Iranipour, R., Malakouti, M., Abedi, M., Sajadi, A., Ghafourian, H. (2018). Main and Residual Effects of Phosphate Rock, Sulfur and Thiobacillus spp Bacteria on Yield Indices of Corn and Barley. , 21(2), 191-200. doi: 10.22092/ijsr.2018.127086
R. Iranipour; M. J. Malakouti; M. J. Abedi; A. Sajadi; H. Ghafourian. "Main and Residual Effects of Phosphate Rock, Sulfur and Thiobacillus spp Bacteria on Yield Indices of Corn and Barley". , 21, 2, 2018, 191-200. doi: 10.22092/ijsr.2018.127086
Iranipour, R., Malakouti, M., Abedi, M., Sajadi, A., Ghafourian, H. (2018). 'Main and Residual Effects of Phosphate Rock, Sulfur and Thiobacillus spp Bacteria on Yield Indices of Corn and Barley', , 21(2), pp. 191-200. doi: 10.22092/ijsr.2018.127086
Iranipour, R., Malakouti, M., Abedi, M., Sajadi, A., Ghafourian, H. Main and Residual Effects of Phosphate Rock, Sulfur and Thiobacillus spp Bacteria on Yield Indices of Corn and Barley. , 2018; 21(2): 191-200. doi: 10.22092/ijsr.2018.127086
Main and Residual Effects of Phosphate Rock, Sulfur and Thiobacillus spp Bacteria on Yield Indices of Corn and Barley
1Assistant Professor, Agricultural And Natural Resources Research Center Of Shahrekord
2Professor, Tarbiat Modarres University
3Professor Science and Research Campus Of Azad University, Tehran
4Professor, Extension, Education and Agricultural Research Organization
5Professor, Atomic Energy Organization of Iran
Abstract
The following experiments were conducted on two phases, on 2001-2003 arranged in randomized complete block design in order to study sulfur and Thiobacillus thioxidans L. on phosphorus availability of phosphate rock. The 1th phase of these experiments was performed on farm to study the main effects of treatments on corn crop, and 2th phase was carried out on farm to study the residual effects of treatments on barley crop. Following parameters were determined after crop harvesting in each phase: crop yield (dry matter yield of corn, straw yield, grain yield, harvesting index, and thousands grain weight of barley), dry matter percentage (DMP), crop growth rate (CGR), P and Zn content in leaf, relative agronomic efficiency (RAE), total phosphorus yield (TPY) and soil available phosphorus (Pava) measured for corn crop. The following results have been obtained: Main effects of treatments on dry matter percentage (DMP) and relative agronomic efficiency (RAE), were statistically significant at 1% level and main effects of treatments on dry matter yield (DMY) and crop growth rate (CGR) were significant at 5% level, but the main effects of treatments on P and Zn content in leaf, total phosphorus yield (TPY) and P(ava.) were not significant.Residual effects of treatments on straw yield were statistically significant at 5% level but the residual effects of treatments on grain yield and thousands grain weight, harvesting index and relative agronomic efficiency were not statistically significant. The results of this research showed that phosphate rock with sulfur and Thiobacillus spp, increased and yield indices of corn and barley crops, but for main and residual effects, treatments with sulfur and Thiobacillus spp had more effects than treatments with sulfur alone. Therefore, we can recommend treatments with sulfur and Thiobacillus spp for increasing main and residual effects on corn and barley crops.
امامی، عاکفه. 1375. روش های تجزیه گیاه. نشریه فنی شماره 982، موسسه تحقیقات خاک و آب. نشریه آموزش کشاورزی، کرج، ایران.
بشارتی کلایه، حسین و ناهید صالح راستین. 1379. تأثیر مصرف گوگرد و مایه تلقیح باکتریهای تیوباسیلوس بر مقدار آهن و روی جذب شده توسط ذرت در شرائط گلخانه، مجله خاک و آب، شماره 7، جلد 12، 72-63 ، تهران، ایران.
بشارتی کلایه، حسین. 1377. بررسی اثرات کاربرد گوگرد همراه با گونههای تیوباسیلوس در افزایش جذب برخی از عناصر غذایی در خاک، پایاننامه کارشناسی ارشد خاکشناسی، دانشگاه تهران، کرج، ایران 176 صفحه.
