用户名: 密码: 验证码:
Effective role of indigenous microorganisms for sustainable environment
详细信息    查看全文
  • 作者:Baduru Lakshman Kumar ; D. V. R. Sai Gopal
  • 关键词:Indigenous microorganisms ; Biodegradation ; Bioleaching ; Biocomposting ; Natural farming ; Biofertilizer ; Bioremediation
  • 刊名:3 Biotech
  • 出版年:2015
  • 出版时间:December 2015
  • 年:2015
  • 卷:5
  • 期:6
  • 页码:867-876
  • 全文大小:548 KB
  • 参考文献:Ahn Y, Jung H, Tatavarty R, Choi H, Yang JW, Kim IS (2005) Monitoring of petroleum hydrocarbon degradative potential of indigenous microorganisms in ozonated soil. Biodegradation 16:45-6CrossRef
    Aitken RJ (2005) Founders-lecture. Human spermatozoa: fruits of creation, seeds of doubt. Repro Fert Develop 16:655-64CrossRef
    Aitken CM, Jones DM, Larter SR (2004) Anaerobic hydrocarbon biodegradation in deep subsurface oil reservoirs. Nature 431(7006):291-94CrossRef
    Aitken CM, Jones DM, Head IM, Gray ND, Adams JJ, Rowan AK, Aitken CM, Bennett B, Huang H, Brown A, Bowler BFJ, Oldenburg T, Erdmann M, Larter SR (2008) Crude-oil biodegradation via methanogenesis in subsurface petroleum reservoirs. Nature 451(7175):176-80CrossRef
    Alluri HK, Ronda SR, Settalluri VS, Bondili JS, Suryanarayana V, Venkateshwar P (2007) Biosorption: An eco-friendly alternative for heavy metal removal. Afr J Biotechnol 6(25):2924-931
    Babel S, del Mundo Dacera D (2006) Heavy metal removal from contaminated sludge for land application: a review. Waste Manage 26:988-004CrossRef
    Bayat B, Sari B (2010) Comparative evaluation of microbial and chemical leaching processes for heavy metal removal from dewatered metal plating sludge. J Hazard Mater 174:763-69CrossRef
    Beveridge TJ, Murray RG (1976) Uptake and retention of metals by cell walls of Bacillus subtilis. J Bacteriol 127:1502-518
    Brandl H, Faramarzi MA (2006) Microbe-metal-interactions for the biotechnological treatment of metal-containing solid waste. Chin Particuol 4:93-7CrossRef
    Bustamante M, Paredes C, Marhuenda-Egea F, Pérez-Espinosa A, Bernal M, Moral R (2008) Co-composting of distillery wastes with animal manures: carbon and nitrogen transformations in the evaluation of compost stability. Chemosphere 72:551-57CrossRef
    Cai M, Yao J, Yang H, Wang R, Masakorala K (2013) Aerobic biodegradation process of petroleum and pathway of main compounds in water flooding well of Dagang oil field. Bioresour Technol 144:100-06CrossRef
    Canet R, Pomares F, Cabot B, Chaves C, Ferrer E, Ribó M, Albiach MR (2008) Composting olive mill pomace and other residues from rural southeastern Spain. Waste Manage 28:2585-592CrossRef
    Cernansky S, Kolencik M, Sevc J, Urik M, Hiller E (2009) Fungal volatilization of trivalent and pentavalent arsenic under laboratory conditions. Bioresour Technol 100:1037-040CrossRef
    Challenger F (1945) Biological methylation. Chem Rev 36:315-61CrossRef
    Chan L, Gu X, Wong J (2003) Comparison of bioleaching of heavy metals from sewage sludge using iron-and sulfur-oxidizing bacteria. Adv Environ Res 7:603-07CrossRef
    Cho HK, Koyama A (1997) Korean natural farming: indigenous microorganisms and vital power of crop/livestock. Korean Natural Farming
    Cohen RRH (2006) Use of microbes for cost reduction of metal removal from metals and mining industry waste streams. J Clean Prod 14:1146-157CrossRef
    Dong Y, Butler EC, Philp RP, Krumholz LR (2011) Impacts of microbial community composition on isotope fractionation during reductive dechlorination of tetrachloroethylene. Biodegradation 22:431-44CrossRef
    Fang G, Si Y, Tian C, Zhang G, Zhou D (2012) Degradation of 2, 4-D in soils by Fe3O4 nanoparticles combined with stimulating indigenous microbes. Environ Sci Pollut Res 19:784-93CrossRef
