С п и с ъ к на научните трудове на проф дсн Дияна светлева



страница2/2
Дата23.09.2016
Размер360.81 Kb.
#10500
1   2




На работата




36. Yancheva, S., D.Svetleva, M. Velcheva, Sp. Petkova, A.Atanassov, 1999. Regeneration possibilities of bulgarian bean cultivars Plovdiv 11M and Dobrudjanski 7. Bulg. J. Plant Phys., special issue, 1998, p. 49, The 11th Congress of the Federation of European Soc. of Plant Physiol., 7-11 September, 1998, Varana, Biotechnology and Biotechnological Equipments, 13, 1, p. 40-44.

41.

(1)

FARIAS F.L., 2009. CULTURA DE TECIDOS EM Phaseolus vulgaris L. VISANDO A REGENERAÇÃO E A ANDROGÊNESE IN VITRO. Instituto Agronomico, Doctoral thesis, Campinas, 82 p.

42.

(2)

Collado R., L. R. García, G. Angenon, D. Torres, C. Romero, I. Bermúdez, N. Veitía, 2011. Formación de embriones somáticos a partir de cotiledones inmaduros en Phaseolus vulgaris cv. CIAP 7247. Biotecnología Vegetal Vol. 11, No. 4: 235 - 240

На работата




37. Svetleva, D., M. Velcheva, D. Dimova, Kr. Ivanova, S. Petkova, 2001. - Factors influencing the in vitro cultivation of common bean (Phaseolus vulgaris L.) leaf petioles. Biotechnology and Biotechnological Equipments, 1: 15, p. 28-34.

43.

(1)

Zhang, L., T.F. Xu, X.F. Sun, H.M. Zhang, T.L. Tang, K.X. Tang, 2003. Factors influencing shoot regeneration from cotyledons of tetraploid Isatis indigotica Fort. In vitro Cellular and Developmental Biology – Plant 39: 5, p. 459-462.

44.

(2)

Zhang, L., G. Kai, T. Xu, Y. Pi, H. Zhang, X. Sun, K. Tang, 2004. Efficient regeneration of tetraploid Isatis indigotica plants via adventitious organogenesis from hypocotyls explants. Biologia Plantarum 48: 1, p. 121-124.

На работата




38. Dobrev, P., P. Petkov, D. Svetleva, A. Ivanova, D. Djilianov, S. Petkova, A. Atanassov, 2001. Analysis of some endogenous plant hormones during induction of somatic embryogenesis in common bean (Phaseolus vulgaris L.). Biotechnology and Biotechnological Equipment, 15: 2, p. 17-22.

45.

(1)

Prokešová Z., Klemš M., Motyka V., Procházka S. PŘÍJEM A METABOLISMUS DIHYDROZEATINU A ZEATINU V SEGMENTECH LISTŮ TABÁKU IN VITRO.

46.

(2)

George E.F., M.A. Hall and G. De Klerk, 2008. Plant Growth Regulators I: Introduction; Auxins, their Analogues and Inhibitors. In book: Plant Propagation by Tissue Culture, (3-rd edition), p. 175-204.

47.

(3)

http ://home.ueb.cas.cz/machackovai/publikace%20(3)%20(2).doc

48.

(4)

E. F. George et al. (eds.), 2008. Chapter 5. Plant Growth Regulators I: Introduction; Auxins, their Analogues and Inhibitors Plant Propagation by Tissue Culture 3rd Edition, 175–204.

На работата




39. Veltcheva, M, Svetleva, D. S. Petkova, 2002. In vitro regeneration of Phaseolus vulgaris L. Bean Improvement Cooperative, 45:246-247.

49.

(1)

Delgado-Sánchez P., M. Saucedo-Ruiz, S.H. Guzmán-Maldonado, E. Villordo-Pineda, M. González-Chavira, S. Fraire-VelÁzquez, J.A. Acosta-Gallegos and A. Mora-Avilés, 2006. An organogenic plant regeneration system for common bean (Phaseolus vulgaris L.). Plant Science, 170: 4, p. 822-827.

50.

(2)

Moreno P.P., A.R. Delgado, 2008. REPORTE EN EXTENSO/INFORMACIÓN GENERAL. Mejoramiento del cultivo de frijol en Guanajuato. 7/2008 - 6/2012.

