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      Application of bio and NPK fertilizer to improve yield soybean and acid sulfate soil properties in Indonesia

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          Abstract

          ABSTRACT In Indonesia, soybean (Glycine max (L.) Merr.) is the second most important staple food with low production compared to the demand. This problem can be overcome by using marginal land such as acid sulfate soil of tidal swampland, however, the optimal application of fertilizer in such soil is minimal. Therefore, this study aims to examine the application of fertilizer in acid sulfate soil in South Kalimantan, Indonesia. It was conducted using a split-plot design with three replicates and the main plot was biofertilizer, which consisted of no-biofertilizer (P1); biofertilizer consortium of decomposer fungi, P-solubilizing bacteria, N-fixing bacteria (P2), and biofertilizer consortium of N-fixing bacteria symbiotic and nonsymbiotic, P-solubilizing bacteria and phytohormone-producing bacteria (P3). Meanwhile, the subplot was NPK fertilizer dosage, consisting of no-fertilizer (A1), dose of 150% (A2), dose of 100% (A3), and dose of 50% (A4) of the recommendation. The results showed that the biofertilizer and NPK fertilization dose did not show an interaction with soil pH and Al3+. The highest N and K nutrient uptake was in P2 at 50% NPK fertilizer dosage, while P in P3 at 150% NPK fertilization dose. The highest soybean yields were obtained in the application of biofertilizer P3 with 150% NPK, i.e., 1.6 t ha-1, followed by the 1.5 t ha-1 in the application of P2 + 50% NPK. This showed that the use of P2 biofertilizer can reduce NPK fertilizer application to 50% in soybean plants in acid soil tidal lands. Furthermore, the application of biofertilizers can increase soybean productivity in acid sulfate soil in Indonesia.

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          Potassium: A Vital Regulator of Plant Responses and Tolerance to Abiotic Stresses

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            Effects of starter nitrogen fertilizer on soybean root activity, leaf photosynthesis and grain yield

            The objective of this study was to examine the impact of starter nitrogen fertilizer on soybean root activity, leaf photosynthesis, grain yield and their relationship. To achieve this objective, field experiments were conducted in 2013 and 2014, using a randomized complete block design, with three replications. Nitrogen was applied at planting at rates of 0, 25, 50, and 75 kg N ha-1. In both years, starter nitrogen fertilizer benefited root activity, leaf photosynthesis, and consequently its yield. Statistically significant correlation was found among root activity, leaf photosynthetic rate, and grain yield at the developmental stage. The application of N25, N50, and N75 increased grain yield by 1.28%, 2.47%, and 1.58% in 2013 and by 0.62%, 2.77%, and 2.06% in 2014 compared to the N0 treatment. Maximum grain yield of 3238.91 kg ha-1 in 2013 and 3086.87 kg ha-1 in 2014 were recorded for N50 treatment. Grain yield was greater for 2013 than 2014, possibly due to more favorable environmental conditions. This research indicated that applying nitrogen as starter is necessary to increase soybean yield in Sangjiang River Plain in China.
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              Effects of potassium deficiency on photosynthesis and photoprotection mechanisms in soybean (Glycine max (L.) Merr.)

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                Author and article information

                Journal
                chiljar
                Chilean journal of agricultural research
                Chil. j. agric. res.
                Instituto de Investigaciones Agropecuarias, INIA (Chillán, , Chile )
                0718-5839
                February 2023
                : 83
                : 1
                : 52-62
                Affiliations
                [2] West Java orgnameAssessment Institute for Agricultural Technology Indonesia
                [1] South Kalimatan orgnameIndonesian Swampland Agricultural Research Institute (ISARI) Indonesia
                Article
                S0718-58392023000100052 S0718-5839(23)08300100052
                b21ac4f4-55c0-418e-b736-dd9b6a98aac1

                This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

                History
                : 24 July 2022
                : 11 April 2022
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 31, Pages: 11
                Product

                SciELO Chile

                Categories
                RESEARCH ARTICLES

                Acid sulfate soil,soybean.,Glycine max,biofertilizer
                Acid sulfate soil, soybean., Glycine max, biofertilizer

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