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2014 | 17 | 2 |

Tytuł artykułu

Dynamics and distribution of dry matter and total nitrogen in yellow lupine (Lupinus luteus L.) plants

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Wydawca

-

Rocznik

Tom

17

Numer

2

Opis fizyczny

http://www.ejpau.media.pl/volume17/issue2/art-04.html

Twórcy

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

Bibliografia

  • 1. Ayaz S., McKenzie B.A., Hill G.D., McNeil D.L., 2004. Nitrogen distribution in four grain legumes. J. Agr. Sci., 142, 309–317.
  • 2. Ayisi K.K., Putnam D.H., Vance C.P., Graham P.H., 1992. Dinitrogen fixation, nitrogen and dry matter accumulation, and nodulation in white lupine. Crop Sci., 32(5), 1197–1202.
  • 3. Barłóg P., 2000. Wpływ współdziałania kizerytu i nawozów azotowych na zawartość i dynamikę pobierania magnezu i azotu przez łubin wąskolistny [The effect of kieserite and nitrogen fertilizers on the content and dynamics of the uptake of magnesium and nitrogen by blue lupin]. Rocz. AR Poznań, CCCXX, Rolnictwo, 75, 129–138 [in Polish].
  • 4. Begum A.A., Leibovitch S., Migner P., Zhang F., 2001. Specific flavonoids induced nod gene expression and pre-activated nod genes of Rhizobium leguminosarum increased pea (Pisum sativum L.) and lentil (Lens culinaris L.) nodulation in controlled growth chamber environment. J. Exp. Bot., 52 (360), 1537–1543.
  • 5. Chaillou S., Morot-Gaudry J.F., Lesaint C., Salsac L., Jolivet E., 1986. Nitrate or ammonium nutrition in French bean. Plant and Soil, 91(3), 363–365.
  • 6. Ciesiołka D., Muzquiz M., Burbano C., Altares P., Pedrosa M.M., Wysocki W., Folkman W., Popenda M., Gulewicz K., 2003. Ocena wpływu różnych form azotu na plon oraz skład chemiczny nasion łubinu białego (Lupinus albus L.) [Evaluation of the effect of different forms of nitrogen on the yield and chemical composition of white lupin seeds (Lupinus albus L.)]. Zesz. Probl. Post. Nauk Rol., 495, 327–336 [in Polish].
  • 7. D’Agostina A., Boschin G., Resta D., Annicchiarico P., Arnoldi A., 2008. Evolution of isoflavones during the growth of plants of Lupinus albus. Proc. of the 12th Int. Lupin Conf. Lupins for health and wealth. Eds. J.A. Palta and J.B. Berger. Fremantle. Western Australia, 401–404.
  • 8. Evans G.C., 1972. The quantitative analysis of plant growth. Univ. California Press, 734.
  • 9. Fan X.H., Tang C., Rengel Z., 2002. Nitrate uptake, nitrate reductase distribution and their relation to proton release in five nodulated grain legumes. Ann. Bot., 90, 315–323.
  • 10. Flynn R., Ball S.T., Baker R.D., 1999. Sampling for plant tissue analysis. Crop Ext. Service, Guide A-123, New Mexico State University.
  • 11. Gastal F., Lemaire G., 2002. N uptake and distribution in crops: an agronomical and ecophysiological perspective. J. Exp. Bot., 53(370), 789–799.
  • 12. Greenwood D., Lemaire G., Gosse G., Cruz P., Draycott A., Neeteson J.J., 1990. Decline in percentage N of C3 and C4 crops with increasing plant mass. Ann. Bot., 66, 425–436.
  • 13. Jarecki W., Bobrecka-Jamro D., 2012. Reaction of white lupine (Lupinus albus L.) to seed inoculation with nitragina. Acta Sci. Pol., Agricultura, 11(2),19–26.
  • 14. Księżak J., 2002. Dynamika gromadzenia składników pokarmowych w organach tradycyjnych i samokończących odmian bobiku w okresie od kwitnienia do dojrzałości pełnej [Dynamics of accumulating nutrients in organs of conventional and self-completing cultivars of faba bean in the period from flowering to full maturity]. IUNG Puławy, Monografie i Rozprawy Nauk., 5, 1–95 [in Polish].
