Advances in Bioscience and Biotechnology

Advances in Bioscience and Biotechnology

ISSN Print: 2156-8456
ISSN Online: 2156-8502
www.scirp.org/journal/abb
E-mail: abb@scirp.org
"Tolerance and biosorption capacity of Zn2+, Pb2+, Ni3+ and Cu2+ by filamentous fungi (Trichoderma harzianum, T. aureoviride and T. virens)"
written by Shafiquzzaman Siddiquee, Salleh N. Aishah, Sujjat A. Azad, Saili N. Shafawati, Laila Naher,
published by Advances in Bioscience and Biotechnology, Vol.4 No.4, 2013
has been cited by the following article(s):
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[12] Identification of a novel strain of fungus Kalmusia italica from untouched marine soil and its heavy metal tolerance activity
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[14] Copper tolerant Trichoderma asperellum increases bio-efficacy of copper against Phytophthora infestans in dual combination
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[15] Biotechnological Application of Trichoderma: A Powerful Fungal Isolate with Diverse Potentials for the Attainment of Food Safety, Management of Pest and Diseases …
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[16] Biofertilizers in agriculture: An overview on concepts, strategies and effects on soil microorganisms
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[17] Richness and metallo-tolerance of cultivable fungi recovered from three high altitude glaciers from Citlaltépetl and Iztaccíhuatl volcanoes (Mexico)
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[18] Selection and characterization of novel zinc-tolerant Trichoderma strains obtained by protoplast fusion
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[19] Helpful Linkages of Trichodermas in the process of Mycoremediation and Mycorestoration
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[21] Uji toleransi dan identifikasi fungi endofit akar tridax procumbens dari tanah tercemar seng (zn) di Pertambangan Minyak Desa Wonocolo, Bojonegoro, Jawa Timur
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[23] Effect of external electric current on adsorption of lead by Penicillium polonicum
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[24] Lead accumulation activity of fungi isolated from Batang Toru, South Tapanuli, North Sumatra
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[25] VIABILITY AND ANTAGONISTIC ABILITY OF THE MOROCCAN STRAIN OF Trichoderma asperellum IN THE PRESENCE OF DIFFERENT HEAVY METALS
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[26] Optimization and statistical modelling of cadmium biosorption process in aqueous medium by Aspergillus niger using response surface methodology and principal …
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[27] Trichoderma spp. in Bioremediation: Current Status and Scope
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[28] Mycoremediation to Remove Heavy Metal Pollution in Post-Mining Areas for Farmland Utilization
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[29] Omics for understanding the tolerant mechanism of Trichoderma asperellum TJ01 to organophosphorus pesticide dichlorvos
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[30] Kemampuan Isolat Jamur Asal Batang Toru Tapanuli Selatan dalam Menyerap Timbal
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[31] IDENTIFICATION AND ISOLATION OF FUNGI IN ABATTOIR AND POULTRY AMENDED PLOTS IN ILORIN, SOUTHERN GUINEA SAVANNA.
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[32] Identification and Isolation of Fungi in Abattoir and Poultry Amended Plots in Ilorin, Southern Guinea Savanna
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[35] DIMINUTION OF HEAVY METALS IN INDUSTRIAL SOLID WASTE BY AN AMALGAMATION OF MYCO AND VERMI REMEDIATION
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[36] Bioremediation of Heavy Metals by Microbes
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[37] Potential biotechnological capabilities of cultivable mycobiota from carwash effluents
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[38] Toxic metals accumulation in Trichoderma asperellum and T. harzianum
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[39] Native isolate of Trichoderma: a biocontrol agent with unique stress tolerance properties
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[40] Microbial Inoculant: Modern Era of Fertilizers and Pesticides
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[41] Native isolate of Trichoderma
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[42] Heavy Metal Contaminants Removal from Wastewater Using the Potential Filamentous Fungi Biomass: A Review
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[43] Quercetin modulates keratoconus metabolism in vitro
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[44] Identificación de genes inducidos en la cepa de biocontrol Trichoderma harzianum cect 2413 durante la interacción con plantas de tomate. Caracterización biológico …
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[45] IDENTIFICACIÓN DE GENES INDUCIDOS EN LA CEPA DE BIOCONTROL Trichoderma harzianum CECT 2413 DURANTE LA INTERACCIÓN CON PLANTAS DE TOMATE. CARACTERIZACIÓN BIOLÓGICO-FUNCIONAL DE LOS GENES qid74 y asp1
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[46] Identificación de genes inducidos en la cepa de biocontrol Trichoderma harzianum cect 2413 durante la interacción con plantas de tomate. Caracterización biológico- …
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[47] Mehanizmi tolerancije slobodnoživećih bakterija i bakterija u biofilmovima na teške metale
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