51.

(3)

Koné M., T. H. Kouakou, D. Koné, Y. J. Kouadio, M. Zouzou, S. J. Ochatt, 2009. Factors affecting regeneration of bambara groundnut [Vigna subterranea (L.) Verdc.] from mature embryo axes. In Vitro Cell. Dev. Biol. Plant, 45:769–775.

52.

(4)

Quintero-Jiménez A., E. Espinosa-Huerta, J. A. Acosta-Gallegos, H. S. Guzmán-Maldonado, M. A. Mora-Avilés, 2010. AN IMPROVED METHOD FOR in vitro REGENERATION OF COMMON BEAN (Phaseolus vulgaris L.). Note in Agrociencia, 44, p. 57-64.

На работата







40. Svetleva D., M. Velcheva, G. Bhowmik, 2003. Biotechnology as a useful tool in common bean (Phaseolus vulgaris L.) improvement. Euphytica, 131, p. 189–200.




53.

(1)

Parthasarathy, D., 2003. Policy challenges for agricultural biotechnology in the Asia Pacific: developing framework for analysis. 45: 27 p.




54.

(2)

Torres R.I.G., R.A. Villalobos, E.G. Solis, D.G Debouck, 2004. Wild common bean in the Central valley of Costa Rica: Ecological distribution and molecular characterization. Agronomia Mesoamericana, 15: 2, p. 145-153.




55.

(3)

Gelin J.R., 2005. Overview of the Dry Bean Breeding Project At North Dakota State University. PLSC727, July 05, (http://www.acm.ndsu.nodak.edu/~gelin).




56.


57.

58.

59.

60.

61.

62.


63.

64.
65.

66.


67.



(4)

(5)


(6)

(7)


(8)

(9)


(10)

(11)


(12)
(13)

(14)



(15)



Collard B.C.Y., M.Z.Z. Jahufer, J.B. Brouwer, E.C.K. Pang, 2005. An introduction to markers, quantitative trait loci (QTL) mapping and marker-assisted selection for crop improvement: the basic concepts, Euphytica, 142: 1 – 2, p. 169-196.

Odeny D. A., 2006. Microsatellite Development and Application in Pigeonpea (Cajanus cajan (L.) Millsp.). Ecology and Development, Series No. 45, pp. 95.

Hillocks R.J., C.S. Madata, R. Chirwa, E.M. Minja, S. Msolla, 2006. Phaseolus bean improvement in Tanzania, 1959-2005. Euphytica, 150: 1 – 2, p. 215-231.

Zambre M., M. Van Montagu, G. Angenon and N. Terryn, 2006. Tepary Bean (Phaseolus acutifolius). Agrobacterium Protocols, v. 5, p. 407-414.

Aragão F.J.L. and F.A.P. Campos, 2007. Common Bean and Cowpea. In book: Biotechnology in Agriculture and Forestry, Transgenic Crops IV, p. 263-276.

Kanchiswamy Ch.N., M. Maffei, 2008. Callus induction and shoot regeneration of Phaseolus lunatus L. cv. Wonder Bush and cv. Pole Sieva. Plant Cell, Tissue and Organ Culture,  92: 2, p. 239-242. 

Terryn N., M. van Montagu, 2008. Chapter 10. Genetic transformation of Phaseolus and Vigna Species. In: Handbook of New Technologies for Genetic Improvement of Legumes, (Edited by P. B. Kirti Press), p. 159–168.

Chavarría M.J., 2008. Descripción morfológica e histológica del desarrollo ontogénico del eje embrionario cigótico de cuatro variedades costarricenses de frijol (Phaseolus vulgaris L.) bajo condiciones de cultivo in vitro. Universidad do Costa Rica. Doctoral thesis, Carné 992081, 128 p.

Kumar J.R, B.T. Kumar, 2009. Quantitative trait loci (QTL) mapping for Crop Improvement. Research J. Biotech., 4: 2, p. 67-79.

Jiménez C.R.O., 2009. Genetic purity of the common bean (Phaseolus vulgaris L. cv. ‘INTA ROJO’) during seed production in Nicaragua. Doctoral thesis, 54 p.

