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2014 | 17 | 3 |

Tytuł artykułu

Effect of long-term apple-tree cultivation and cultural practices in the orchard after replantation on the contents of indole-3-acetic acid and chemical compounds

Autorzy

Wydawca

-

Rocznik

Tom

17

Numer

3

Opis fizyczny

http://www.ejpau.media.pl/volume17/issue3/art-05.html

Twórcy

autor
  • Institute for Agricultural and Forest Environment, Polish Academy of Sciences, Bukowska 19, 60-809 Poznan, Poland

Bibliografia

  • 1. Arshad M., Frankenberger W.T.Jr., 1991. Microbial production of plant hormones. Plant and Soil, 133, 1–8.
  • 2. Aslantas R., Çakmakçi R., Şahin F., 2007. Effect of plant growth promoting rhizobacteria on young apple tree growth and fruit yield under orchard conditions. Sci. Hortic., 111, 371–377.
  • 3. Bednarek W., Reszka R., 2007. Effect of liming and fertilization with nitrogen on the physicochemical properties of soil. Acta Agrophys., 10(3), 523–531.
  • 4. Bielińska E.J., Domżał H., 1998. Dynamika różnych form azotu w glebie użytkowanej sadowniczo. [The dynamics of different forms of nitrogen in the soil for use of orchard]. Roczn. Glebozn., 49, 31–39 [in Polish].
  • 5. Cartes P., Jara A.A., Demanet R. and de la Luz Mora M., 2009. Urease activity and nitrogen mineralization kinetics as affected by temperature and urea input rate in southern Chilean and isoils. J. Soil Sc. Plant Nutr., 9(1), 69–82.
  • 6. Ciećko Z., Wyszkowski M., Szagała J., 1996. Wpływ 4-letniego stosowania mineralnych nawozów azotowych na zawartość N-NH4+ i N-NO3– w glebach. [Effect of 4–year–old use of mineral nitrogen fertilizers on the content of N-NH4+ and N-NO3– in soils]. Zesz. Probl. Post. Nauk Roln., 440, 27–33 [in Polish].
  • 7. Czekała J., Blecharczyk A., Jakubas M., 1995. Działanie nawożenia organicznego i mineralnego na plonowanie żyta ozimego i związki próchniczne w glebie w zmianowaniu i monokulturze. [Action of organic and mineral fertilization on the yielding of winter rye and humus compounds in soil, in crop rotation and in monoculture]. Zesz. Probl. Post. Nauk Roln., 421a, 47–53 [in Polish].
  • 8. Dechnik I., Wiater J., 1996. Dynamika azotu azotanowego w glebie podmonokulturą pszenicy. [The dynamics of nitrate nitrogen in the soil under monoculture wheat]. Zesz. Probl. Post. Nauk Roln., 440, 75–80 [in Polish].
  • 9. Gonet S.S., Dębska B., Pakuła J., 2002. Zawartość rozpuszczonego węgla organicznego w glebach i nawozach organicznych. [Content of dissolved organic carbon in soils and organic fertilizers]. Wrocław, 1–75 [in Polish].
  • 10. Dou F., Wright A.L., Hons F.M., 2007. Depth distribution of soil organic C and N after long-term soybean cropping in Texas. Soil Till. Res., 94, 530–536.
  • 11. Gregorich E.G., Berea M.H. Stoklas U., Georges P.St., 2003. Biodegradability of soluble organic matter in maize-cropped soils. Geoderma, 113, 237–252.
  • 12. Halda-Alija L., 2003. Identification of indole-3-acetic acid producing freshwater wetland rhizosphere bacteria associated with Juncus effusus L. Can. J. Microbiol., 49, 781–787.
  • 13. Janowiak J., 1995. Wpływ nawożenia obornikiem z dodatkiem słomy i zróżnicowanych dawek azotu na właściwości materii organicznej. [Effect of manure fertilization with an addition of straw and differentiated doses of nitrogen on the properties of organic matter]. Zesz. Probl. Post. Nauk Roln., 421a, 145–150 [in Polish].
  • 14. Kalbitz K., Solinger S., Park J.H., Michalzik B., Matzner E., 2000. Control on the dynamics of dissolved organic matter in soils: a review. Soil Sci., 165, 277–304
  • 15. Kamnev A.A., Shchelochkov A.G., Perfiliev Yu.D., Tarantilis P.A., Polissiou M.G., 2001. Spectroscopic investigation of indole-3-acetic acid interaction with iron (III). J. Mol. Struct., 563/564, 565–572.
  • 16. Marschner B., Bredow A., 2002. Temperature effects on release and ecologically relevant properties of dissolved organic carbon and biologically active soil samples. Soil Biol. Biochem., 34, 459–466.
  • 17. Marschner B., Noble A.D., 2000. Chemical and biological processes leading to the neutralization of acidity in soil incubated with litter materials. Soil Biol. Biochem., 32, 805–813.
  • 18. Martinez–Morales L.J., Soto–Urzúa L.S., Baca B.E., Sánchez–Ahèdo J.A., 2003. Indole-3-butyric acid (IBA) production in culture medium by wild strain Azospirillum brasilense. FEMS Microbiol. Lett., 8, 167–173.
