Search for molecular markers linked to the flowering time and length of parental lines of F1 CMS ogura hybrids of winter oilseed rape (B. napus L.)

Alina Lieesch

a.liersh@ihar.edu.pl
Zakład Genetyki i Hodowli Roślin Oleistych, IHAR — PIB Poznań (Poland)

Jan Bocianowski


Katedra Metod Matematycznych i Statystycznych, Uniwersytet Przyrodniczy w Poznaniu (Poland)

Iwona Bartkowiak-Broda


Zakład Genetyki i Hodowli Roślin Oleistych, IHAR — PIB Poznań (Poland)

Abstract

Many investigations displayed the positive relationship between seed yield of oilseed rape and earliness as well as the length of flowering period. The last years’ oilseed rape breeding is directed first of all to development of F1 hybrid cultivars. Taking it into the consideration, investigations aiming at finding molecular markers linked to the beginning and length of flowering of parental lines of F1 hybrids have been initiated. Beginning and length of flowering of 18 parental lines were evaluated in field trials during two crop seasons in two environments. Genomic DNA of these lines was analyzed using PCR - RAPD and AFLP methods. Moreover, the isozyme markers were also used in the study. The obtained results revealed statistically significant relationship between molecular markers and flowering time. 16 molecular markers were associated with beginning of flowering period and 32 markers with the length of flowering. The isozyme markers were not correlated with these traits.

Supporting Agencies

The research was partly financed by the Ministry of Science and Higher Education, project No. 3 P06A 027 25


Bocianowski J. 2012. Analytical and numerical comparisons of two methods of estimation of additive × additive interaction of QTL effects. Scientia Agricola 69 (4): 240 — 246.
Google Scholar

Bocianowski J., Liersch A., Bartkowiak-Broda I. 2010. Zależność plonu nasion mieszańców F1 CMS ogura rzepaku ozimego (Brassica napus L.) od wybranych cech fenotypowych roślin oceniona przy zastosowaniu analizy regresji wielokrotnej. Rośliny Oleiste — Oilseed Crops, XXXVI (2): 373 — 389.
Google Scholar

Bocianowski J., Kozak M., Liersch A., Bartkowiak-Broda I. 2011. A heuristic method of searching for interesting markers in terms of quantitative traits. Euphytica 181: 89 — 100.
Google Scholar

Bocianowski J., Seidler-Łożykowska K. 2012. The relationship between RAPD markers and quantitative traits of caraway (Carum carvi L.). Industrial Crops and Products 36: 135 — 139.
Google Scholar

Cai C. C., Tu J., Fu T. D., Chen B. Y. 2008. The genetic basis of flowering time and photoperiod sensitivity in rapeseed Brassica napus L. Russ. J. Genet 44: 326 — 333.
Google Scholar

Doyle J. J., Doyle J. L. 1990. Isolation of plant DNA from fresh tissue. Focus 12: 13—15.
Google Scholar

Federico L. I. L., Federico, M. L. 2011. The genetics of Brassica napus. In: Genetics and genomics of the Brassicaceae, plant genetics and genomics: Crops and Models 9 (eds.) R. Schmidt, I. Bancroft. Springer Science +Business Media, LLC 2011. DOI 10.1007/978-1-4419-7118-0_10: 291 — 312.
Google Scholar

GenStat. 2007. GenStat Release 10 Reference Manual. Lawes Agricultural Trust, Rothamsted, UK.
Google Scholar

Hastie T. J., Tibshirani R. J. 1990. Generalized additive models. Chapman and Hall, London.
Google Scholar

Irzykowska, L., Bocianowski, J. 2008. Genetic variation, pathogenicity and mycelial growth rate differentiation between Gaeumannomyces graminis var. tritici isolates derived from winter and spring wheat. Annals of Applied Biology 152: 369 — 375.
Google Scholar

Irzykowska L., Bocianowski J., Waśkiewicz A., Weber Z., Karolewski Z., Goliński P., Kostecki M., Irzykowski W. 2012. Genetic variation of Fusarium oxysporum isolates forming fumonisin B1 and moniliformin. Journal of Applied Genetics 53: 237 — 247.
Google Scholar

Jourdren C., Barret P., Brunel D., Delourme R., Renard M. 1996. Specific molecular marker of the genes controlling linolenic acid content in rapeseed. Theor. Appl. Genet. 93: 512 — 518.
Google Scholar

Lagercrantz U. 1998. Comparative mapping between Arabidopsis thaliana and Brassica nigra indicates that Brassica genomes have evolved through extensive genome replication accompanied by chromosomes fusions and frequent rearrangements. Genetics 150: 1217 — 1228.
Google Scholar

Lande R., Thompson R. 1990. Efficiency of marker-assisted selection in the improvement of quantitative traits. Genetics 124: 743 — 756.
Google Scholar

