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Plant Growth-Promoting Rhizobacteria (Pgpr) Increase Yield, Growth And Nutrition Of Strawberry Under High-Calcareous Soil Conditions
Scopus
Toplam 123 atıf DOI
Plant growth promoting effects of Alcaligenes 637Ca, Staphylococcus MFDCa-1, MFDCa-2, Agrobacterium A18, Pantoea FF1 and Bacillus M3 were tested on strawberry cv. 'Aromas' based on yield, number, and weight of fruit, leaf area, vitamin C, total soluble solids (TSS), acidity and ionic composition of leaves under calcareous soil conditions. The results demonstrated that all of bacterial treatments significantly affected all parameters tested. The best result was obtained from 637Ca treatment, which significantly increased fruit yield, number and weight about 47.5, 34.7, and 9.4%, respectively, compared to control. Except for magnesium (Mg) and zinc (Zn) in the leaf, the concentrations of all plant tissue nutrients [nitrogen (N), phosphorus (P), potassium (K), calcium (Ca), iron (Fe), copper (Cu), manganese (Mn), boron (B)] were significantly increased by bacterial treatments tested. The data in the present study showed that all bacterial treatments including Alcaligenes 637Ca, Staphylococcus MFDCa-1, MFDCa-2, Agrobacterium A18, Pantoea FF1, and Bacillus M3 to strawberry plants can ameliorative the deleterious effect of high lime on fruit yield, growth and nutrition. These results suggested that plant growth-promoting Rhizobacteria (PGPR) treatments could be offer an economic and simple means to increased plant resistance for high calcareous soil conditions. 2014 © Taylor & Francis Group, LLC.
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Comparative analysis of the relationship between morphological, physiological, and biochemical properties in spinach (Spinacea oleracea l.) under deficit irrigation conditions
Scopus
Havuzumuzda Open Access 38 atıf almış
Drought is an abiotic stress factor that negatively affects plant development and causes economic losses in plant production, and its effect is getting significant every day. Spinach contains a high amount of water and drought stress affects its development as well as causing changes in its biochemical contents. In this study, it is aimed to determine the changes in the morphological, physiological, and biochemical contents of spinach grown under deficit irrigation conditions in different stages of development. For this purpose, by considering five different irrigation levels (I100, I80, I60, I40, and I20 ), and 4 harvest times determined according to the development periods of spinach, a total of 20 experiment units were designed with 3 replications in a completely randomized experimental design. Growth parameters were negatively affected by severe deficit irrigations such as I20 and I40 . While the deficit irrigation caused a decrease in the relative water content (RWC), protein, and chlorophylls a and b, it increased membrane damage and carotenoid content. Furthermore, deficit irrigations have shown significant increases in proline, hydrogen peroxide, malondialdehyde, superoxide dismutase, catalase, and peroxidase. When different irrigation levels and different harvest periods were evaluated together, water use efficiency (WUE) values ranged between 2.31 and 5.02 g/L, and the highest WUE value was obtained at the I40 irrigation level and harvest III. As a result of the principal component analysis conducted to evaluate all the data obtained from the trial subjects together, the most important parameters explaining the effect of harvest time and deficit irrigation together were underground fresh weight, number of leaves, hydrogen peroxide, and peroxidase. Consequently, considering the growth parameters, the I100 irrigation level without deficit irrigation and the I80 irrigation level with mild water stress resulted in considerable outputs, especially in the harvests III and IV.
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Kurumlar (1)
Selçuk Üniversitesi
Selçuklu, Turkey