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2011 | 14 | 2 |

Tytuł artykułu

Proposals of new solutions in legumes production

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Wydawca

-

Rocznik

Tom

14

Numer

2

Opis fizyczny

http://www.ejpau.media.pl/volume14/issue2/art-14.html

Twórcy

autor
  • Department of Plant Cultivation, University of Technology and Life Sciences in Bydgoszcz, Kordeckiego 20, 85-225 Bydgoszcz, Poland

Bibliografia

  • 1. Adhikari K., Buirchell B., Sweetingham M., 2008. Effect of verbalization on various lupin species at different time intervals. Proc. 12th Inter. Lupin Conf., Fremantle, Australia, 387–390.
  • 2. Andrzejewska J., Marciniak J., Skinder Z., Skotnicka E., 2005. Wartość gospodarcza ozimych rodów hodowlanych grochu siewnego (Pisum sativum L.) w warunkach regionu kujawsko-pomorskiego [Economy value of winter field pea strains under Kujawy and Pomorze Province conditions]. Acta Sci. Pol., Agricultura 4(1), 5–15 [in Polish].
  • 3. Annicchiarico P., Carroni A., Iannucci A., 2004. Yields of cultivars of protein crops in Mediterranean area. Informatore Agrario 60(39), 63–66.
  • 4. Annicchiarico P., Iannucci A., 2007. Winter survival of pea, faba bean and white lupin cultivars in contrasting Italian locations and sowing times, and implications for selection. J. Agr. Sci. 145(6), 611–622.
  • 5. Anonim, 2010. PRP EBV – Fizjostymulant funkcji życiowych rośliny [Physio-stimutant of plant life function]. PRP Polska, www.prp-technologies.pl [in Polish].
  • 6. Bartkowiak A., Startek L., 2003. Otoczkowanie organów roślinnych stosowanych do reprodukcji (rozmnażanie generatywne i wegetatywne) i hodowli w celu zabezpieczenia ich przed negatywnymi skutkami bezpośredniego kontaktu ze środowiskiem [Pelleting of plant organs used for reproduction (generative and vegetative) and breeding to protect them from negative effects of direct contact with environment]. Zasoby technologiczne województwa zachodniopomorskiego. Oferta 24 [in Polish].
  • 7. Bourion V., Lejeune-Henaut I., Minier-Jolain N., Salon Ch., 2003. Cold acclimatization of winter and spring peas: carbon partitioning as affected by light intensity. Europ. J. Agr. 19(4), 535–548.
  • 8. Bozoglu H., Peksen E., Peksen A., Gulumser A., 2007. Determination of the yield performance and harvesting periods of fifteen pea (Pisum sativum L.) cultivars sown in autumn and spring. Pak. J. Bot. 39(6), 2017–2025.
  • 9. Brandseter L.Ol., Olsmo A., Tronsmo A.M., Fykse H., 2002. Freezing resistance of winter annual and biennial legumes at different development stages. Crop Sci. 42, 437–443.
  • 10. Braun H.J., Saulescu N.N., 2002. Breeding winter and facultative wheat. Breed wheat FAO Rome. http://fao.org.//docrep/006/y4011e/y4011e0f.htm
  • 11. Chen C., Miller P., Muehlbauer F., Neill K., Wichman D., McPhee K., 2006. Winter pea and lentil response to seeding date and micro- and macro-environments. Agron. J. 98(6), 1655–1663.
  • 12. Crowley J.G., 1998. Factors affecting the yield of winter lupins. The Science of Farming and Food, Dublin, 1–13.
  • 13. Djinovic I., Marinkovic N., 1988. Winter cultivars of peas for processing. Acta Hort. 220, 97–104.
  • 14. Eteve G., 2006. ISARD, an early, cold-resistant and high-performance winter pea. www.international.inra.fr
  • 15. Firincioglu H.K., Erbektas E., Dogruyol L., Unal S., Mentes O., 2009. Enhanced winter hardiness in common vetch (Vicia sativa L.) for autumn-sowing in the central highlands of Turkey. J. Central Europ. Arg. 10(3), 271–282.