    Gilbert E (1983) Investigations on the changes of biological degradability of single substances induced by ozonation. Ozone Sci Engrg 5:137CrossRef
    Goessler W, Kuehenelt D (2002) Analytical methods for the determination of arsenic and arsenic compounds in the environment. In: William T, Frankenberger Jr William (eds) CRC Press, pp 27-0
    Han HS, Supanjani E, Lee KD (2006) Effect of co-inoculation with phosphate and potassium solubilizing bacteria on mineral uptake and growth of pepper and cucumber. Plant Soil Environ 52(3):130-36
    Hanim AN, Muhamad AN, Ahmed OH, Susilawati K, Khairulmazmi A (2012) Physico-chemical properties of indigenous microorganism-composts and humic acid prepared from selected agro-industrial residues. Afr J Biotechnol 11:8456-463
    Hus I, Masten SJ (1997) The kinetics of the reaction of ozone with phenanthrene in unsaturated soils. Environ Eng Sci 14:207-17CrossRef
    Jenkins D, Wolever T, Taylor RH, Barker H, Fielden H, Baldwin JM, Bowling AC, Newman HC, Jenkins AL, Goff DV (1981) Glycemic index of foods: a physiological basis for carbohydrate exchange. Am J Clin Nutr 34:362-66
    Jones D, Head I, Gray N, Adams J, Rowan A, Aitken C, Bennett B, Huang H, Brown A, Bowler B (2007) Crude-oil biodegradation via methanogenesis in subsurface petroleum reservoirs. Nature 451:176-80CrossRef
    Kahlon SS, Dass SK (1987) Biological conversion of paddy straw into feed. Biol Wastes 22:11-1CrossRef
    Kefala MI, Zouboulis AI, Matis KA (1999) Biosorption of cadmium ions by actinomycetes and separation by flotation. Environ Pollut 104:283-93CrossRef
    Kim SU, Cheong YH, Seo DC, Hur JS, Heo JS, Cho JS
  • 作者单位:Baduru Lakshman Kumar (1)
    D. V. R. Sai Gopal (1)

    1. Department of Virology, Sri Venkateswara University, Tirupathi, 517502, Andhra Pradesh, India
  • 刊物主题:Biotechnology; Agriculture; Cancer Research; Bioinformatics; Stem Cells; Biomaterials;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:2190-5738
文摘
Environmental protection has the foremost importance in the present day life of mankind. Scientists have been researching for technologies naturally available for enhancement of agriculture, management of agricultural waste, etc. Indigenous Microorganisms (IMO’s)-based technology is one such great technology which is applied in the eastern part of world for the extraction of minerals, enhancement of agriculture and waste management. Indigenous microorganisms are a group of innate microbial consortium that inhabits the soil and the surfaces of all living things inside and outside which have the potentiality in biodegradation, bioleaching, biocomposting, nitrogen fixation, improving soil fertility and as well in the production of plant growth hormones. Without these microbes, the life will be wretched and melancholic on this lively planet for the survival of human race. That is why, environmental restoration and safeguarding target via the indigenous microbes in a native manner to turn out the good-for-nothing and useless waste into productive bioresources is the primary concern of this review. Based on the collection sites, the process of collection and isolation methods are different as they may vary from place to place. Ultimately, in this way to a meaningful and significant extent, we can bridge the gap between the horrifying environmental distress and the hostile activities that have been constantly provoked by human kind—by getting these indigenous microorganisms into action. Keywords Indigenous microorganisms Biodegradation Bioleaching Biocomposting Natural farming Biofertilizer Bioremediation

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700