  • 15. Lemaire G., Avice J.C., Kim T.H., Ourry A., 2005. Developmental changes in shoot N dynamics of lucerne (Medicago sativa L.) in relation to leaf growth dynamics as a function of plant density and hierarchical position within the canopy. J. Exp. Bot., 56 (413), 935–943.
  • 16. Luciński, R., Polcyn, W., Ratajczak, L., 2002. Nitrate reduction and nitrogen fixation in symbiotic association Rhizobium-legumes. Acta Bioch. Pol., 49 (2), 537–546.
  • 17. Merbach W., Danz F., Beschow H., Deubel A., Gans W., Ruppel S., 2008. Effect of nitrogen and Rhizobium inoculation on yield and biological fixation of blue lupins (Lupinus angustifolius L. Proc. 12th Int. Lupin Conf. Lupin for health and wealth. Eds. J.A. Palta i J.B. Berger. Fremantle, Western Australia, 391–395.
  • 18. Pan B., Smith D.L., 2000. Preincubation of B. japonicum cells with genistein reduces inhibitory effect of mineral nitrogen on soybean nodulation and nitrogen fixation under field conditions. Plant and Soil, 223, 235–242.
  • 19. Pan B., Vessey J.K., Smith D.L., 2002. Response of field-grown soybean to co-inoculation with the plant growth promoting rhizabacteria Serratia proteamaculans or Serratia liquefaciens, and Bradyrhizobium japonicum pre-incubated with genistein. E. J. Agron., 17, 143–153.
  • 20. Polska Norma, PN-R-04028, 1997. Analiza chemiczna gleby. Metoda pobierania próbek i oznaczania zawartości jonów azotanowych i amonowych w glebach mineralnych [Chemical analysis of soil. Method of sampling and determining the content of nitrate and ammonium ions in mineral soils] PKN. Dokument normalizacyjny przeznaczony do celów edukacyjnych [in Polish].
  • 21. Prusiński J., 2005. Dynamika gromadzenia świeżej i suchej masy oraz azotu przez rośliny tradycyjnej i samokończącej odmiany łubinu żółtego (Lupinus luteus L.) [Dynamics of accumulating fresh and dry matter as well as nitrogen by plants of conventional and self-completing cultivars of yellow lupin (Lupinus luteus L.)]. Acta Sci. Pol., Agricultura, 4(2), 57–72 [in Polish].
  • 22. Prusiński J., Borowska M., Kaszkowiak E., 2012. Effect of Nmin content on nodulation in yellow lupin (Lupinus luteus L.) plants in the presence of Bradyrhizobium lupini and genistein. JCEA (in press).
  • 23. Starck Z., 2008. Stresy wynikające z nieprawidłowego odżywiania roślin azotem [Stress resulting from the improper nourishment of plants with nitrogen]. PNR, 1, 27–42.
  • 24. Tang C., Unkovich M.J., Bowden J.W., 1999. Factors affecting soil acidification under legumes. III. Acid production by N2-fixing legumes as influenced by nitrate supply. New Phytologist, 143(3), 513–521.
  • 25. Vessey J.K., 1992. Cultivar differences in assimilate partitioning and capacity to maintain N2 fixation rate in pea during pod-filling. Plant and Soil, 139(20), 185–194.
  • 26. Voisin A.S., Salon Ch., Munier-Jolain N.G., Ney B., 2002a. Effect of mineral nitrogen on nitrogen nutrition and biomass partitioning between the shoot and roots of pea (Pisum sativum L.). Plant and Soil, 242(2), 251–262.
  • 27. Voisin A.S., Salon Ch., Munier-Jolain N.G., Ney B., 2002b. Quantitative effects of soil nitrate, growth potential ad phenology on symbiotic nitrogen fixation of pea (Pisum sativum L.). Plant and Soil, 243(1), 31–42.
  • 28. Wojcieska U., 1993. Żywienie roślin azotem a przyrosty masy i przebieg wybranych procesów fizjologicznych [Nourishing plants with nitrogen versus weight increase, and the course of physiological processes] Fragm. Agron., 4, 173–174 [in Polish].

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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