Arias A.M.G., J.M. Valverde, P.R. Fonseca, M.V. Melara, 2010. In vitro plant regeneration system for common bean (Phaseolus vulgaris): effect of N6-benzylaminopurine and adenine sulphate. Electronic Journal of Biotechnology, Vol. 13 No. 1, Issue of January 15, p. 6 - 7.

Hormozi-Nejad M. H., J. Mozafari, F. Rakhshandehroo, 2010. Elimination of Bean common mosaic virus using an electrotherapy technique Bekämpfung des Gewöhnlichen Bohnenmosaik-Virus per Elektrotherapietechnik. Journal of Plant Diseases and Protection, 117 (5), 201–205.

Amugune N. O., B. Anyango and T.K. Mukiama, 2011. Agrobacterium-mediated transformation of common bean. In: African Crop Science Journal, Vol. 19, No. 3, pp. 137-147.




На работата







41. Svetleva, D.L., 2004. Induction of chlorophyll mutants in common bean under the action of chemical mutagens ENU and EMS. J. Central European Agric., 5: 85-90.




69.

(1)

Khan I.A., M.U. Dahot, N. Seema, S. Yasmeen, S. Bibi, G. Raza, A. Khatri, M.H. Naqvi, 2009. Direct regeneration of sugarcane plantlets: A tool to unravel genetic heterogeneity. Pak. J. Bot., 41: 2, p. 797-814.




70.

(2)

Ndung’u, D.K., 2009. Mutagenesis and Development of herbicide resistance in sorghum for protection against Striga, Doctoral thesis, p.167.




71.

(3)

Pawar N., S. Pai, M. Nimbalkar, F. Kolar, G. Dixit, 2010. Induction of chlorophyll mutants in Zingiber officinale Roscoe by Gamma Rays and EMS. Emir. J. Food Agric. 2010. 22 (5): 406-411 (http://ffa.uaeu.ac.ae/ejfa.shtml).




На работата







42. Svetleva, D., 2004. II. EMS and NEU mutagenic efficiency and effectiveness in induction of morphological mutations in Phaseolus vulgaris L. Annual Reports of Bean Improvement Cooperative (BIC), Michigan, USA, vol. 47, p. 177-178.




72.

(1)

Porch T.G., M.W. Blair, P. Lariguet, C. Galeano, Cl.E. Pankhurst, W.J. Broughton, 2009. Generation of a Mutant Population for TILLING Common Bean Genotype BAT 93. J. AMER. u Soc. FIORT. SCI. 134, 3: 348-355.




На работата







43. Farinho, M., P. Coelho, J. Carlier, D. Svetleva, A. Monteiro, J. Leitao, 2004. Mapping of a locus for adult plant resistance to downy mildew in broccoli (Brassica oleracea convar. Italica). Theor Appl Genet, 109, pp. 1392-1398. 




73.

(1)

KYAZMA JOINTMAP, 2004.




74.

(2)

Bortolotto T.M., 2006. CONSTRUÇÃO DE MAPA MOLECULAR DE UMA POPULAÇÃO DE Eucalyptus grandis SEGREGANTE PARA O CARÁTER FLORESCIMENTO PRECOCE UTILIZANDO MARCADORES RAPD. Doctoral thesis, Botucatu, p. 86.




75.

(3)

Leng Y., X. Hou, G. SHI, 2007. The RAPD markers linked to downy mildew resistant gene in non-heading Chinese cabbage (Brassica campestris ssp. Chinesis Makino.). Acta Horticulturae Sinica, 34: 3, p. 763-766.




76.

77.


78.

79.


80.

81.

(4)

(5)

(6)

(7)



(8)

(9)


Babula D., M. Kaczmarek, P.A. Ziółkowski, J. Sadowski, 2007. Brassica oleracea. In book: Genome Mapping and Molecular Breeding in Plants, Vegetables, v. 5, p. 227-285.

Sharma, K., V. Agrawal, S. Gupta, R. Kumar, M. Prasad, 2008.
ISSR marker-assisted selection of male and female plants in a promising dioecious crop: Jojoba (Simmondsia chinensis). Plant Biotechnology Reports, 2: 4, p. 239-243. 

