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Scientific Reports|February 10, 2023
Accelerated degradation of plastic products via yeast enzyme treatmentHiroko Kitamoto, Motoo Koitabashi, Yuka Sameshima-Yamashita, et al.Applied Microbiology and Biotechnology|December 24, 2015
High-level recombinant protein production by the basidiomycetous yeast Pseudozyma antarctica under a xylose-inducible xylanase promoterTakashi Watanabe, Tomotake Morita, Hideaki Koike, et al.Toxins|June 21, 2020
In Vitro Assessment of Biocontrol Effects on Fusarium Head Blight and Deoxynivalenol (DON) Accumulation by DON-Degrading BacteriaHiroyuki Morimura, Michihiro Ito, Shigenobu Yoshida, et al.Journal of Oleo Science|February 16, 2016
Enhancement of Biodegradable Plastic-degrading Enzyme Production from Paraphoma-like Fungus, Strain B47-9Yuka Sameshima-Yamashita, Motoo Koitabashi, Wataru Tsuchiya, et al.Applied Microbiology and Biotechnology|December 11, 2012
Affinity purification and characterization of a biodegradable plastic-degrading enzyme from a yeast isolated from the larval midgut of a stag beetle, Aegus laevicollisKen Suzuki, Hironori Sakamoto, Yukiko Shinozaki, et al.AMB Express|August 4, 2012
Degradation of biodegradable plastic mulch films in soil environment by phylloplane fungi isolated from gramineous plantsMotoo Koitabashi, Masako T Noguchi, Yuka Sameshima-Yamashita, et al.Applied Microbiology and Biotechnology|September 22, 2010
Nocardioides sp. strain WSN05-2, isolated from a wheat field, degrades deoxynivalenol, producing the novel intermediate 3-epi-deoxynivalenolYoko Ikunaga, Ikuo Sato, Stephanie Grond, et al.Applied Microbiology and Biotechnology|June 9, 2012
Biodegradable plastic-degrading enzyme from Pseudozyma antarctica: cloning, sequencing, and characterizationYukiko Shinozaki, Tomotake Morita, Xiao-hong Cao, et al.AMB Express|December 1, 2011
Phyllosphere yeasts rapidly break down biodegradable plasticsHiroko K Kitamoto, Yukiko Shinozaki, Xiao-Hong Cao, et al.Pageof 3