Metrika

  • citati u SCIndeksu: 0
  • citati u CrossRef-u:0
  • citati u Google Scholaru:[]
  • posete u poslednjih 30 dana:14
  • preuzimanja u poslednjih 30 dana:9

Sadržaj

članak: 1 od 1  
2023, vol. 28, br. 55, str. 3-12
Cabbage (Brassica oleracea var. capitata L.) grown under the conditions of the life cycle of winter oilseed rape (Brassica napus L.) in order to achieve a stable seed yield
(naslov ne postoji na srpskom)
aInstitut za povrtarstvo, Smederevska Palanka, Srbija
bUniverzitet u Kragujevcu, Agronomski fakultet, Čačak, Srbija
cUniverzitet u Beogradu, Institut za molekularnu genetiku i genetičko inženjerstvo, Srbija

e-adresasadzic@institut-palanka.rs
Projekat:
Ministarstvo prosvete, nauke i tehnološkog razvoja Republike Srbije (institucija: Institut za povrtarstvo, Smederevska Palanka) (MPNTR - 451-03-68/2020-14/200216)

Ključne reči: kupus glavičar; uljana repica; vernalizacija; rok setve; prinos semena; prezimljavanje
Sažetak
Ekspresija gena koji indukuju transformaciju meristema u reproduktivni stadijum kod uljane repice ostvaruje se u uslovima niskih pozitivnih temperatura u izvesnom trajanju. Takav proces cvetanja naziva se vernalizacioni put. U Institutu za povrtarstvo iz Smederevske Palanke postavljen je četvorofaktorski poljski ogled sa 6 genotipova kupusa glavičara, od kojih su tri roditeljska genotipa divergentna po geografskom poreklu: Scc, B i N, a od njih je dialelnim ukrštanjem selekcionisano još tri F1 hibrida: Scc x B, Scc x N, i B x N. U cilju postizanja različitog vegetativnog stadijuma rasada, setva je vršena u tri roka setve: 15. avgust, 1. septembar i 15. septembar. Rasađivanje je vršeno 20. oktobra. Rezultat setve kupusa glavičara u roku setve za uljanu repicu bila je indukcija cvetnog mehanizma, izostanak fenofaze formiranja glavice i realizacija stabilnog prinosa semena. Ogled je postavljen in vivo u kontrolnoj verziji i u tretmanu giberelinskom kiselinom - GA3. Uticaj sva četiri faktora: sezone, genotipa, roka setve i tretmana GA3 pokazao je statističku značajnost na osobine komponente prinosa, kao i sam prinos i kvalitet semena. Tri sezone u kojima je ogled evaluiran bile su temperaturno različite u periodu prezimljavanja: 2010/2011 je bila umereno hladna, 2011/2012 je bila izrazito hladna, dok je 2012/2013 bila topla. U temperaturno hladnoj sezoni prinos semena bio je nizak, sveden na biološko održavanje vrste, dok je najveći prinos semena ostvaren u trećoj - toploj (2012/2013) sezoni istraživanja u prvom roku setve. Ogled je potvrdio i postojanje identičnog cvetnog mehanizma kod vrsta Brassica napus L. i Brassica oleracea var. capitata L.
Reference
Adzić, S., Girek, Z., Pavlović, N., Zdravković, J., Cvikić, D., Pavlović, S., Prodanović, S. (2013) Vernalization and seed yield of late head cabbage in different phases of rosette development by applying GA3 in vivo. Acta Horticulturae, 1005(1005): 369-374
Akter, A., Itabashi, E., Kakizaki, T., Okazaki, K., Dennis, E.S., Fujimoto, R. (2021) Genome triplication leads to transcriptional divergence of flowering locus c genes during vernalization in the genus Brassica. Frontiers in Plant Science, 11: 619417-619417
Antoniou-Kourounioti, R.L., Zhao, Y., Dean, C., Howard, M. (2021) Feeling every bit of winter: Distributed temperature sensitivity in vernalization. Frontiers in Plant Science, 12: 628726
Baghdadi, H., Tespinar, S., Yousefi, M., Hosseinpour, A. (2012) Influence of different sowing dates on grain yield of canola (B. napus) cultivars in Qazvin area. International Journal of Agriculture, 2(S): 1092-1096