Gee, C.T., D.M. Gadoury, L. Cadle-Davidson, 2008. Ontogenic resistance to Uncinula necator varies by genotype and tissue type in a diverse collection of Vitis spp. Plant Disease, 92: 7, p. 1067-1073. 

ZHAO Z., H. YU, X. ZHANG, H. GU. , 2010. Advances in DNA markers of cauliflower (Brassica oleracea, var. botrytis L.) and broccoli (Brassica oleracea, var. italica L.). Acta Agriculturae Zhejiangensis, 22: 2, p. 258-262.

Kim S., Y.H. Song, J. Lee, S.R. Choi, V. Dhandapani, Ch.S. Jang, Y.P. Lim, T. Han, 2011. Identification of the BrRHP1 locus that confers resistance to downy mildew in Chinese cabbage (Brassica rapa ssp. pekinensis) and development of linked molecular markers. Theor Appl Genet.

LI Hui, YU Shuan-Cang, ZHANG Feng-Lan, YU Yang-Jun, ZHAO Xiu-Yun, ZHANG De-Shuang, ZHAO Xiang, 2011. Development of molecular markers linked to the resistant QTL for downy mildew in Brassica rapa L. ssp. Pekinensis. HEREDITAS (Beijing),




На работата







44. Svetleva D.L., P. Crino, 2005. Effect of ethylmethane sulphonate (EMS) and N-nitrose-N-ethyl urea (ENU) on callus growth of common bean. - Centr. eur. Agr., 6: 59-64.




82.

(1)

JUNAID A., A. MUJIB, M.P. SHARMA, 2008. Effect of growth regulators and ethylmethane sulphonate on growth, and chlorophyll, sugar and proline contents in Dracaena sanderiana cultured in vitro. BIOLOGIA PLANTARUM, 52: 3, p. 569-572,




83.

(2)

Kumari P., L.M. Tewari, T.K. Nailwa, T.K. Barbhuyan, L. Singh, G. Tewari, B.K.Singh, 2009. Chromosomal Abnormalities Arising Under The Action of Antibiotics In Pisum sativum. Nature and Science, 7: 3, 103-112 (http://www.sciencepub.net, naturesciencej@gmail.com).




84.

(3)

Qari Sameer Hasan M., 2010. DNA-RAPD Fingerprinting and Cytogenetic Screening of Genotoxic and Antigenotoxic Effects of Aqueous Extracts of Costus Speciosus (Koen.). JKAU: Sci., Vol. 22 No. 1, pp: 133-152.




85.

(4)

Dai W., Y. Su, C. Castillo, O. Beslot, 2010. Plant regeneration from in vitro leaf tissues of Viburnum dentatum L. Plant Cell Tiss Organ Cult., DOI 10.1007/s11240-010-9829-y.




На работата







45. Veltcheva M., D. Svetleva, S. Petkova, A. Perl, 2005. In vitro regeneration and genetic transformation of common bean (Phaseolus vulgaris L.) – Problems and progress. Sci. Hortic., 107, p. 2–10.




86.

(1)

Introducing EM Biology the affordable alternative. 12.2. Breeding, № 2969, p. 206




87.

(2)

Mohamed S.V., J.M. Sung, T.L. Jeng, C.S. Wang, 2006. Organogenesis of Phaseolus angularis L.: High efficiency of adventitious shoot regeneration from etiolated seedlings in the presence of N6-benzylaminopurine and thidiazuron. Plant Cell, Tissue and Organ Culture, 86: 2, p. 187-199. 




88.

(3)

Beksissa H., 2006. A Study on the Response of Three Genotypes of Mucuna pruriens to Different Growth Media for Tissue Culture Differentiation. Doctoral thesis, p. 63.




89.


90.


91.

92.
93.

94.

95.

96.

97.


98.

99.

100.

101.

102.

103.


104.


105.


106.

107.


108.

109.
110.

111.

(4)

(5)

(6)

(7)
(8)



(9)

(10)


(11)

(12)

(13)

(14)


(15)

(16)


(17)

(18)

(19)

(20)

(21)

(22)



(23)

(24)
(25)



(26)

Molina, R.V., S. Castelló, A. García-Luis, J.L. Guardiola, 2007. Light cytokinin interactions in shoot formation in epicotyl cuttings of Troyer citrange cultured in vitro. Plant Cell, Tissue and Organ Culture, 89: 2-3, p. 131-140. 

