1,624
Views
2
CrossRef citations to date
0
Altmetric
Articles

Diversity of Azotobacter in relation to soil environment in Ebinur Lake wetland

, , , &
Pages 1280-1290 | Received 08 Mar 2019, Accepted 20 Aug 2019, Published online: 04 Sep 2019

References

  • Butet A. Nitrogen content of tissues and trophic choices of the wood mouse, Apodemus sylvaticus, in an oligotrophic ecosystem. Crop Sci. 1990;65:124–131.
  • Knight JD. Frequency of field pea in rotations impacts biological nitrogen fixation. Can J Plant Sci. 2012;92:1005–1011.
  • Rubio EJ, Montecchia MS, Tosi M, et al. Genotypic characterization of Azotobacteria isolated from Argentinean soils and plant-growth-promoting traits of selected strains with prospects for biofertilizer production. Sci World J. 2013;2013:1–603.
  • Chen G, Zhu H, Zhang Y. Soil microbial activities and carbon and nitrogen fixation. Res Microbiol. 2003;154:393.
  • Weisany W, Raei Y, Allahverdipoor KH. Role of some of mineral nutrients in biological nitrogen fixation. Bull Eng Geol Environ. 2013;2:77–84.
  • Fong AA. Mesoscale variability in nitrogen-fixing bacteria and rates of nitrogen fixation in the North Pacific Ocean [dissertation]. University of Hawaii at Manoa. 2006;6:32–37.
  • Pühler A, Aguilar MO, Hynes M. Advances in the genetics of free-living and symbiotic nitrogen fixing bacteria. Adv Nitrogen Fixation Res. 1984;8:609–619.
  • Kizilova AK. Evaluation of the diversity of nitrogen-fixing bacteria in soybean rhizosphere by nifH gene analysis. Microbiology. 2012;81:672–681.
  • Dadok M, Beglarian M, Mehrabian S, et al. Phylogenetic identification of nitrogen-fixing bacteria isolated from the rhizosphere of asparagus plants using 16s rRNA and the effect of zinc on isolated strains. J Ilam Univ Med Sci. 2013;20:112–120.
  • Ren J, Jin H, Mao YE, et al. Analysis and evaluation of water quality of Aibihu Lake Wetland Natural Reserve. J Arid Land Resour Environ. 2011;25:154–157.
  • Liu Y. Protect wetland and improve eco-environment of Ebinur Wetland Lake. EST. 2004;2004:3–5.
  • Lu RK. Methods of soil agricultural chemistry analyses. Agricult Sci Technol. 1999;11:22–34.
  • Boone DR, Castenholz RW, Garrity GM. Bergey’s manual of systematic bacteriology. New York (NY): Springer; 2011.
  • Parte A, Krieg NR, Ludwig W. Bergey’s manual of systematic bacteriology. New York (NY): Springer; 2009;38:443–491.
  • Ri-Le W, Gang LI, Dian-Lin Y, et al. nifH gene diversity and community structure of soil nitrogen-fixing bacteria in Hulunbeier grassland. Inner Mongolia Chin J Ecol. 2011;30:790–797.
  • Yong Z, Zhihua Z, Wu L, et al. DNA extraction from soil for molecular microbial community analysis. JAES. 2005;12:24–30.
  • GuiLin Z. Study of inoculated moderately Halobacterium salinarium salination cotton field’s microorganisms population constructions [master’s thesis], Shihezi University, Xinjiang; 2010.
  • Bassam BJ, Gresshoff PM. Silver staining DNA in polyacrylamide gels. Nat Protoc. 2007;2:2649–2654.
  • Thompson JD, Higgins DG, et al. The CLUSTAL_X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. Nucleic Acids Res. 1997;25:48–82.
  • Saitou N. The neighbor-joining method: a new method for reconstructing phylogenetic trees. Mol Biol Evol. 1987;1987:425.
  • Tamura K, Dudley J, Nei M, et al. MEGA4, a molecular evolutionary genetic analysis MEGA software version 4.0. Mol Biol Evol. 2007;24:596–1599.
  • Zou Y, Zhang J, Yang D, et al. Effects of different land use patterns on nifH genetic diversity of soil nitrogen-fixing microbial communities in Leymus chinensis steppe. Acta Ecol Sin. 2011;31:150–156.
  • Vacca G, Wand H, Nikolausz M, et al. Effect of plants and filter materials on bacteria removal in pilot-scale constructed wetlands. Water Res. 2005;39:1361–1373.
  • Chen SL, Tsai MK, Huang YM, et al. Diversity and characterization of Azotobacter isolates obtained from rice rhizosphere soils in Taiwan. Ann Microbiol. 2018;68:17–26.
  • Xu Y, Wang T, Li H, et al. Variations of soil nitrogen-fixing microorganism communities and nitrogen fractions in a Robinia pseudoacacia chronosequence on the Loess Plateau of China. Catena. 2019;174:316–323.
  • Li YH, Zhao ML, Li FD. Soil respiration in typical plant communities in the wetland surrounding the high-salinity Ebinur Lake. Front Earth Sci. 2018;12:611–624.
  • Wang J, Ding J, Abulimiti A, et al. Quantitative estimation of soil salinity by means of different modeling methods and visible-near infrared (VIS-NIR) spectroscopy, Ebinur Lake Wetland, Northwest China. Peer J. 2018;6:11–22.
  • Marques E, Gross E, Teixeira Dias JC, et al. Ammonia oxidation (amoA) and nitrogen fixation (nifH) genes along metasandstone and limestone caves of Brazil. Geomicrobiol J. 2018;35:869–878.
  • Zhao X, Zhou ZG, Guo LV, et al. The characteristics of soil microbe in Panjin reed wetland. J Meteor Environ. 2006;22:n64–67.
  • Zhongqiong W, Weidong W, Guibing Z. A comparative study on the diversity of rhizospheric bacteria community structure in constructed wetland and natural wetland with reed domination. Acta Ecol Sin. 2011;31:4489–4498.
  • Ma XF, Chu XZ, Ma Q. Effects of freeze-thaw on soil enzyme activity and microbial quantity of Haloxylon ammodendron community in Ebinur Lake area. Arid Reg Geogr. 2015;38:1190–1201.
  • Wu J. Climatic change record from stable isotopes in Lake Aibi, Xinjiang during the past 1500 years. Quaternary Sci Rev. 2004;24:585–590.
  • Ishac YZ, Selim AA, Ramadan EM, et al. Effect of some insecticides on the biological activity of Azotobacter chroococcum A36. I. Ammonia and amino nitrogen contents and nitrogen-fixing efficiency. Soil Biol Conserv Biosphere. 1984;12:60–89.
  • Yori G, Yang ST, Zibibra S. Impact of land use change on ecosystem service value in Aibi Lake Basin, Xinjiang. J Agricult Eng. 2019;35:260–269.