  • 19. Myśków W., Jaszczewska B., Stachyra A., Naglik E., 1986. Substancje organiczne gleby – ich rolnicze i ekologiczne znaczenie. [Organic substances of soil – their agricultural and ecological importance]. Roczn. Glebozn., 37, 15–35 [in Polish].
  • 20. Nardi S., Morari F., Berti A., Tosoni M., Giardini L., 2004. Soil organic matter properties after 40 years of different use of organic and mineral fertilizer. Eur. J. Agron., 21, 357–367.
  • 21. Olsson M.O., Falkengren-Grerup U., 2000. Potential nitrification as an indicator of preferential uptake of ammonium or nitrate by plants in an oak woodland understorey. Ann. Botan., 85, 299–305.
  • 22. Pacholak E., Zydlik Z., Rutkowski K., 2011. Effect of cherry nitrogen fertilization on the content of mineral in the leaves and soil. Acta Sci. Pol., Hortorum Cultus 10(1), 105–112.
  • 23. Paul E.A., Clark F.E., 2000. Mikrobiologia i biochemia gleb. [Microbiology and soil biochemistry]. University of Maria Curie-Skłodowska, Lublin, Poland [in Polish].
  • 24. Peralta J.M., Stockle C.O., 2001. Dynamics of nitrate leaching under irrigated potato rotation in Washington State: a long-term simulation study. Agric Ecosyst., 88, 23–34.
  • 25. Potila H., Sarjala T., 2004. Seasonal fluctuation in microbial biomass and activity along a natural nitrogen gradient in a drained peatland. Soil Biol. Biochem., 36, 1047–1055.
  • 26. Rumberger A., Merwin I.A., Thies J.E., 2007. Microbial community development in the rhizosphere of apple trees at a replant disease site. Soil Biol. Biochem., 39, 1645–1654.
  • 27. Rutkowski K., Pacholak E., Zydlik Z., 2006. Effect of soil fatigue prevention methods on microbiological soil status in replanted apple-tree orchard. Part II. Number of bacteria. EJPAU, Hort., 9(4), 57, Available Online: http://www.ejpau.media.pl/volume9/issue4/art-57.html.
  • 28. Sarwar M., Arshad M., Martens D.A., Frankenberger W.T.Jr., 1992. Tryptophan-dependent of auxins in soil. Plant and Soil, 147, 207–215.
  • 29. Smolander A., Kitunen V., 2002. Soil microbial activities and characteristics of dissolved organic C and N in relation to tree species. Soil Biol. Biochem., 34, 651–660.
  • 30. Szajdak L.W., Gaca W., Meysner T., Styła K., Maryganova V., 2011. Enzymes activity and IAA contents in soils. In: Narwal S.S., Pavlovic P., Jacob J. (Eds.), Research methods in plant sciences. Vol. 2. Forestry and agroforestry, Studium Press Houston, Texas LLC. USA. pp. 300.
  • 31. Szajdak L., Maryganowa V., 2009. Impact of age and composition of shelterbelts plant on IAA content as allelochemical in soils. Allelopathy J. 23(2), 461–468.
  • 32. Szczygieł A., 2003. Zmęczenie gleby w sadzie. Cz. 1. [Soil fatigue in orchard. Part I.] Owoce Warzywa Kwiaty, l3, 16–17 [in Polish].
  • 33. Szczygieł A., Zepp A.L., 1998. An occurrence and importance of apple replant disease in Polish orchard. Acta Hort., 477, 99–101.
  • 34. Utkhede R.S., 1998. Influence of cultural practices on the growth and yield of young apple trees planted in replant disease soil. Acta Hort., 477, 27–38.
  • 35. Utkhede R.S., Smith T.J., 1994. Biotic and abiotic causes of replant problem of fruit trees. Acta Hort., 363, 25–32.
  • 36. Van Schoor L., Denman S., Cook N.C., 2009. Characterization of apple replant disease under South African conditions and potential biological management strategies. Sci. Hort., 119, 153–162.
  • 37. Wüst R.A.J., Bustina R.M., Lavkulich L.M., 2003. New classification systems for tropical organic-rich deposits based on studies of the Tasek Bera Basin, Malaysia. Catena, 53, 133–163.
  • 38. Yao H., Bowman D., Rufty T., Shi W., 2009. Interactions between N fertilization, grass clipping addition and pH in turf ecosystems: Implications for soil enzyme activities and organic matter decomposition. Soil Biol. Biochem., 41, 1425–1432.
  • 39. Zydlik Z., 2013. Effect of biological preparations on the growth of strawberries cultivated in a sick soil. EJPAU, Hort., 16(4), 9, Available Online: Available Online: http://www.ejpau.media.pl/volume16/issue4/art-09.html.
  • 40. Zydlik Z., Pacholak E., 2004. Wpływ nawożenia i nawadniania na stan mikrobiologiczny gleby z replantowanego sadu jabłoniowego. Cz. III. Liczebność grzybów i promieniowców. [Effect of fertilization and irrigation on soil microorganisms in a replanted apple orchard. Part III. Numbers of fungi and actinomycetes]. Prace Kom. Nauk Roln. i Leśn. PTPN, 97, 317–324 [in Polish].

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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