Bonfim, K., J.C. Faria, E.O.P.L. Nogueira, É.A. Mendes, F.J.L. Aragão, 2007. RNAi-mediated resistance to Bean golden mosaic virus in genetically engineered common bean (Phaseolus vulgaris). Molecular Plant-Microbe Interactions, 20: 6, p. 717-726.

Estrada-Navarrete G., X.Alvarado-Affantranger, J.E. Olivares, G. Guille´n, C. Dý az-Camino, Fr. Campos, C. Quinto, P.M. Gresshoff, F. Sanchez, 2007. Fast, efficient and reproducible genetic transformation of Phaseolus spp. by Agrobacterium rhizogenes. Nature protocols, 2: 7, p. 819-1824.

Koutsika-Sotiriou M., E. Traka-Mavrona, 2007. Snap Bean. In book: Vegetables II, v. 2, p. 27-83.

McClean Ph.E. , M. Lavin, P. Gepts, S.A. Jackson, 2008. Phaseolus vulgaris: A Diploid Model for Soybean. In book: Genetics and Genomics of Soybean, v. 2, p. 55-76.

Chavarría M.J., 2008. Descripción morfológica e histológica del desarrollo ontogénico del eje embrionario cigótico de cuatro variedades costarricenses de frijol (Phaseolus vulgaris L.) bajo condiciones de cultivo in vitro. Universidad do Costa Rica. Doctoral thesis, Carné 992081, 128 p.

Gutiérrez, R.T., 2008. Phytostimulatory effect of Rhizobium and plant growth promoting Rhizobacteria in common bean (Phaseolus vulgaris L.) interaction. Doctoral thesis, 158 pp.

Construção do Vetor, 2008,10 p.

Hussain A.F., G.H Anfoka, D.S. Hassawi, 2008. Transformation of tomato with TYLCV gene silencing construct using optimized Agrobactarium-mediated protocol. Byotechnology, Asian Network for Scientific Information, p. 1-7.

Rech, E.L., G.R. Vianna, F.J.L. Aragão, 2008. High-efficiency transformation by biolistics of soybean, common bean and cotton transgenic plants. Nature Protocols, 83: 3, p. 410-418. 

Kanchiswamy, C.N., M. Maffei, 2008. Callus induction and shoot regeneration of Phaseolus lunatus L. cv. Wonder Bush and cv. Pole Sieva. Plant Cell, Tissue and Organ Culture, 92: 2, p. 239-242. 

Bahgat S., Shabban O.A., O. El-Shihy, D.A. Lightfoot, H.A. El-Shemy,  2009. Establishment of the Regeneration System for Vicia faba L. CURRENT ISSUES IN MOLECULAR BIOLOGY, 11: 1, p. i47-i54.

FARIAS F.L., 2009. CULTURA DE TECIDOS EM Phaseolus vulgaris L. VISANDO A REGENERAÇÃO E A ANDROGÊNESE IN VITRO. Instituto Agronomico, Doctoral thesis, Campinas, 82 p.

Kwapata K., R. Sabzikar, M.B. Sticklen, J.D. Kelly, 2010. In vitro regeneration and morphogenesis studies in common bean. PLANT CELL TISSUE AND ORGAN CULTURE, 100: 1, p. 97-105.

Arias A.M.G., J.M. Valverde, P.R. Fonseca, M.V. Melara, 2010. In vitro plant regeneration system for common bean (Phaseolus vulgaris): effect of N6-benzylaminopurine and adenine sulphate. Electronic Journal of Biotechnology, Vol. 13 No. 1, Issue of January 15, p. 6 - 7.

Takahashi M., T. Uji, N. Saga, K. Mikami, 2010. Isolation and regeneration of transiently transformed protoplasts from gametophytic blades of the marine red alga Porphyra yezoensis. Electronic Journal of Biotechnology, Vol. 13 No. 2, Issue of March 15, p. 1 - 4.

Science Direct makes sense, 2010. Top 25 Hottest Articles.

Díaz-Camino C., P. Annamalai, F. Sanchez, A. Kachroo and S. A. Ghabrial, 2011. An effective virus-based gene silencing method for functional genomics studies in common bean. Plant Methods, 7:16.

