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Mehmet Ozkan Timurkan, Hakan Aydin and Ahmet Sait

.I., Diodati J., Rodriguez D., Parreño V., Zabal O., Konrad J.L., Crudelli G., Mauroy A., Thiry E., Romera S.A.: Isolation and characterization of bovine parainfluenza virus type 3 from water buffaloes ( Bubalus bubalis ) in Argentina. BMC Vet Res 2012, 20, 83. 23. Neill J.D., Ridpath J.F., Valayudhan B.T.: Identification and genome characterization of genotype B and genotype C of bovine parainfluenza type 3 viruses isolated in the United States. BMC Vet Res 2015, 11, 112. 24. Oem J.K., Lee E.Y., Lee K.K., Kim S.H., Lee M.H., Hyun B.H.: Molecular characterization

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T. Chellappa, M. Jose Fonseca Costa, W.A. Nascimento, L. Ferreira De Lima, I. Almeida Bassan, M. Tavares, V.J. Fernandes, A. Menezes, L. Guilherme Meira, J. Telesforo Nóbrega De Medeiros and R. Maribondo Do Nascimento

). [6] E.M. Flanigen, B.M. Lok, R.T. Patton, and S.T. Wilson, “Aluminophosphate molecular sieves and the periodic table”, Proc. 7thInt. Zeolite Conf. 1, 103-112 (1986). [7] A.S. Araujo, J.C. Diniz, A.O.S. Silva, and R.A.A. Melo, “Hydrothermal synthesis of cerium aluminophosphate”, J. Alloys Compd. 250, 532-535 (1997). [8] N. Rajic, V. Kaucic, and D. Stojakovic, “Synthesis and characterization of the CoSAPO-14 and CoSAPO-34”, Zeolites 10, 169-173 (1990). [9] G. Nardin, L. Randaccio, N. Rajik, and V. Kaucic, “The structure

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E Sukarova Stefanovska, P Tchakarova, G Petkov and G Efremov

Acids Res 1998; 26(1): 216-219 (http://europium.csc.mrc.ac.uk) http://europium.csc.mrc.ac.uk Antonarakis SE, Kazazian HH, Tuddenham EGD. Molecular etiology of factor VIII deficiency in hemophilia A. Hum Mutat 1995; 5(1): 1-22. Efremov G D, Dimovski A J, Plaseska-Karanfilska D, Simjanovsa L, Sukarova E, Koceva S, Popovski Z. Laboratory Manual, 2nd ed. 1998. ICGEB Affilated Center "Nucleic acid based methods in human and veterinary medicine." Skopje: Macedonian Academy of Sciences and Arts, 1998

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K. E. Ogbuebunu and M. O. Awodiran

Abstract

Thirty Lates niloticus (Linnaeus, 1758) from three Nigerian waterbodies were genotyped on six RAPD primers and five microsatellites loci. RAPD revealed that effective number of alleles (AE) at population level per locus was within the range of 1.641 ± 0.066 to 1.645 ± 0.041 while the mean number of alleles (AN) across populations equals 2.000. Characterization on five microsatellites loci revealed genetic diversity within and among studied populations. Observed heterozygousity (HO) was within the range of 0.317 ± 0.335 to 0.523 ± 0.315 while expected heterozygousity (HE) was within the range of 0.414 ± 0.306 to 0.715 ± 0.097. Proportion of differentiation (FST) within populations was 0.236. Overall gene flow (Nm) among populations equals 0.806. This study established the successful use of RAPD and microsatellite as tools for studying population structure of fish species, especially L. niloticus. Thus, it can be concluded that L. niloticus in the three (3) sampled Nigerian waterbodies is undergoing evolution.

