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Effects of plant growth promoting rhizobacteria (PGPR) on yield, growth and nutrient contents in organically growing raspberry
Scopus
Toplam 268 atıf DOI
During 2003 and 2005, plant growth promoting effects of two Bacillus strains OSU-142 (N2-fixing) and M3 (N2-fixing and phosphate solubilizing) were tested alone or in combinations on organically grown primocane fruiting raspberry (cv. Heritage) plants in terms of yield, growth, nutrient composition of leaves and variation of soil nutrient element composition in the province of Erzurum, Turkey. The results showed that Bacillus M3 treatment stimulated plant growth and resulted in significant yield increase. Inoculation of raspberry plant roots and rhizosphere with M3 and/or OSU-142 + M3, significantly increased yield (33.9% and 74.9%), cane length (13.6% and 15.0%), number of cluster per cane (25.4% and 28.7%) and number of berries per cane (25.1% and 36.0%) compared with the control, respectively. In addition, N, P and Ca contents of raspberry leaves with OSU-142 + M3 treatment, and Fe and Mn contents of the leaves of raspberry with M3 and OSU-142 + M3 applications significantly improved under organic growing conditions. Bacterial applications also significantly effected soil total N, available P, K, Ca, Mg, Fe, Mn, Zn contents and pH. Available P contents in soil was determined to be increased from 1.55 kg P2O5/da at the beginning of the study to 2.83 kg P2O5/da by OSU-142, to 5.36 kg P2O5/da by M3 and to 4.71 kg P2O5/da by OSU-142 + M3 treatments. The results of this study suggest that Bacillus M3 alone or in combination with Bacillus OSU-142 have the potential to increase the yield, growth and nutrition of raspberry plant under organic growing conditions. © 2006 Elsevier B.V. All rights reserved.
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Effects of Some Plant Growth-Promoting Rhizobacteria (PGPR) on Growth and Nutrition of Apple Cv. “Braeburn” under High Lime Soil Condition
Scopus
Havuzumuzda 7 atıf almış
Calcareous soil may limit plant growth depending upon plant nutrient uptake. The change of apoplastic pH and deficiency of nutrients in high lime soils negatively affects plant growth with chlorophyll synthesis, root growth, enzyme synthesis. To overcome this abiotic stress, control (non-inoculated) and six bacterial strains; Alcaligenes 637Ca, Agrobacterium A18, Staphylococcus MFDCa1, Staphylococcus MFDCa2, Bacillus M3, and Pantoea FF1 were inoculated one-year-old apple saplings grafted on M9 and MM106. The M3, MFDCa1, FF1, and MFDCa2 strains were found to have the largest leaf area on M9 rootstock, while 637Ca had the smallest leaf area on MM106 rootstock. In the stem diameter, A18 and MFDCa1 were measured lower in M9 rootstock, while MFDCa1 and control were found lower in MM106 rootstock. The shortest shoot was determined in MFDCa2 on MM106 rootstock, while the FF1, M3, and control were found tallest shoot on M9 rootstock. For plant nutrition, all bacterial treatments were found higher than the control in both macronutrients and micronutrients. While the content of the N, P, Ca, and Cu was found highest in MM106 rootstock, K, Mg, Mn, Zn, and B were determined the highest on M9 rootstock. The FF1 and M3 bacteria strains were commonly determined to have the highest contents of the N, P, K, Mg, and Ca on M9 rootstock. As a result, bacterial strains used in the present study have an important potential to increase plant growth and to be used as a biofertilizer for Braeburn apple cultivar on M9 and MM106 under lime soil conditions.
Atıf Yapan Makale Bilgileri
Kurumlar (3)
Iğdır Üniversitesi
Igdir, Turkey
Selçuk Üniversitesi
Selçuklu, Turkey
Yeditepe University
Istanbul, Turkey