Anwar F., S.S. Alghamdi, M.H. Ammar and K. H. M. Siddique, 2011. An efficient in vitro regeneration protocol for faba bean (Vicia faba L.). Journal of Medicinal Plants Research Vol. 5(28), pp. 6460-6467.

Jansa J., A. Bationo, E. Frossard, I. M. Rao, 2011. Options for Improving Plant Nutrition to Increase Common Bean Productivity in Africa. In: Fighting Poverty in Sub-Saharan Africa: The Multiple Roles of Legumes in Integrated Soil Fertility Management, p. 201-240.

Amugune N. O., B. Anyango and T.K. Mukiama, 2011. Agrobacterium-mediated transformation of common bean. In: African Crop Science Journal, Vol. 19, No. 3, pp. 137-147.

Sidhu J. S., S. Chellan, 2011. 4. Genetic Engineering of Vegetable Crops. In: Handbook of Vegetables and Vegetable Processing. Published Online: 16 MAR 2011, DOI: 10.1002/9780470958346.ch. 4.

Collado R., L. R. García, G. Angenon, D. Torres, C. Romero, I. Bermúdez, N. Veitía, 2011. Formación de embriones somáticos a partir de cotiledones inmaduros en Phaseolus vulgaris cv. CIAP 7247. Biotecnología Vegetal Vol. 11, No. 4: 235 - 240




На работата







46. Veltcheva M.R., D.L. Svetleva, 2005. In vitro regeneration of Phaseolus vulgaris L. via organogenesis from petiole explants. J Central European Agric., 6, p. 53–58.




112.

(1)

Castellanos-Hernandez O.A., A. Rodriguez-Sahagun, J.M. Rodriguez-Dominguez, B. Rodriguez-Garay. 2006. Organogenesis indirecta y enraizamiento in vitro de Paulownia elongata, E-Gnosis (Online), 4: 15, p. 1-12.




113.

(2)

Varisai M.S., J.M. Sung, T.L. Jeng, C.S. Wang, 2006. Organogenesis of Phaseolus angularis L.: High efficiency of adventitious shoot regeneration from etiolated seedlings in the presence of N6-benzylaminopurine and thidiazuron. Plant Cell, Tissue and Organ Culture, 86: 2, p. 187-199. 




114.

(3)

Mohamed S.V., J.M. Sung, T.L. Jeng, C.S. Wang, 2006. Organogenesis of Phaseolus angularis L.: High efficiency of adventitious shoot regeneration from etiolated seedlings in the presence of N6-benzylaminopurine and thidiazuron. Plant Cell, Tissue and Organ Culture, 86: 2, p. 187-199. 




115.

116.

117.

118.
119.

120.

121.


122.


123.


124.


125.

(4)

(5)


(6)

(7)
(8)

(9)

(10)



(11)

(12)

(13)

(14)


Berlijak J., I. Mavrič, M. Marn, 2007. Production of pathogen-free seeds of some Slovenian common bean (Phaseolus vulgaris L.) cultivars by meristem culture Section 5. Applied Botany, p. 119-120.

Rastogi S., S. M. H. Rizvi, R. P. Singh, U. N. Dwivedi, 2008. In vitro regeneration of Leucaena leucocephala by organogenesis and somatic embryogenesis. Biologia Plantarum, 52: 4, p. 743-748.

Lourdes G.R., R. Collado, I. Bermúdez-Caraballoso, N. Veitía, D. Torres, C. Romero, 2008. Regeneración de plantas vía organogénesis directa en Phaseolus vulgaris L. vol. 8 (2)

González R.G., D.S. Sánchez, Z.Z. Guerra, J.M. Campos, A.L. Quesada, R.M. Valdivia, A.D. Arencibia, K.Q. Bravo, P.D.S. Caligari, 2008. Efficient regeneration and Agrobacterium tumefaciens mediated transformation of recalcitrant sweet potato (Ipomoea batatas L.) cultivars. AsPac J. Mol. Biol. Biotechnol., Vol. 16 (2), 2008 Asia Pacific Journal of Molecular Biology and Biotechnology, 16, 2: 25-33.

