Microalgae as Biofertilizer in Modern Agriculture
暂无分享,去创建一个
Suo-Lian Guo | Xinlei Wang | Ping Wang | Mengjia Zou | Chunxue Liu | J. Hao
[1] R. Prasanna,et al. Microalgae as multi-functional options in modern agriculture: current trends, prospects and challenges. , 2018, Biotechnology advances.
[2] S. Sadeghi,et al. Improving runoff behavior resulting from direct inoculation of soil micro-organisms , 2017 .
[3] S. Sadeghi,et al. Controlling rainfall-induced soil loss from small experimental plots through inoculation of bacteria and cyanobacteria , 2017 .
[4] E. Yılmaz,et al. The role of organic/bio–fertilizer amendment on aggregate stability and organic carbon content in different aggregate scales , 2017 .
[5] M. Kornaros,et al. Microalgal post-treatment of anaerobically digested agro-industrial wastes for nutrient removal and lipids production. , 2017, Bioresource technology.
[6] Shy Chyi Wuang,et al. Use of Spirulina biomass produced from treatment of aquaculture wastewater as agricultural fertilizers , 2016 .
[7] R. Prasanna,et al. Exploring the efficacy of wastewater-grown microalgal biomass as a biofertilizer for wheat , 2016, Environmental Science and Pollution Research.
[8] R. Prasanna,et al. Evaluating microbe-plant interactions and varietal differences for enhancing biocontrol efficacy in root rot disease challenged cotton crop , 2015, European Journal of Plant Pathology.
[9] R. Prasanna,et al. Influence of cyanobacterial inoculation on the culturable microbiome and growth of rice. , 2015, Microbiological research.
[10] R. Prasanna,et al. Evaluating the plant growth promoting ability of thermotolerant bacteria and cyanobacteria and their interactions with seed spice crops , 2013 .
[11] Jerry D. Cohen,et al. Auxin producing non‐heterocystous Cyanobacteria and their impact on the growth and endogenous auxin homeostasis of wheat , 2013, Journal of basic microbiology.
[12] R. Prasanna,et al. Evaluating the influence of novel cyanobacterial biofilmed biofertilizers on soil fertility and plant nutrition in wheat , 2013 .
[13] S. Jaggi,et al. Bioefficacy of novel cyanobacteria-amended formulations in suppressing damping off disease in tomato seedlings , 2012, World Journal of Microbiology and Biotechnology.
[14] Y. Bashan,et al. Recycling waste debris of immobilized microalgae and plant growth-promoting bacteria from wastewater treatment as a resource to improve fertility of eroded desert soil , 2012 .
[15] C. G. Carrington,et al. Anaerobic digestion of microalgae residues resulting from the biodiesel production process , 2011 .
[16] M. El-sheekh,et al. Effect of two species of cyanobacteria as biofertilizers on some metabolic activities, growth, and yield of pea plant , 2010, Biology and Fertility of Soils.
[17] R. Abed. Interaction between cyanobacteria and aerobic heterotrophic bacteria in the degradation of hydrocarbons , 2010 .
[18] R. Prasanna,et al. Physiological characterization and electron microscopic investigation of cyanobacteria associated with wheat rhizosphere , 2009, Folia Microbiologica.
[19] T. Taylor,et al. Endophytic cyanobacteria in a 400-million-yr-old land plant: A scenario for the origin of a symbiosis? , 2009 .
[20] M. Shukla,et al. Role of blue green algae biofertilizer in ameliorating the nitrogen demand and fly-ash stress to the growth and yield of rice (Oryza sativa L.) plants. , 2008, Chemosphere.
[21] S. Singh,et al. Outdoor evaluation of herbicide resistant strains of Anabaena variabilis as biofertilizer for rice plants , 2007, Plant and Soil.
[22] O. Duval,et al. Effects of the inoculation of cyanobacteria on the microstructure and the structural stability of a tropical soil , 2007, Plant and Soil.
[23] J. Oudot,et al. Role of cyanobacteria in the biodegradation of crude oil by a tropical cyanobacterial mat. , 2006, Chemosphere.
[24] M. Jha,et al. Efficacy of New Inexpensive Cyanobacterial Biofertilizer Including its Shelf-life , 2006 .
[25] Y. Seo,et al. Management of Meloidogyne incognita on tomato by root-dip treatment in culture filtrate of the blue-green alga, Microcoleus vaginatus. , 2005, Bioresource technology.
[26] L. Rodolfi,et al. Evaluation of Nostoc Strain ATCC 53789 as a Potential Source of Natural Pesticides , 2004, Applied and Environmental Microbiology.
[27] Mj Acea,et al. Cyanobacterial inoculation of heated soils: effect on microorganisms of C and N cycles and on chemical composition in soil surface , 2003 .
[28] A. Issa. Antibiotic production by the cyanobacteria Oscillatoria angustissima and Calothrix parietina. , 1999, Environmental toxicology and pharmacology.
[29] D. Subhashini,et al. Amelioration of sodic soils with blue-green algae , 1981 .