Bastow, R., Mylne, J.S., Lister, C., Lippman, Z., Martienssen, R.A., Dean, C. (2004) Vernalization requires epigenetic silencing of FLC by histone methylation. Nature, 427(6970): 164-167
Burn, J.E., Bagnall, D.J., Metzger, J.D., Dennis, E.S., Peacock, W.J. (1993) DNA methylation, vernalization, and the initiation of flowering. Proceedings of the National Academy of Sciences, 90(1): 287-291
Clarke, J.H., Dean, C. (1994) Mapping FRI, a locus controlling flowering time and vernalization response in Arabidopsis thaliana. Molecular and General Genetics MGG, 242(1): 81-89
Galiba, G., Quarrie, S.A., Sutka, J., Morgounov, A., Snape, J.W. (1995) RFLP mapping of the vernalization (Vrn1) and frost resistance (Fr1) genes in chromosome 5A of period on global gene expression and the transcription of flowering-control genes in Citrus wheat. Theoretical and Applied Genetics, 90: 1174-1179
Gauch, H.G. (1988) Model selection and validation for yield trials with interaction. Biometrics, 44, 705-715
Hayes, P.M., Liu, B.H., Knapp, S.J., Chen, F., Jones, B., Blake, T., Franckowiak, J., Rasmusson, D., Sorrells, M., Ullrich, S.E., Wesenberg, D., Kleinhofs, A. (1993) Quantitative trait locus effects and environmental interaction in a sample of North American barley germplasm. Theoretical and Applied Genetics, 87(3): 392-401
Johanson, U.J., West, J., Lister, C., Michaels, S., Amasino, R., Dean, C. (2000) Molecular analysis of Frigida, a major determinant of natural variation in Arabidopsis flowering time. Science, 290(5490): 344-347
Johnson, G. (2011) Bolting in spring-planted vegetables. u: Field Observations from Southern Maryland, 2(4), 3
Kacsperska, P. (1987) Cold hardiness and freezing stress. Plant, 139-153
Kim, D.H., Doyle, M.R., Sung, S., Amasino, R.M. (2009) Vernalization: Winter and the timing of flowering in plants. Annual Review of Cell and Developmental Biology, 25(1): 277-299
Kole, C., Thrman, C.E., Karlsson, B.H., Palta, J.P., Gaffney, P., Yandell, B., Osborn, T.C. (2002) Comparative mapping of loci controlling winter survival and related traits in oilseed Brassica rapa and Brassica napus. Molecular Breeding, 9: 201-210
König, R., Combrink, N.J.J. (2002) The influence of exogenous gibberellic acid treatments on the relative pith length of witloof chicory (Cichorium intybus L.). South African Journal of Plant and Soil, 19(1): 46-47
Koornneef, M., Alonso-Blanco, C., Peeters, A.J.M., Soppe, W. (1998) Genetic control of flowering time in Arabidopsis. Annual Review of Plant Physiology and Plant Molecular Biology, 49(1): 345-370
Koornneef, M., Alonso-Blanco, C., Vreugdenhil, D. (2004) Naturally occurring genetic variation in Arabidopsis thaliana. Annual Review of Plant Biology, 55(1): 141-172
Kudo, G., Nishikawa, Y., Kasagi, T., Kosuge, S. (2004) Does seed production of spring ephemerals decrease when spring comes early?. Ecological Research, 19(2): 255-259
Kumar, P.R., Shiv, K.Y., Sharma, S.R., Lal, S.K., Jha, D.N. (2009) Impact of climate change on seed production of cabbage in North western himalayas. World Journal of Agricultural Sciences, 5(1): 18-26
Lee, I., Bleecker, A., Amasino, R.M. (1993) Analysis of naturally occurring late flowering in Arabidopsis thaliana. Molecular and General Genetics MGG, 237-237(1-2): 171-176
Mahalingam, L., Mahendran, S., Chandra-Babu, R., Atlin, G. (2006) AMMI analysis for stability of grain yield in rice (Oryza sativa L.). International Journal of Botany, 2(2), 104-106
Martinez-Zapater, J.M., Somerville, C.R. (1990) Effect of light quality and vernalization on late-flowering mutants of Arabidopsis thaliana. Plant Physiology, 92(3): 770-776
