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Research Detail

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O. A. Fakir
Soil Science Division, BARI, Joydebpur, Gazipur, Bangladesh

M. K. Alam
Soil Science Division, BARI, Joydebpur, Gazipur, Bangladesh

N. Salahin
Soil Science Division, BARI, Joydebpur, Gazipur, Bangladesh

M. Hossain
Soil Science Division, BARI, Joydebpur, Gazipur, Bangladesh

An experiment was conducted at Agricultural Research Station (ARS), BARI, Benarpota, Satkhira during the rabi season of 2019-20 to study the combined effect of seed priming and planting method on soil salinity and yield of sunflower. There were seven treatment combinations in two factorial RCBD approaches in where factor A was Seed priming considering 4 levels viz. No priming, Hydro–priming for 24 hours, Hydro–priming for 48 hours and Halo–priming for 48 hours (1% NaCl solution). On the other hand, factor A was the Planting method and depth considering 3 levels viz. Dibbling (1-5cm), Reduce tillage (6-10 cm), Conventional Tillage (12-15 cm). From the result, it is evident that among different treatment combinations RT along with HP for 48H produced the highest seed yield (1.65t ha-1). Although Dibbling with HP for 48H gave a statistically similar yield with RT along with HP for 48H. Yield obtained from Dibbling+HP 48H (1% NaCl) and RT+HP 48H (1% NaCl) were statistically identical also. The lowest seed yield (0.98 t ha-1) was recorded in CT+NP. The lowest level of soil salinity was recorded during the sowing period in all treatment plots and the highest level of salinity (6.83 dS/m) was recorded for Dibbling with 24 hours HP at the harvesting stage.

  Soil salinity, Sunflower, Yield, Seed priming
  Soil Science Division, Bangladesh Agricultural Research Institute, Joydebpur, Gazipur, Bangladesh
  00-00-2019
  00-00-2020
  Crop-Soil-Water Management
  Soil salinity, Sunflower

The present experiment was conducted to evaluate the seed priming and planting system on sunflower production in saline soil.