بشارتی کلایه، حسین. 1379. اکسایش گوگرد در خاک و بهینهسازی شرائط خاک جهت افزایش اکسایش آن. مجله خاک و آب، شماره 7، جلد 12، 114- 106، تهران، ایران.
لطفالهی، محمد، محمد جعفر ملکوتی، کاظم خاوازی و حسین بشارتی کلایه. 1379. ارزیابی روشهای مصرف خاک فسفات در افزایش عملکرد ذرت علوفهای در کرج، مجله علمی پژوهشی خاک و آب، ویژه نامه تیوباسیلوس، جلد 12، شماره 11، صحفات 55 تا 59، موسسه تحقیقات خاک و آب، تهران، ایران.
نورقلیپور. فریدون، محمد جعفر ملکوتی و کاظم خاوازی. 1379. نقش باکتریهای تیوباسیلوس و حل کننده فسفات و تفاله چای در تأمین فسفر مورد نیاز ذرت از خاک فسفات، مجله خاک و آب، ویژه نامه مصرف بهینه کود، جلد 12، شماره 14، 250- 243. تهران، ایران.
Abedi ,M . J., and Talibudeen. 1974. The calcareous soils of Azerbaijan. II- Phosphate Status. J. Soil Sci.25:3: 373-383
Besharati, H., F. Nourgholipour, M. J. Malakuti, and K. Khavazi. 2001. Direct application of Phosphate rock to Iran culcareous soils. International meeting on direct application of Phosphate rock and related appropriate technology-latest development and practical experiences. Kuala Lumpur. Malaysia. Pp: 277-279.
Chien, S. H., R.G.Menon and K. S. Billingham. 1996. Phosphorus availability from phosphate rock as enhanced by water-soluble phosphorus. Soil Sci. Soi. Am. J., 60: 1173-1177
Ghani, A., S. S. S. Rajan, and A. Lee. 1994. Enhancement of phosphate rock- solubility through biological process. Soil Bio. Biochem, 26: 127-136.
Kelly, D. P. and A. P. Harrisson.1984. Genus Thiobacillus. In: Staley, J. T. (ed.) Bergey,s Manual of Systematic Bacteriology. 9th Williams and Wikins, Baltimore.
Khavazi, K., H. Beshrati, F. Nourgholipour and M. J. Malakouti. 2001. Effect of thiobacillus bacteria on increasing phosphorus availability from Phosphate rock for corn grown on calcareous soils of Iran. International meeting on direct application of Phosphate rock and related appropriate technology latest development and practical experiences. Kuala lLumpur. Malaysia. Pp: 280-284.
Kittams, H. A., and O. J. Attoe. 1987. Availability of phosphorus in phosphate rock sulfur fusion. Agron. J, 57: 331-334.
Pathiratan, L. S. S. U. P. De, S. Waidyanatha, and O. S. Peries. 1989. The effect of apatite and elemental sulfur mixtures on the growth and P content of centrocema pubescen Fert. Res, 21: 37-43.
Paul, E. A and F. E. Clark. 1996. Soil Microbiology and Biochemistry. Academic Press P: 290-309
Rajan, S. S. S. 1982. Influence of phosphate rock reaction and granule size on the effectiveness of biosuper. Fert. Res. 3: 3-12.
Rosa, M. C., J. Muchovaj, and V. H. Alvarez. 1989. Temporal relation of phosphorus fraction in an oxisol amended with phosphate rock and thiobacillusthiooxidans. Soil Sci. Soc. Am. J. 53: 1096-1100
Rupela, O. P., and P. Tauro. 1973. Utilization of thiobacillus to reclaim alkali soils. Soil Bio. Biochem. 5: 899-901
Schofield, P.E., P. Gregg, and J. K. Syers. 1981. Biosuper as a phosphate fertilizer (a glasshouse evaluation). New Zealand Exp. Agri. 9:63-97.
Swaby, R. J. 1975. Biosupe- Biological Superphosphate. In: McLachlan, K. D. (ed.) Sulfur in Australian Agriculture. Sydney University Press, Sydney.
Vishniac, W. and M. Santer. 1957. The Thiobacilli. Bacteriol. Rev., 21: 195-213.
Wainright, M. 1984. Sulfur oxidation in soils. Advances in Agronomy, 37: 349-396.