Michaels, S.D., Amasino, R.M. (1999) Flowering Locus C encodes a novel MADS domain protein that acts as a repressor of flowering. Plant Cell, 11(5): 949-956
Michaels, S.D., Amasino, R.M. (2001) Loss of Flowering Locus C activity eliminates the late-flowering phenotype of Frigida and autonomous pathway mutations but not responsiveness to vernalization. Plant Cell, 13, 935-942
Michaels, S.D., Bezerra, I.C., Amasino, R.M. (2004) Frigidarelated genes are required for the winter-annual habit in Arabidopsis. Proceedings of the National Academy of Sciences, 101(9): 3281-3285
Mirecki, N. (2005) The influence of planting date on growth rate of Brussels sprouts (Brassica oleracea var. gemmifera) in agro-ecological conditions of the Zeta plain. Acta agriculturae Serbica, vol. 10, br. 20, str. 47-57
Mobin, M., Rahman, H., Khan, A.N. (2007) Timing of GA3 application to Indian mustard (Brassica juncea L.): Dry matter distribution, growth analysis and nutrient uptake. Journal of Agronomy, 6(1), 53-60
Nagarahu, U. (1935) Genomic analysis in Brassica with special reference to the experimental formation of B. napus and peculiar mode of fertilization. Japanese Journal Botany, 7: 39-452
Naveed, M., Nadeem, M., Islam, N. (2007) AMMI analysis of some upland cotton genotypes for yield stability in different milieus. World Journal of Agricultural Sciences, 3(1): 39-44
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(3): 1123-1129
Palta, J.P., Staler, H.T., Murphy, J.P. (1992) Mechanisms for obtaining freezing stress resistance in herbaceous plants. u: Plant Breeding in the '90s, Wallingford, England: CAB International, 219-250
Pan, A., Hayes, P.M., Chen, F., Chen, T.H.H., Blake, T., Wright, S., Karsai, I., Bedo, Z. (1994) Genetic analysis of the components of winterhardiness in barley (Hordeum vulgare L.). Theoretical and Applied Genetics, 89-89(7-8): 900-910
Parkin, I.A.P., Sharpe, A.G., Keith, D.J., Lydiate, D.J. (1995) Identification of the A and C genomes of amphidiploidBrassica napus(oilseed rape). Genome, 38(6): 1122-1131
Poduska, B., Humphrey, T., Redweik, A., Grbić, V. (2003) The synergistic activation of Flowering Locus C by Frigida and a new flowering gene Aerial Rosette underlies a novel morphology in Arabidopsis. Genetics, 163(4): 1457-1465
Sandile-Manzi, N. (2016) The effect of low temperature on growth and bolting of cabbage (Brassica oleracea var. capitata L.). University of Pretoria-Faculty of Natural and Agricultural Sciences-Horticulture, Submitted in partial fulfilment of the requirements for the degree MSc (Agric)
Schiessl, S. (2020) Regulation and subfunctionalization of flowering time genes in the allotetraploid oil crop Brassica napus. Frontiers in Plant Science, 11, 605155
Storlie, E.W., Allan, R.E., Simmons, M.K. (1998) Effect of the Vrn1-Fr1 interval on cold hardiness levels in nearisogenic wheat lines. Crop Science, 38(2): 483-488
Sung, S., Amasino, R.M. (2004) Vernalization in Arabidopsis thaliana is mediated by the PHD finger protein VIN3. Nature, 427(6970): 159-164
Zhang, H., van Nocker, S. (2002) The vernalization independence 4gene encodes a novel regulator of flowering locus C. Plant J, 31(5): 663-673
Zhiyuan, F., Wang, X., Dongyu, Q., Guangshu, L. (1999) Hybrid seed production in cabbage. Journal of New Seeds, 1(3-4): 109-129
Zobel, R.W., Wright, M.J., Gauch, H.G. (1988) Statistical analysis of a yield trial. Agronomy Journal, 80(3): 388-393
 

O članku

jezik rada: engleski
vrsta rada: neklasifikovan
DOI: 10.5937/AASer2355003A
primljen: 22.07.2022.
prihvaćen: 15.12.2022.
objavljen u SCIndeksu: 21.07.2023.
Creative Commons License 4.0

Povezani članci

Nema povezanih članaka