LINCY A., B. SASIKUMAR, 2009. Enhanced adventitious shoot regeneration from aerial stem explants of ginger using TDZ and its histological studies. Turk J. Bot., 33, p. 1 - 9.

FARIAS F.L. , 2009. CULTURA DE TECIDOS EM Phaseolus vulgaris L. VISANDO A REGENERAÇÃO E A ANDROGÊNESE IN VITRO. Instituto Agronomico, Doctoral thesis, Campinas, 82 p.

Feng J.C., X. M. Yu, X. L. Shang, J. D. Li, Y. X. Wu, 2010. Factors influencing efficiency of shoot regeneration in Ziziphus jujuba Mill. ‘Huizao’. Plant Cell Tiss. Organ Cult., Springer Science+Business Media B.V.

Arias A.M.G., J.M. Valverde, P.R. Fonseca, M.V. Melara, 2010. In vitro plant regeneration system for common bean (Phaseolus vulgaris): effect of N6-benzylaminopurine and adenine sulphate. Electronic Journal of Biotechnology, Vol. 13 No. 1, Issue of January 15, p. 6 - 7.

Lucchesini M. , A. Bertoli, A. Mensuali-Sodi, E. Cappelli, C. Noccioli, L. Luciardi and L. Pistelli, 2010. Cytisus aeolicus Guss. ex Lindl. in vitro cultures and genistin production. Central European Journal of Biology, 5, p. 111-120.

Takahashi M., T. Uji, N. Saga, K. Mikami, 2010. Isolation and regeneration of transiently transformed protoplasts from gametophytic blades of the marine red alga Porphyra yezoensis. Electronic Journal of Biotechnology, 13: 2, Issue of March 15, p. 1 - 4.

Pandeya Kr., K.N. Tiwari, J. Singh, J.P. Verma, S.D. Dubey, 2010. In vitro propagation of Clitoria ternatea L.: A rare medicinal plant. Journal of Medicinal Plants Research, 4: 8, p. 664-668.




На работата







47. Svetleva D., P. Pereira, J. Carlier, L. Cabrita, J. Leitão, D. Genchev, 2006. Molecular characterization of Phaseolus vulgaris L. genotypes included in Bulgarian collection by ISSR and AFLPTM analyses. Sci Hortic (Amsterdam), 109:198–206.




126.

(1)

Zhang X., M.W. Blair, Sh. Wang, 2008. Genetic diversity of Chinese common bean (Phaseolus vulgaris L.) landraces assessed with simple sequence repeat markers. Theor Appl Genet., 117, p. 629–640.




127.

(2)

Bengtsson E., 2009. Analysis of Swedish Accessions of Phaseolus vulgaris L. Using SSR Markers. MSc degree project in biology within the Horticultural programme 30 HEC on E level at the LTJ Faculty, Swedish University of Agricultural Sciences, Alnarp in collaboration with CBM and NordGen, 46 p.




128.

(3)

Cardoso J.M.K., 2009. ESTIMATIVA DA DIVERSIDADE GENÉTICA ENTRE ACESSOS DO TIPO CARIOCA DE FEIJÃO COMUM COM BASE EM MARCADORES MOLECULARES. Instituto Agronomico Pos-graduacao, Campinas, Dissertation, p. 82.




129.

130.

131.


132.
133.


134.

135.


136.

137.

138.

139.

140.

(4)

(5)


(6)

(7)
(8)


(9)


(10)

(11)


(12)

(13)


(14)

(15)


Jian S., S. Shi, 2009. Genetic variation in Heritiera littoralis (Malvaceae) from east and south Asia revealed by AFLP markers. PLANT BIOSYSTEMS, 143: 1, p. S56-S62.   

Egea-Gilabert C., J.A. Fernandez, D. Migliaro, J.J. Martinez-Sanchez, M.J. Vicente, 2009. Genetic variability in wild vs. cultivated Eruca vesicaria populations as assessed by morphological, agronomical and molecular analyses. SCIENTIA HORTICULTURAE,   JUL 2, 121: 3, p. 260-266.

Masi P., G. Logozzo, P. Donini, P.S. Zeuli, 2009. Analysis of Genetic Structure in Widely Distributed Common Bean Landraces with Different Plant Growth Habits Using SSR and AFLP Markers. CROP SCIENCE, 49: 1, p. 187-199.

