Vol 9 No 5 (2020)
Research Articles
Published June 5, 2020

References

  1. Adriano, DC, Chang, AC, Pratt PE, Sharpress R. effect of application of dairy manure on germination and emergence of some selected crops, 1973, J. Enviro Qual, 2, 396-399
  2. Andreote, F D, daRocha, B O, Araujo, W L, A zevedo, J L and Van beek, S L Effect of bacterial inoculation, plant genotype and development stage on root associated and endophytic bacterial
  3. communities in potato (Solanum tuberosum). Antonie Van Leewenhoek, 2010, 97,4, 389-399.
  4. Awasthi AK, Pandey AK, Rashmi Dubey, Diversity of fungi in effluents of sugar industries of Madhya Pradesh, 2011, International Journal of Environmental Science,1,5, 834¬839
  5. Ayyasamy P M, Yasodha R, Rajkumari S, Lakshmanaperumalsamy P, Rahman Lee S, Impact of sugar factory effluent on the growth and biochemical characteristics of terrestrial and aquatic plants, 2008, Bull. Environ Contam. Toxicol. 81:449-454.
  6. Barnett, H.L. and Hunter, B.B. (1972) Illustrated genera of imperfect fungi, 1972, Third Edition Burgess publishing company, Minneapolis, Minnesota.
  7. G Basavaraj P Parthasarathy Rao, Shraavya Bhagavatula and Wasim Ahmed (2010) Availability and utilization of pearl millet in India,2010, eJournal ⏐ ejournal.icrisat.org
  8. Buvaneswari S, Damodarkumar S, Murugesan S, Bioremediation studies on sugar mill effluent by selected fungal species, 2013, Int.J.Curr.Microbiol app. Sci 2 (1):50-58.
  9. Baskaran L K Sankar Ganesh, A L, A Chidambaram and P. Sundaramoorthy, 2009. Ameliration of sugar mill effluent polluted soil and its effect on green gram, Botany Research International, 2, 2,131-135
  10. Deshpande K S and G M Kulkarni, Studies of seed-borne fungi on oil seeds. Varietal response of oil seeds to seed borne fungi, 1988, I-Phycomycetes. J. Ind. Bot.Soc. 11(1):61-63
  11. Doke, K M, Ejazuddin, M. K, Joseph, R., Asif, S, Physico chemical analysis of sugar industry effluent and its effect on seed germination of vigna angularis, vigna cylindrical and sorghum cernum, 2011, Annuls of Env. Sc., 5, 7-11
  12. Dubey, RC and Maheshwari, DK, 2005. Practical Microbiology. S. Chand and Company Ltd., New Delhi, 352
  13. Ellis EB. Dematiaceous Hyphomycetes. Kew 1971, Commonwealth Mycological Institute.
  14. Eze, Chukwuma Simon and Amadi, Jude Ezjiofor, Studies on rhizosphere and rhizoplane microflora of Tomato (Lycopersicon esculentum Mill) seedlings, 2014, Int. J. of Eng. Sc. And Research Tech, 3,7, 666-672
  15. Hinsinger, P., Gobran, G. R., Gregory, P J, and Wenzel, W W, Rhizosphere geometry and heterogeneity arising from root-mediated physical and chemical processes, 2011, New Phytol. 168, 293–303. doi: 10.1111/j.1469-8137.2005.01512.x
  16. Hartmann A., Schmid M., Van Tuinen D. and Berg G. Plant Driven sélection of microbes. Plant Soil, 2009 : 321, 235-257.
  17. Hiltner, L. Uber neuere Erfahrungen und Probleme auf dem Gebiet der Bodenbakteriologie und unter besonderer Berucksichtigung der Grundungung und Brache. [German]. (1904): Arb Dtsch Landwirtsch Ges. 98: 59-78
  18. Hussain, I, Iqbal, M, Nawaj, M, Rasheed, R, Perveen, A, Mahmood, S, Yasmeen, A and Wahid, A Effect of sugar mill effluent on growth and antioxidative potential of Maize seedling, 2013, Intern. J. of Agric. & Biol. 15(6), 1227-1235
  19. Jalander, V. and Gachande, B.D. Rhizosphere and non-rhizosphere mycoflora of different Varieties of pigeon pea (Cajanus cajan (L.) Millsp., 2011, Geobios 38(1): 37-40
  20. Khan Muhammad Musaa, Impect of sugar mill effluent on soil and plant’s seed germination. Punjab, Pakistan, 2019, SRDP Journal of Earth Sciences and Environmental studies, 4, 3, 14-20
  21. Marschner, P., Crowley, D. and Yong, C. H. Development of specific rhizosphere bacterial communities in relation to plant species nutrition and soil type, 2004, Plant and Soil, 261: 199-208
  22. Olahan, G. S., Garba, T., Ibrahim, F. O. and Adeyemi, S. B. (2015). Isolation and identification of fungi associated with the rhizosphere and rhizoplane of Tobacco (Nicotiana tabacum), 2015, Jewel Journal of Scientific Research 3, 1, 1 – 8
  23. Olahan, G. S., Sule, I O, Garuba, T and Salawu, Y A Rhizosphere and non-Rhizosphere soilmycoflora of Corchorus olitorius (JUTE),2016, Science World Journal,11, 3. www.scienceworldjournal.org ISSN 1597-6343:
  24. Rath, P, Biswal, P K and Misra, M K, Effect of sugar factory distillery spent wash on germination and seedling growth of rice (Oryza sativa L), 2013, IJSID.ISSN:2249-5347, 3,1,191-201
  25. Shaila Sakhala and Gangawane L V, Effect of molasses on the growth and rhizosphere mycoflora of Cajanus cajan L., 2012, Biosci. Biotech.Res.Comm 5, 2,144-149
  26. Sakhala S V, Deshpande J B and Gangavane L V Effect of sugar industry effluent on the germination and growth of Pennisetum typhoides L., 2012, Shodhankan Special issue, 68-72.
  27. Sangeeta, Rani Devi, Gita Rani, A study of concentration of sugar mill effluents on properties of soil and types of microorganisms present in the soil, 2017, Current Botany. 8:159-162.http://scienceflora.org/journals/index.php/cb/ doi: 10.19071/cb. 2017.v8.3317O
  28. Siva Santhi, K and Suja pandian, R, Effect of sugar mill effluent on seed germination of peanut (Arachis hypogaea) and Green gram (Vigna radiate), 2012, International J. Pharm. And Chemi. Sci. 1,2, 804-806.
  29. Sule, I O and Oyeyiola, G P, Fungi in the Rhizosphere and Rhizoplane of Cassava cultivar TME 419, 2012, International Journal of Applied Biological Research, 4, 1-2,18-30
  30. Timonin, MI, The interaction of higher plants and soil micro-organisms. II. Study of microbial population of the rhizosphere in relation to resistance of plants to soil borne diseases, 1940, Can. J. Res., 18: 444-456
  31. Usha Damodharan and M. Vikram Reddy, Impact of sugar industrial treated effluent on the growth factor in sugarcan, 2012, Journal of Sustainable Bioenergy Systems, 2.43-48. (Google scholar –http.//www.sciRP.org/Journal/jsbs
  32. D. Venkatesh and M. Venkatewarlu (2017): An overview of the Indian sugar industry, 2017, BIMS International Journal of Social Science, 2, 1,11-16.