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T Liehr, V Trifonov, A Polityko, L Brecevic, K Mrasek, A Weise, E Ewers, D Reich, I Iourov, H Mkrtchyan, M Manvelyan and N Kosyakova

, Claussen U, Liehr T. Molecular cytogenetic characterisation of an acquired minute supernumerary marker chromosome as the sole abnormality in a case clinically diagnosed as atypical Philadelphia-negative chronic myelogenous leukaemia. Br J Haemato 2001; 113(2): 435-438. Speicher MR, Gwyn Ballard S, Ward DC. Karyotyping human chromosomes by combinatorial multi-fluor FISH. Nat Genet 1996; 12(4): 368-375. Schröck E, du Manoir S, Veldman T, Schoell B, Wienberg J, Ferguson-Smith MA, Ning Y, Ledbetter DH, Bar-Am I

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Gunārs Lācis

., Section B., 67 (2). Kumar, P., Gupta, V. K., Misra, A. K., Modi, D. R., Pandey, B. K. (2009). Potential of Molecular Markers in Plant Biotechnology. Plant Omics J., 2 (4), 141-162. Lacis, G. (2001). Morphological analysis of Latvian sweet cherry (Prunus avium L.) genetic resources collection. In: Broad Variation and Precise Characterization - Limitationfor the Future. EUCARPIA Section Genetic Resources, 16-20 May 2001 (pp. 225-228). Poznan, Poland. Lacis, G. (2010). Characterisation of the Latvian and Swedish Sweet

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A.A. Lahuf

of root rot disease caused by Fusarium proliferatum on alfalfa in China. Plant Disease, 100 (12): 2526. Elmer, W.H. 1990. Fusarium proliferatum , as causal agent in Fusarium crown root rot of asparagus. Plant Disease , 74: 938. Gao, J., Wang, J., Yang, C., Wang, Y., Lu, B.H. and Yang, L.N. 2017. Fusarium proliferatum , a new pathogen causing Codonopsis lanceolata root rot in China. Plant Disease , 101(9): 1679. Hawa, M.M., Salleh, B. and Latiffah, Z. 2013. Characterization and pathogenicity of Fusarium proliferatum causing stem rot of

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T. Jagielski, H. Lassa, J. Ahrholdt, U. Roesler and E. Malinowski

References Aouay A, Coppée F, Cloet S, Cuvelier P, Belayew A, Lagneau PE, Mullender C ( 2008 ) Molecular characterization of Prototheca strains isolated from bovine mastitis. J Mycol Méd 18: 224-227. Blaschke-Hellmessen R, Schuster H, Bergmann V ( 1985 ) Differenzierung von Varianten bei Prototheca zopfii Krüger 1894. Arch Exp Veterinarmed 39: 387-397. Boyd A, Langley M, King LE Jr ( 1995 ) Cutaneous manifestations of Prototheca infections. J Am. Acad Dermatol 32: 758

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Muhammad Luqman Sohail, Muhammad Sarwar Khan, Muhammad Avais, Muhammad Yasir Zahoor, Irfan Khattak, Aqeela Ashraf and Omer Naseer

References 1. Alvarado-Esquivel C., Hernandez-Tinoco J., Sanchez-Anguiano L.F., Ramos-Nevarez A., Cerrillo S.S.M.L., Saenz-Soto L.: High seroprevalence of Leptospira exposure in meat workers in Northern Mexico: a case-control study. J Clin Med Res 2016, 8, 231-236. 2. Anwar K., Khan N., Mujtaba M.: Seroprevalence of leptospirosis in aborted dairy cattle in Peshawar district Suburb, Khyber Pakhtunkhwa Pakistan. Int J Curr Microbiol App Sci 2013, 2, 73-78. 3. Arent Z., Gilmore C., Brem S., Ellis W.A.: Molecular

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A. Chaudhary, C. Verma, V. Tomar and H. S. Singh

. (1994): DNA primers for amplification of mitochondrial cytochrome c oxidase subunit I from diverse metazoan invertebrates. Mol. Marine Biol. Biotechnol., 3: 294-299 GASSER, R.B. (2001): Identification of parasitic nematodes and study of genetic variability using PCR approaches. In: KENNEDY, M.W., HARNETT, W. (Eds) Parasitic nematodes: Molecular Biology, biochemistry and immunology. CABI Publishing, London, pp. 53-82 GOSWAMI, U., CHAUDHARY, A., VERMA, C., SINGH, H.S. (2015): First Molecular Characterization of Aspiculuris tetraptera