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The Role of Cyanobacteria in Availability of Major Plant Nutrients and Soil Organic Matter to Rice Crop under Saline Soil Condition.
Author(s)
Zakirullah Jan The University of Agriculture Peshawar, Mardan, Pakistan
Shamsher Ali The University of Agriculture Peshawar, Mardan, Pakistan
Tariq Sultan Soil Biology and Biochemistry laboratory, National Agriculture Research Center, Islamabad, Pakistan
Wiqar Ahmad The University of Agriculture Peshawar, Mardan, Pakistan
Abstract
A pot experiment in pots was conducted with the aim to assess the role of different strains of cyanobacteria in improvement of some major plant nutrients and soil organic matter content (SOM) under saline soil and yield of rice crop at National Agricultural Research Center (NARC) Islamabad during summer 2016. Pots were induced with salinity of 7.0 dS m-1 and arranged in Completely Randomized Design (CRD) with three replications. Six treatments consisted of a control (no strains) and 5 different strains of cyanobacteria i.e Oscillatory-MMF-1 (Oscillatoria princeps), Leptolyngbaya-MMF-2 (Lyngbya mucicola), Leptolyngbaya- MMF-3 (Lyngbya Phormidium), Gloeobacter-MMF-4 (Gloeocapsa) and Microcoleus-MMF-5 (Cryophilus) were applied randomly to flooded rice in pots. Rice seedlings were transplanted to each pot on July 18, 2016. The data were recorded on agronomic parameters of rice crop, plant tissue and post-harvest soil analysis. But in this paper, data on availability of major plant nutrients, soil organic matter and plant dry weight are presented. The data revealed that cyanobacteria strains had significantly (p < 0.05) increased the availability of major plant nutrients and SOM under the saline soil conditions. Among the strains, Gloeobacter MMF-4 significantly increased the soil organic matter (SOM), nitrogen (N), phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg) and plant dry weight. Results showed that soil organic matter content improved from 1 to 5.2 g kg-1, NO3-N from 1.96 to 3.53 mg kg-1, P from 1.87 to 2.79 mg kg-1 and K from 273 to 296 mg kg-1 in treatment where MMF-4 Gloeobacter strain was applied. It was concluded that all cyanobacteria strains increased the soil fertility status in the saline soils but Gloeobacter-MMF-4 (Gloeocapsa) strain was most eficient as compared to other strains. Received July 12, 2017; Accepted September 16, 2017; Published October 27, 2017 *Correspondence Shamsher Ali, Amir Muhammad Khan Campus, Mardan, The University of Agriculture Peshawar-Pakistan; Email: shamsherali@aup.edu.pk Citation Jan, Z. , S. Ali, T. Sultan, Wasiullah and W. Ahmad. 2017. The role of cyanobacteria on availability of major plant nutrients and soil organic matter to rice crop under saline soil condition. Sarhad Journal of Agriculture, 33(4): 566-572. DOI http://dx.doi.org/10.17582/journal.sja/2017/33.4.566.572
Publication Details
Page(s) 566-572
DOI DOI not available
Published Journal: Sarhad Journal of Agriculture, Volume: 33, Issue: 4, Year: 2017
Keywords
Keywords are not available for this article.
References
Alam , S.M.,R.Ansari,M.A.Khan, 2000.Pakistan salt afected soil survey,Nuclear Institute of Agriculture Tando Jam 08 21 -
Apte , S.K., 1992.Molecular biology of cyanobacterial nitrogen fixation: recent advances,Indian J. Microbiol 32 103 -126
Apte , S.K., 1993.Cyanobacterial nitrogen fixation; molecular genetic aspects,Proc. Indian Nat. Sci. Acad. B 59 367 -386
Apte , S.K.,J.Thomas, 1997.Possible amelioration of coastal soil salinity using halo tolerant nitrogenfixing cyanobacteria,Plant Soil 189 205 -211
Ashraf , M.,A.H.Khan, 1994.Solute accumulation and growth of sorghum grown under NaCl and Na2SO4: Salinity stress,Sci. Int 6 337 -349
Aziz , M.A.,M.A.Hashem, 2003.Role of cyanobacteria in improving fertility of saline soil,Pak. J. Biol. Sci 6 1751 -1752
Aziz , M.A.,M.A.Hashem, 2004.Role of cyanobacteria on yield of rice in saline soil,Pak. J. Biol. Sci 7 309 -311
