Resistance to powdery mildew and Cercospora leaf spot of multigerm dihaploid sugar beet lines and its inheritance in their hybrids

Paper Details

Research Paper 01/02/2016
Views (661)
current_issue_feature_image
publication_file

Resistance to powdery mildew and Cercospora leaf spot of multigerm dihaploid sugar beet lines and its inheritance in their hybrids

Georgi Kikindonov, Tzvetan Kikindonov, Stanimir Enchev
Int. J. Agron. & Agric. Res. 8(2), 19-24, February 2016.
Copyright Statement: Copyright 2016; The Author(s).
License: CC BY-NC 4.0

Abstract

The induced haploidy through in vitro gynogenesis in sugar beet is effective method for the selection of valuable gene recombinations determining the expression of efficient traits of that crop. Ten years test results for the resistance to powdery mildew and Cercospora leaf spot of stabilized multigerm dihaploid sugar beet lines and their hybrid combinations are being reported. The performance of the tested material proves, that the multigerm dihaploid pollinators are differentiated recombinant lines with favorable combinations of genetic material, including genes responsible for the high resistance to the agents of powdery mildew and Cercospora leaf spot fungal diseases. The higher resistance of the dihaploid multigerm pollinators dominates in their diploid hybrid combinations. The heritage factors for higher resistance to both diseases of the maternal component dominate in the tested triploid hybrids. There are good prospects of using these pollinators in the hybrid breeding schemes.

Antonov I, Zakhariev A. 1994. State and problems of sugar beet breeding in Bulgaria. Plant Science 31(3-4), 97-101.

Francis S. 2002. Sugar beet powdery mildew (Erysiphe betae). Plant Molecular Pathology 3 (3), 119-124.

Genchev G, Marinova G, Yovcheva V, Ognyanova A. 1975. Biometrical methods in plant growing, genetics and breeding. Zemizdat, Sofia 321-333.

Keane S. 1991. Foliar diseases of sugar beet. Biatas 45(4), 8-9.

Krexner R. 1983. Rezistenzprufung gegen Blattkrankheiten der Rube. Pflanzenarzt 36 (1), 4-7.

Lidanski Т. 1988. Statistical Methods in Biology and Agriculture. Zemizdat, Sofia 150-157.

Nakov B, Karov S, Popov A, Neshev G. 1994. Plant Pathology. Academica Press, Plovdiv 71.

Ruppel EG. 1995. Cercospora leaf spot. In: Whitney ED, Duffus JE Eds. Compendium of Beet Diseases and Insects, American Phytopathological Society, St. Paul, MN 8-15.

Slavova Y. 1993. Effective method for sugar beet haploids obtained from unpollinated ovules. Journal of Biotechnology and Biotechnological Equipment 7 (2), 34-35.

Smith GA, Campbell LG. 1996. Association between resistance to cercospora and yield in commercial sugar beet varieties. Plant Breeding 115, 28-32.

Smith GA, Gaskill JO. 1970. Inheritance of resistance to Cercospora leaf spot in sugarbeet. Journal of the American Society of Sugar Beet Technologists 16, 172-180.

Varbanov V. 1977. Short term prognosis and signalization of the cercosporose in sugar beet. Plant Protection 6, 27-31.

Varbanov V. 1978. Morphology of the powdery mildew in sugar beet. Plant Science 15 (3), 156-163.

Zakhariev A, Kikindonov G. 1997. Possibilities of haploidy application in sugar beet breeding. Plant Science 34 (7-8), 28-30.

Related Articles

Effects of tillage and fertilizers on soil and yield characteristics of brri dhan97 rice

Md Khayrul Islam Bashar, Zahidul Islam, Md Ekhlasur Rahman, Md Kayes Mahmud, Md Abul Bashar, Md Zulfiqar, Md Tariqul Islam, Md Musa Mondal, Amit Kumar, Int. J. Agron. & Agric. Res. 27(4), 11-20, October 2025.

Population parameters and exploitation levels of Synodontis membranaceus, a commercially valuable species in the Bagoué River in northern Ivory Coast

Kouyaté Kassoum, Cissé Mamadou, Ahoutou Konan Eric, N’douba Valentin, Int. J. Agron. & Agric. Res. 27(4), 1-10, October 2025.

Qualitative phytochemical screening of aqueous and ethanol extracts of selected Ghanaian spice

Perpetual M. Katsriku, Joseph K. Kwodaga, Benjamin K. Badii, Int. J. Agron. & Agric. Res. 27(3), 12-17, September 2025.

Optimization of use of solar radiation exposure to control weevils (Sitophilus zeamais) in stored maize

Ramadhani Huseni Bakari, Dunstan Gabriel Msuya, Luseko Amos Chilagane, Int. J. Agron. & Agric. Res. 27(3), 1-11, September 2025.

Tied ridges climate smart technology and overall performance of orange flesh sweet potato varieties in semi-arid Kenya: Evidence from Samburu county

Lentaano Evelyne Ntemuni, Philip Mwangi, Hellen Njagi, Int. J. Agron. & Agric. Res. 27(2), 23-30, August 2025.

Impact assessment on the ruminant livestock deworming extension project of the college of agriculture: Promoting healthy ruminant livestock in Taloctoc, Tanudan, Kalinga

Rex Saliw-an Langngag, Christopher Alejo Agustin, Cristine G. Liggayo, Maribel D. Cariño, Int. J. Agron. & Agric. Res. 27(2), 12-22, August 2025.

Botanical-based strategies for sustainable whitefly (Bemisia tabaci) management and tomato leaf curl virus suppression

P. G. Maina, R. K. Birithia, G. N. Kamotho, Int. J. Agron. & Agric. Res. 27(2), 1-11, August 2025.

Intertidal seagrass habitat and its macroinvertebrate assemblages in Baylimango, Dapitan City

MA. Dulce C. Guillena, Int. J. Agron. & Agric. Res. 27(1), 16-26, July 2025.