular calcium dynamics. PLoS Genet 2006; 2: e128. 31. Kulawiec M, Owens KM, Singh KK. mtDNA Gm.10398A

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Platelet glutamate dehydrogenase activity and efficacy of antipsychotic therapy in patients with schizophrenia

loss of absorption of NADH recorded by spectrophotometry at 340 nm for 3 min. To calculate the enzymatic activity, the value of the molar extinction coefficient of NADH, 6.22×10 -3 l×mol -1 ×cm -1 was taken, and the specific activity of GDH per 1 mg of protein is given in Figures 1 and 2 . Figure 1 GDH activity in patients with schizophrenia (SZ) before (baseline) and after the treatment course. Figure 2 Dynamics of GDH activity for patients with baseline GDH activity below the median. Protein concentration was determined by the Lowry

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Current status of porcine epidemic diarrhoea (PED) in European pigs

Introduction Coronaviruses (CoVs) cause a large variety of diseases in humans and animals. In pigs, coronaviruses affect various organs, including the gastrointestinal and respiratory tracts. CoVs have one of the largest genomes of all RNA viruses, which in combination with their high genetic diversity causes mutation and recombination, resulting in new virus variants ( 24 ). Besides porcine epidemic diarrhoea virus (PEDV), the porcine coronaviruses comprise transmissible gastroenteritis virus (TGEV), porcine respiratory coronavirus (PRCV), porcine

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Genetic characteristics reflecting the population size and disturbance regime of Siebold’s beech (Fagus crenata Blume) populations at the northernmost distribution

References CESPEDES, M., M. V. GUTIERREZ, M. HOLBROOK and O. J. ROCHA (2003): Restoration of genetic diversity in the dry forest tree Swietenia macrophylla (Meliaceae) after pasture abandonment in Costa Rica. Molecular Ecology 12: 3201-3212. COMPS, B., D. GOMORY, J. LETOUZEY, B. THIEBAUT and R. J. PETIT (2001): Diverging trends between heterozygosity and allelic richness during postglacial colonization in the European beech. Genetics 157: 389-397. CRAWFORD, T. J. (1984): The estimation of neighborhood parameters

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Genetic diversity of Anadenanthera colubrina Vell. (Brenan) var cebil, a tree species from the South American subtropical forest as revealed by cpSSR markers

Bibliography A braham D e N oir , F., S. B ravo and R. A bdala (2002): Mecanismos de dispersión de algunas especies leñosas nativas del chaco occidental y serrano. Quebracho Revista de Ciencias Forestales 9 : 140–150. A ndrianoelina , O., H. R akotondraoelina , L. R amamonjisoa , J. M aley , P. D anthu and J. M. B ouvet (2006): Genetic diversity of dalbergia monticola (fabaceae) an endangered tree species in the fragmented oriental forest of Madagascar. Biodiversity and Conservation 15 : 1109–1128. B rown , A. H. D. and M. W. F eldman

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Discordance Between Geographical Distribution and Genetic Relationship Among Populations of Japanese Red Pine in Korea Revealed by Analysis of I-SSR Markers

revealed in rice (Oryza sativa L.) using different marker types. Molecular Breeding 3(2): 115-125. SAGHAI, M. A., BIYASHEV, R. M., YANG, G. P., ZHANG, Q. and ALLARD, R.W. (1994): Extraordinarily polymorphic microsatellite DNA in barley: species diversity, chromosomal locations, and population dynamics. Proc. Natl. Acad. Sci. USA 91: 5466-5470. SALIMATH, S. S., DE-OLIVEIRA, A. C., GODWIN, I. D. and BENNETZEN, J. L. (1995): Assessment of genome origins and genetic diversity in the genus Eleusine with DNA markers. Genome 38(4): 757

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Forest decline has not reduced genetic diversity of naturally regenerated Norway spruce from the Beskids, Poland

-RIVAS, H. A. CASTELLANOS-BOCAZ and A. PINEDO-ALVAREZ (2009): Is there a positive relationship between naturalness and genetic diversity in forest tree communities? Investigación Agraria: Sistemas y Recursos Forestales 18: 20-27. WHITE, G. M., D. H. BOSHIER and W. POWELL (2002): Increased pollen flow counteracts fragmentation in a tropical dry forest: An example from Swietenia humilis Zuccarini. Proc Natl Acad Sci USA 99: 2038-2042. WOJNICKA-PÓŁTORAK, A., W. PRUS-GŁOWACKI, K. CELIN´SKI and A. KORCZYK (2013): Genetic aspects of age dynamics

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Genetic Variation in the Qinghai-Tibetan Plateau Endemic and Endangered Conifer Cupressus gigantea, Detected Using RAPD and ISSR Markers

Juniperus thurifera L. (Cupressaceae) in the western Mediterranean region. Israel Journal of Plant Sciences 51: 11-22. KREMER, A. and M. P. REVIRON (2004): Dynamics and conservation of genetic diversity in forest ecosystems. Forest Ecology and Management 197: 1-2. LEDIG, F. T. (1987): Genetic structure and the conservation of California’s endemic and near-endemic conifers, pp. 587-594. In: Conservation and Management of Rare and Endangered Plants edited by T. S. ELLIS, California Native Plant Society, Sacramento, USA. LEE, S

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I-SSR Markers Revealed Inconsistent Phylogeographic Patterns among Populations of Japanese Red Pines in Korea

of Kor. For. Soc. pp. 57-58 (in Korean). SAGHAI, M. A., R. M. BIYASHEV, G. P. YANG, Q. ZHANG and R. W. ALLARD (1994): Extraordinarily polymorphic microsatellite DNA in barley: species diversity, chromosomal locations, and population dynamics. Proc. Natl. Acad. Sci. USA 91: 5466-5470. SALIMATH, S. S., A. C. DE-OLIVEIRA, I. D. GODWIN and J. L. BENNETZEN (1995): Assessment of genome origins and genetic diversity in the genus Eleusine with DNA markers. Genome 38(4): 757-763. SHANNON, C. E. (1948): A mathematical theory of

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