De , P.K.,M.Sulaiman, 1950.The influence of algal growth in the rice fields on the yield of crops,Indian J. Agric. Sci 20 327 -342
Elayarajan , M.,TNAU,D.Thesis, 2002.Land application of treated paper board mill efluent on soil- water-plant ecosystem (Soil Science), -
Hashem , M.A., 2001.Role of blue-green algal inoculum for improving soil fertility and reclaiming salinity of soil,Research report. BARC Dhaka 2 -
Kannaiyan , S. And K.,Pandiyarajan, 1992.The use of saline tolerance cyanobacteria for salt afected lands,In: Proceedings of the international symposium on strategies for utilizing salt afected lands 394 404 -
Kaushik , B.D.,D.Subhashini, 1985.Amelioration of salt afected soil with blue green algae II, Improvement in soil properties,Proc. Indian Nat. Sci. Acad B51 386 -389
Keurson , G.W.,J.A.Miernyk,K.Budd, 1984.Evidence for the occurrence of, and possible physiological role for, cyanobacterial calmodulin,Plant Physiol 75 222 -224
Lange , O.L.,U.Heber, 1994.Photosynthesis and water relations of lichen soil-crusts: field measurements in the coastalfogzoneoftheNamibDesert,Funct.Ecol 8 253 -264
Matsuda. N.,H.Kobayashi,H.Katoh,T.Ogawa,L.Futatsugi,T.Nakamura,P.E.Bakker,N.Uozumi, 2004.its role in the early phases of cell adaptation to hyperosmotic shock,J. Biol. Chem 52 52 -62
McLean , E.O.,A.L.,R.H.Miller,D.R.Keeney, 1982.Methods of soil analysis. Part 2: Chemical and micro-biological properties, 199 223 -
Metting , B., 1990.Microalgae applications in agriculture,Dev. Ind. Microbiol 31 265 -270
Mujeeb-Kazi , A.,J.L. Diaz de Leon, 2002.Conventional and aliengenetic diversity for salt tolerance wheats: focus on current status and new germplasm development,Prospec. Saline Agric 37 8 -82
Nelson , D.W.,L.E.Sommers,Page , R.H.,Miller and D.R, 1996.Total carbon, organic carbon and matter,Methods of Soil Analysis Part II, 2nd edition. American Society of Agronomy 9 539 -577
Pandey , P.K.,B.B.Singh,R.Mishra,P.S.Bisen, 1996.Calcium uptake and its regulation in the cyanobacterium Nostoc MAC,Curr. Microbial 32 332 -335
Pendleton , R.L and S.D.,Warren,N.E, 1995.Efects of cryptobiotic soil crusts and VA mycorrhizal inoculation on growth of five rangeland plant species,Proceedings of the iffth international rangeland congress. Society for Range Management, Salt Lake City, UT 436 -437
Prabu , P. C. and C.,Udayasoorian, 2007.Native cyanobacteria Westiellopsis (TL-2) sp. For reclaiming paper mill efluent polluted saline sodic soil habitat of India,EJEAFChe 6 1775 -1786
Qadir , M.,E.Quillerou,V.Nangia,M.Singh,R.J.Thomeas,P.Drechsel,A.D.Noble, 2014.Economics of salts-induced land degradation and restoration,Nat. Res. Forum 4 282 -295
Qayyum , B.,M.Shahbaz,N.A.Akram, 2007.Interactive efect of foliar application of 24- Epibrassinolide and root zone salinity on morpho- physiological attributes of wheat (Triticum aestivum L.),Int. J. Agric. Biol 9 584 -589
Singh , R.N., 1961.Reclamation of USAR lands. Role of Blue Green Algae in nitrogen Economy of Indian Agriculture New Delhi, 83 98 -
Smith , R.J,S.Hobson,I.Ellis, 1987.Evidence for calcium mediated regulation of heterocyst frequency and nitrogenase activity in Nostoc 6720, 105 8137 -541
Soltanpour , P.N.,A.P.Schawab, 1977.A new soil test for simultaneous extraction of macro and micronutrients in alkaline soils,Commun. Soil Sci. Plant Anal 8 195 -207
Steel , R.G.D.,J.H.Torrie, 1980.Principles and Procedures of Statistics: A biometrical approach,McGraw-Hill 633 -
Verma , K.S and I.P.,Abrol, 1980.Efect of gypsum and pyrite on soil properties in a highly sodic soil,Indian J. Agric. Sci 50 844 -851
Villa-Astoria , M.,A.P.Ellery,E.A.CatalanValencia and M.D. Ramming, 2003.Salinity and nitrogen rates efects on the growth and yield of Chile pepper plant,Soil Sci. Soc. Am. J 67 1781 -90
Wafaa , M.T.,Eletr , F.M.,Ghazal , A.A.,Mahmoud and G.H.,Yossef, 2013.Responses of wheat-rice cropping system to cyanobacteria inoculation and diferent soil conditioners sources under saline soil,Nat. Sci 11 118 -129
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