  • 16. Grocholski J., Sowiński J., Kulczycki G., Wardęga S., 2007. Wpływ terminu siewu przewódkowych odmian pszenicy uprawianych na glebie płowo-ilastej na plon i parametry morfologiczne roślin [Effect of sowing date of facultative wheat cultivars on lessive-loamy soil on plant morphological characteristics]. Zesz. Nauk. UP we Wrocławiu, Rolnictwo 560, 7–12 [in Polish].
  • 17. Gurusamy C., Bal A.K., 2001. Biology of over-wintering of perennial root nodules and seed development in beach peas (Lathyrus maritimus L.). Lathyrus Lathyrism Newsletter 2, 72–73 [in Polish].
  • 18. Hebeisen Th., Charles R., 2003. Cultivation of spring peas and winter peas. Agrarforschung Schweitz 10, 14–19.
  • 19. Huyghe C., Milford F.J., 1997. Why and how have the winter type white lupins been developed? Grain Legumes 16, 13.
  • 20. Hwang D., Sung F.J.M., 1991. Prevention of soaking injury in edible soybean seed by ethyl cellulose coating. Seed Sci. Technol. 19, 269–278.
  • 21. Jankiewicz L. 1997. Retardanty i niektóre inne syntetyczne inhibitory wzrostu oraz wybrane substancje modyfikujące wzrost [Growth retardants and other synthetic growth regulators and chosen substances modifying growth] [In:] Regulatory wzrostu i rozwoju roślin, ed. L. Jankiewicz, PWN Warszawa [in Polish].
  • 22. Jasińska Z., Kotecki A., 1993. Rośliny strączkowe [Legumes]. PWN Warszawa [in Polish].
  • 23. Jendrzejczak E., 2000. Badania nad produkcją nasion brukwi pastewnej metodą bezwysadkową [Research on fodder rutabaga production with seed-to-seed method]. Zesz. Nauk. ATR w Bydgoszczy, Rozprawy 98 [in Polish].
  • 24. Johnson B.L., Petersen P.J., Berti M.T., 2007. Winter pea evaluations in Eastern North Dakota. Issues in new crops and new uses. Eds. J. Janick, A. Whipkey, ASHS Press Alexandria, VA, 204–207.
  • 25. Knott C.M., Belcher S.J., 1998. Optimum sowing dates and plant populations for winter peas (Pisum sativum L.). J. Agric. Sci. 131, 449–454.
  • 26. Kosmala A., 2009. Molekularne podstawy aklimatyzacji roślin do niskich temperatur [Molecular base of plant acclimatization to low temperature]. Post. Nauk Rol. 1, 11–23 [in Polish].
  • 27. Kurlovich B.S., 2002. Lupins: geography, classification, genetic resources and breeding. St. Publ. House Intan, Petersburg.
  • 28. Lejeune-Henaut I., Bourion V., Eteve G., Delhaye K., Desmyter C., 1990. Floral initiation in field-grown forage peas is delayed to a greater extend by short photoperiods, than in other types of European varieties. Euphytica 109, 201–211
  • 29. Lejeune-Henaut I., Muehlbauer F.J., 1997. Resistance to frost for winter grain legumes. Special Report: Autumn-sown varieties. Grain Legumes 16, 18–19.
  • 30. Link W., Balko C., Stoddard F.L., 2008. Winter hardiness in faba bean: physiology and breeding. Field Crop Res. 115(3), 287–296.
  • 31. McPhee K., Miller P., Chen Ch., Muehlbauer F.J., 2004. Adaptation of winter legumes to direct seeding in northern climates. Proc. Europ. Conf. on Grain Legumes, Dijon, France, 55.
  • 32. McPhee K., Muehlbauer F.J., 2007. Registration of Specter winter feed pea. J. Regist. 1(2), 118–119.
  • 33. Meyer D.W., Badaruddin M., 2001. Frost tolerance of ten seedling legumes species at four growth stages. Crop Sci. 41, 1838–1842.
  • 34. Milford G.F.J., Shield I.F., Huyghe C., 1996. The use of physiological criteria to optimize production in white lupins. Proc. 8th Inter. Lupin Conf., Asilomar, California, 2–10.
  • 35. Muehlbauer F.J., 1998. Winter legumes for direct seeding system. U.S. Department of Agriculture, Agricultural research Service and the Department of Crop and Soil Sciences, Washington State University, Pullman, Washington, 1–5.
  • 36. Noffsinger S.L., Huyghe C., Van Santen E., 2000. Analysis of grain-yield components and inflorescence levels in winter-type white lupin. Agron. J. 92, 1195–1202.