The experiment was conducted at the Agricultural Research Station (ARS), BARI, Benarpota, Satkhira during the rabi (winter) season of 2019-2020 to observe the combined effect of seed priming and planting method on soil salinity and yield of sunflower. The soil belonged to the AEZ-11 and AEZ -13. The land topography was medium-low. The soil of the experimental field is clay loam in texture with pH 6.75. There were seven treatment combinations in two factorial RCBD approaches with three replications in where factor A was Seed priming considering 4 levels viz. No priming, Hydro–priming for 24 hours, Hydro–priming for 48 hours and Halo–priming for 48 hours (1% NaCl solution).On the other hand, factor B was the Planting method and depth considering 3 levels viz. Dibbling (1-5cm), Reduce tillage (6-10 cm), Conventional Tillage (12-15 cm). In order to investigate the physical and chemical properties of various parts of the lands, nine random samples from each replicate were taken by the Auger of 0-15 cm depth and then transported to the laboratory for further analysis. To obtain soil-weighted moisture content, the amount of 10 g of soil was poured into metal cans and was placed in the oven for 24 hours at a temperature of 110 °C. Once cooled, the moisture content was calculated based on the oven-dried soil. Particle size distribution was done by hydrometer method and the textural class was determined using the USDA textural triangle. The measurement of soil bulk density (g/cm3), soil samples were randomly taken at a depth of 0–15 cm, from the main test plot. The diameter of the core sampler was measured with a venire caliper. The samples were dried in a hot air oven at 105°C and the dry weight of the soil sample was recorded. The bulk density of soil was determined by using the RNAM (1995) formula. The cylinder method was exercised to determine soil porosity in the samples (Blake and Hartch, 1986). Soil porosity in each sample was calculated by the following equation (Daniel chipped and Sooterland, 1986). Soil Porosity = [1-(bulk density/particle density)]*100. Bulk density (g/cm3) was lowest in dibbling which was statistically identical with Conventional Tillage and Reduced tillage but significantly lower than the MT. The lowest particle density (g/cm3) was obtained in zero tillage which was significantly lower than the other treatments but statistically similar with the MT. The highest porosity (%) was recorded in ZT which was significantly higher than all other treatments. After following the standard methods, soil samples were analyzed for pH, OM, N, P, K, S, Zn, B, Cu, Fe, Mn, Ca, Mg and Na. Soil pH was measured using a glass electrode pH meter (WTW pH 5.22) at a soil-water ratio of 1:2.5 as described by Ghosh, soil organic C was measured by Walkley and Black’s wet oxidation method as described by Jackson et. al, and total N was measured by micro-Kjeldahl method; available P was determined following the Bray and Kurtz method, exchangeable K was determined using NH4OAC extraction method, S was determined by a turbidimetric method with the help of a spectrophotometer using a wavelength of 420 nm, Ca was determined by the complexometric method of titration using Na2-TA as a complexing agent, Mg was determined by using NH4OAC extraction method, available Zn, Cu, Fe, and Mn were determined by using diethylenetriaminepentaacetic acid (DTPA) extraction method, B was determined by spectrophotometry method and Na was determined by flame photometry method. CEC (Cation Exchange Capacity) was measured as the summation of the K, Ca, Mg and Na content. Soil salinity at different dates was recorded at 09:00-10:30 a.m. every 15 days interval, starting from sowing until harvest. The salinity was measured by EC meter (HANNA: HI 9835). The conventional tillage was conducted by a power tiller, whereas the Reduce tillage was maintained by PTOS. Dibbling was done by the hand placing of seeds in a hole made at a predetermined spacing and depth.  The sunflower variety was BARI Surjamukhi-2. In the case of dibbling, seeds were sown on 09 December 2019, while others were done on the same date i.e 26 December 2019, with a row to row distance of 50 cm and plant to plant 25 cm. Unit plot size was 3m X 2m. The crop was harvested on 15 April 2020. Three times irrigation at 30, 50 & 70 days after sowing were applied during the growing period. Weeding was done at 14 days after sowing followed by thinning. Disease and insect pests were always well controlled using suggested applies (BARI, 2014). The crop was harvested at the time of maturity.  The following standard priming treatment was adopted in all experiments: a single layer of sunflower seeds was submerged in each priming solution or distilled water, to a depth of 1 cm above the top of the seeds (Wahid et al., 2008). Required number of sunflower seeds was soaked in distilled but cool water for hydro–priming 24 hours and hydro–priming 48 hours while halo–priming 48 hours was done by making 1% NaCl solution at around room temperature as per treatments. The ratio of seed weight to solution volume was 1:5 (g mL-1). The treated seeds were surface-dried under forced air on filter paper to their original moisture 8-10% (on a dry weight basis). After that, all the treated seeds were sealed in a polyethylene bag and stored in the refrigerator at 5oC till further use. Fertilizers were applied following the fertilizer recommendation guide 2018 (BARC, 2018). The full amount of triple superphosphate, muriate of potash, gypsum, zinc oxide, boric acid and half of urea were broadcasted in the experimental plot at the time of seed sowing as per treatment. The rest half of urea was applied in equal amounts at 25 & 50 days after emergence. In the case of dibbling treatment, fertilization was done with the help of a small implement known as 'Dibbler'. It was a wooden or iron frame with pegs. The frame was pressed in the field and lifted and then the required amount of fertilizer was dropped by hand in each of the holes.

 

  Annual Research Report 2019–2020, Soil Science Division, BARI, Joydebpur, Gazipur, Bangladesh
  
Funding Source:
1.   Budget:  
  

Controlling salt accumulation in the root zone is critical to increasing crop yields in saline soils. Based on the field experiment conducted in the saline soils of Satkhira District, the southern part of Bangladesh, it can be concluded that the minimum tillage had significant effects on soil salinity dynamics and sunflower growth. Application of priming techniques helps for lower salinity in the root zone during the early crop stage thus promoted sunflower growth. 

  Report/Proceedings
  


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