Kurane J., V. Shinde, A. Harsulkar, 2009. Application of ISSR marker in pharmacognosy: Current update. Pharmacognosy, 3: 6, p. 216-228.

Coelho R.C., M.A. Faria, J. Rocha, A. Reis, M.B.P.P. Oliveira, E. Nunes, 2009. Assessing genetic variability in germplasm of Phaseolus vulgaris L. collected in Northern Portugal. Scientia Horticulturae 122 (2009) 333–338.

Rodiño P.A., M. Santalla, A.M. De Ron, J. Drevon, 2010. Co-evolution and Migration of Bean and Rhizobia in Europe. In book: Sociology, Organic Farming, Climate Change and Soil Science, 3, p. 171-188.

Jian S., T. Tang, Y. Zhong, S. Shi, 2010. Conservation genetics of Heritiera littoralis (Sterculiaceae), a threatened mangrove in China, based on AFLP and ISSR markers. Biochemical Systematics and Ecology 38: 924–930.

Liang-Hsing H., Jin-Tswen Ke, Ruey-Shing Lee. Analysis of the Genetic Diversity of Taiwan Water Caltrop Varieties by ISSR (Inter-simple-sequent-repeat) Markers. 稻江學報第四卷第一期

Wang H., T. Jeng, T. Chen, S. Chuang, M. Wei, J. Sung, 2010. Molecular and Morpho-agronomic Characterization of NaN3-induced Common Bean Mutants. Crop, Environment & Bioinformatics, 7: 221-232.

Brinez B., M. W. Blair, A. Kilian,S.A.M. Carbonell, A.F. Chiorato, L.B. Rubiano, 2011. A whole genome DArT assay to assess germplasm collection diversity in common beans. Mol. Breeding,

Ince A.G., M. Karaca, 2011. Genetic variation in common bean landraces efficiently revealed by Td-DAMD-PCR markers. Plant Omics Journal, 4 (4): 220-227.

Perseguini J., A.F. Chioratto, M.I. Zucchi, C.A. Colombo, S.A.M. Carbonell, J.M.C. Mondego, R. Gazaffi, A.A.F. Garcia, T. de Campos, A. P. de Souza, L.B. Rubiano, 2011. Genetic diversity in cultivated carioca common beans based on molecular marker analysis. Genetics and Molecular Biology, 34, 1, 88-102 (www.sbg.org.br).




ІV. ЦИТИРАНИ НАУЧНИ ТРУДОВЕ В МОНОГРАФИИ:

На работата







48. Светлева Д., С. Петкова, И. Делчев, 1999. Нови сортове. Пловдив 11М - първият мутантен сорт фасул в България. Растениевъдни науки, 36, стр. 460-463.




141.

(1)

Рукмански, Г. 2005. Ролята на мутациите в живата природа. Изд. Къща “Генплант”.




На работата







49. Svetleva, D., 2003. Plovdiv 15 M – a new mutant common bean cultivar in Bulgaria. Bulgarian Journal of Ecological Science: Ecology and Future, vol. 2: 2, p. 35-38.




142.

(1)

Рукмански, Г. 2005. Ролята на мутациите в живата природа. Изд. Къща “Генплант”.




Каталог: cntnr -> NID -> Registyr NID -> POL -> kat Genetika
POL -> С п и с ъ к на научните трудове на доц д-р П. Бацалов
POL -> С п и с ъ к на научните трудове на Доц д-р Кунка Кожухарова
POL -> С п и с ъ к на научните трудове на доц д-р Христо Анастасов
POL -> С п и с ъ к на научните трудове на ас д-р Красмира любенова аврамова
POL -> -
POL -> -
kat Genetika -> С п и с ъ к на научните трудове на доц д-р Светла Янчева
kat Genetika -> С п и с ъ к на научните трудове на Доц д-р Невенка Ганушева
kat Genetika -> С п и с ъ к на научните трудове на гл ас д-р Красимира Узунова
kat Genetika -> С п и с ъ к на научните трудове на ас биляна Сергеева Иванова за периода 2007-12 г


Сподели с приятели:
1   2




©obuch.info 2024
отнасят до администрацията

    Начална страница