  • 37. Peksen E., Peksen A., Bozoglu H., Gulumser A., 2004. Comparison of fresh pod yield related characteristics in pea (Pisum sativum L.) cultivars sown in autumn and spring under Samsun ecological conditions. Turk. J. Agric. 28, 363–370.
  • 38. Poetsch J., 2007. Pflanzenbauliche Untersuchungen zum ökologischen Anbau von Körnerleguminosen an sommertrockenen Standorten Südwestdeutschlands [Agronomic studies on the organic cultivation of legumes in summer dry areas of southwest Germany]. Institut für Pflanzenbau und Grünland, Universität Hohenheim, Dissertation [in German].
  • 39. Prusiński J., 2008. Ozime strączkowe – utopia czy może uzasadniona konieczność? [Winter legumes – utopia or justified necessity?]. Hod. Ros. Nas. 3, 8–11 [in Polish].
  • 40. Prusiński J., 2010. Rośliny strączkowe w Unii Europejskiej [Legumes in EU]. Zesz. Probl. Post. Nauk Rol. 550, 11–20 [in Polish].
  • 41. Prusiński J., Hermann J., Harasimowicz-Hermann G., 2008. Sposób regulacji fizycznego etapu kiełkowania nasion [Method for physical regulation of seed germination]. Zgłoszenie patentowe nr P 384880 [in Polish].
  • 42. Prusiński J., Strychalska A., 2007. Physicochemical properties determining the cooking time of pea (Pisum sativum L.) seeds. Plant Breed. Seed Sci. 55, 19–30.
  • 43. Sharma S.K., Sharma A., 2003. Effect of time planting, soil hydrothermal regimes and some meteorological parameters on the development of Fusarium wilt in autumn pea. Plant Disease Res. 18(2), 127–130.
  • 44. Silim S.N., Hebblethwaite P. D., Heath M.C., 1985. Comparison of the effects of autumn and spring sowing date on growth and yield of combining peas (Pisum sativum L.). J. Agr. Sci. 104, 35–46.
  • 45. Smoliak S., Ditterline R.L., Scheetz J.D., Holzworth L.K., Sims J.R., Wiesner L.E., Baldrige D.E., Tibke G.L., 2006. Montana State University. Publication and Information. Animal and Range Sciences, Extension Service.
  • 46. Spencer C., 2002. Lupins. Springdale Group Synergies Ltd., www.springdale-group.com
  • 47. Sthendahl F., 2005. Seed coating for delayed germination. A tool for relay cropping of annual crops. Swedish University of Agricultural Sciences, Uppsala.
  • 48. Thomashow M.F., 1999. Plant cold acclimatization: freezing tolerance genes and regulatory metabolisms. Annu. Rev. Plant Physiol. Plant Mol. Biology 50, 571–599.
  • 49. Urbatzka P., Gras R., Schuler C., Scheliephake U., Trautz D., Hes J., 2008. Grain yield of different pea genotypes in pure stand and mixed stands. 16th IFOAM Organic World Congress, Modena, Italy.
  • 50. Uzun A., Acikgoz E., 1998. Effect of sowing season and seeding rate on the morphological traits and yields in pea cultivars of differing leaf types. J. Agron. Crop Sci. 181(4), 215–222.
  • 51. Vocanson A., Estrade J.R., Boizard H., Jeuffroy M.H., 2006. Effect of soil structure on pea (Pisum sativum L.) root development according to sowing date and cultivar. Plant and Soil 281(1–2), 121–135.
  • 52. Vocanson A., Jeuffroy M.H., 2005. Agronomic performance of different pea cultivars under various sowing periods and contrasting soil structure. Agron. J. 100(3), 748–759.
  • 53. Wilson D.R., Robson M., 1996. Pea phenology responses to temperature and photoperiod. Proc. the 8th Australian Agronomy Conf.
  • 54. Wspólnotowy katalog odmian roślin rolniczych, 2010. C 337A, Tom 53–29. Pełne wydanie. http://eur-lex.europa.eu/JOHtml.do?uri=OJ:C:2010:337A:SOM:PL: HTML
  • 55. Xiao G., Zhang Q., Wang R., Yao Y., Zhao H., Bai H., Xiong Y., 2009. Effects of temperature increase on pea production in a semiarid region of China. Air, Soil and Water Research 2, 31–39.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.dl-catalog-d34a1a1a-3a15-4a84-914d-bd714ec3f541
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