Long Y., Shi J., Qiu D., Li R., Zhang C., Wang J., Hou J., Zhao J., Shi L., Park B-S., Choi SR., Lim YP., Meng J. 2007. Flowering time quantitative trait loci analysis of oilseed brassica in multiple environments and genome wide alignment with Arabidopsis. Genetics 177: 2433 — 2444.
Google Scholar

Mei D. S., Wang H. Z., Hu Q., Li Y. D., Xu Y.S., Li Y. C. 2009. QTL analysis on plant height and flowering time in Brassica napus. Plant Breeding 128: 458 — 465.
Google Scholar

Ogrodowczyk M., Liersch A., Bartkowiak-Broda I. 2003. Badanie zależności plonu nasion od cech biometrycznych u odmian mieszańcowych i populacyjnych rzepaku ozimego. Biul. IHAR 226/227/2: 415 — 424.
Google Scholar

Oil World 17/2010. Za Rynek Rzepaku Stan i Perspektywy. 2010. Instytut Ekonomiki Rolnictwa i Gospodarki Żywnościowej PIB, Agencja Rynku Rolnego, MRiRW. ISSN 1231-269X.
Google Scholar

Osborn T. C., Kole C., Parkin I. A. P., Sharpe A. G., Kuiper M., Lydiate D. J., Trick M. 1997. Comparison of flowering time genes in Brassica rapa, B. napus and Arabidopsis thaliana. Genetics 146: 1123 — 1129.
Google Scholar

Osborn T.C., Lukens L. 2003. The molecular genetic basis of flowering time variation in Brassica species. In: Nagata T., Tabata S. (eds.) Biotechnology in agriculture and forestry. Brassica and legumes: from gene structure to breeding. Springer Verlag, Berlin, 69 — 86.
Google Scholar

Raman H., Pragnell R., Eckermann P., Edwards D., Batley J., Coombers N., Taylor B., Wratten N., Luckett D., Dennis L. 2011. Genetic dissection of natural variation for flowering time in rapeseeds 13th International Rapeseed Congress, June 05-09.2011, Prague, Czech Republic, CD-ROM: 67 — 70, www.irc2011.org.
Google Scholar

Shields C. R., Orton C. J., Stuber C. W. 1983. Isozymes in plants genetics and breeding. In: Tanksley S. D. and Orton T. J. (Eds). Part A, Elsevier Sciences Publishers, B.V., Amsterdam: 443 — 458.
Google Scholar

Snowdon R.J., Friedt W. 2004. Molecular markers in Brassica oilseed breeding: current status and future possibilities. Plant Breeding 123: 1 — 8.
Google Scholar

Somers D. J., Rakow G., Prabhu V. K., Friesen K. R. D. 2001. Identification of a major gene and RAPD markers for yellow seed coat colour in Brassica napus. Genome 44: 1077 — 1082.
Google Scholar

Spasibionek S., Ogrodowczyk M. 1994. Badania nad nowymi rodami rzepaku ozimego w doświadczeniach wstępnych w sezonie 1992/93. Rośliny Oleiste — Oilseed Crops, XV: 341 — 358.
Google Scholar

Vallejos C. E. 1983. Enzyme activity staining. In: Tanksley S. D. and Orton T. J. (Eds). Isozymes in plants genetics and breeding. Part A, Elsevier Sciences Publishers, B.V., Amsterdam: 469 — 516.
Google Scholar

Vos P., Hogers R., Sleeker M., Reijans M., Lee T., Homes M., Freiters A., Pot J., Peleman J., Kuiper M., Zabeau M. 1995. AFLP: a new concept for DNA fingerprinting. Nucl. Acids Res. 23: 4404 — 4414.
Google Scholar

Williams J. G. K., Kubelik A. R., Livak K. J., Rafalski J. A., Tingey S. V. 1990. DNA polymorphisms amplified by arbitrary primers are useful as genetic markers. Nucl. Acids Res. 18: 6531 — 6535.
Google Scholar

Zhao H., Shi L., Duan X., Xu F., Wang Y., Jinling Meng J. 2008. Mapping and validation of chromosome regions conferring a new boron-efficient locus in Brassica napus. Mol. Breed. 22: 495 — 506.
Google Scholar


Published
2012-06-28

Cited by

Lieesch, A., Bocianowski, J. and Bartkowiak-Broda, I. (2012) “Search for molecular markers linked to the flowering time and length of parental lines of F1 CMS ogura hybrids of winter oilseed rape (B. napus L.)”, Bulletin of Plant Breeding and Acclimatization Institute, (264), pp. 79–87. doi: 10.37317/biul-2012-0058.

Authors

Alina Lieesch 
a.liersh@ihar.edu.pl
Zakład Genetyki i Hodowli Roślin Oleistych, IHAR — PIB Poznań Poland

Authors

Jan Bocianowski 

Katedra Metod Matematycznych i Statystycznych, Uniwersytet Przyrodniczy w Poznaniu Poland

Authors

Iwona Bartkowiak-Broda 

Zakład Genetyki i Hodowli Roślin Oleistych, IHAR — PIB Poznań Poland

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