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Kyle R Pomraning

Showing results (21-30 of 48) with videos related to

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BMC Plant Biology|June 27, 2013
Methylome reorganization during in vitro dedifferentiation and regeneration of Populus trichocarpaKelly Vining, Kyle R Pomraning, Larry J Wilhelm, et al.
Biomaterials|June 30, 2006
Heparin-regulated release of growth factors in vitro and angiogenic response in vivo to implanted hyaluronan hydrogels containing VEGF and bFGFDaniel B Pike, Shenshen Cai, Kyle R Pomraning, et al.
Biomicrofluidics|October 3, 2017
Multimodal microfluidic platform for controlled culture and analysis of unicellular organismsTao Geng, Chuck R Smallwood, Erin L Bredeweg, et al.
Current Genetics|August 20, 2018
Deletion of the KU70 homologue facilitates gene targeting in Lipomyces starkeyi strain NRRL Y-11558Ziyu Dai, Kyle R Pomraning, Shuang Deng, et al.
ACS Synthetic Biology|April 29, 2021
Genetically Engineered Oleaginous Yeast <i>Lipomyces starkeyi</i> for Sesquiterpene α-Zingiberene ProductionZiyu Dai, Kyle R Pomraning, Ellen A Panisko, et al.
Fungal Biology and Biotechnology|July 8, 2023
Rapid and robust squashed spore/colony PCR of industrially important fungiGuoliang Yuan, Jeffrey J Czajka, Ziyu Dai, et al.
BMC Genomics|February 26, 2016
Multi-omics analysis reveals regulators of the response to nitrogen limitation in Yarrowia lipolyticaKyle R Pomraning, Young-Mo Kim, Carrie D Nicora, et al.
Biotechnology for Biofuels|July 11, 2019
Transcriptomic analysis of the oleaginous yeast <i>Lipomyces starkeyi</i> during lipid accumulation on enzymatically treated corn stover hydrolysateKyle R Pomraning, James R Collett, Joonhoon Kim, et al.
Plos One|April 24, 2015
Comprehensive Metabolomic, Lipidomic and Microscopic Profiling of Yarrowia lipolytica during Lipid Accumulation Identifies Targets for Increased LipogenesisKyle R Pomraning, Siwei Wei, Sue A Karagiosis, et al.
Bioresource Technology|March 19, 2026
Host analysis-guided selection and targeted engineering (HASTE) of Lipomyces tetrasporus for the conversion of CO<sub>2</sub>-derived feedstocksZhengyang Xiao, Jeffrey J Czajka, Jasmin Alvarez, et al.
Pageof 5

Showing results (21-30 of 48) with videos related to

Sort By:
Pageof 5
BMC Plant Biology|June 27, 2013
Methylome reorganization during in vitro dedifferentiation and regeneration of Populus trichocarpaKelly Vining, Kyle R Pomraning, Larry J Wilhelm, et al.
Biomaterials|June 30, 2006
Heparin-regulated release of growth factors in vitro and angiogenic response in vivo to implanted hyaluronan hydrogels containing VEGF and bFGFDaniel B Pike, Shenshen Cai, Kyle R Pomraning, et al.
Biomicrofluidics|October 3, 2017
Multimodal microfluidic platform for controlled culture and analysis of unicellular organismsTao Geng, Chuck R Smallwood, Erin L Bredeweg, et al.
Current Genetics|August 20, 2018
Deletion of the KU70 homologue facilitates gene targeting in Lipomyces starkeyi strain NRRL Y-11558Ziyu Dai, Kyle R Pomraning, Shuang Deng, et al.
ACS Synthetic Biology|April 29, 2021
Genetically Engineered Oleaginous Yeast <i>Lipomyces starkeyi</i> for Sesquiterpene α-Zingiberene ProductionZiyu Dai, Kyle R Pomraning, Ellen A Panisko, et al.
Fungal Biology and Biotechnology|July 8, 2023
Rapid and robust squashed spore/colony PCR of industrially important fungiGuoliang Yuan, Jeffrey J Czajka, Ziyu Dai, et al.
BMC Genomics|February 26, 2016
Multi-omics analysis reveals regulators of the response to nitrogen limitation in Yarrowia lipolyticaKyle R Pomraning, Young-Mo Kim, Carrie D Nicora, et al.
Biotechnology for Biofuels|July 11, 2019
Transcriptomic analysis of the oleaginous yeast <i>Lipomyces starkeyi</i> during lipid accumulation on enzymatically treated corn stover hydrolysateKyle R Pomraning, James R Collett, Joonhoon Kim, et al.
Plos One|April 24, 2015
Comprehensive Metabolomic, Lipidomic and Microscopic Profiling of Yarrowia lipolytica during Lipid Accumulation Identifies Targets for Increased LipogenesisKyle R Pomraning, Siwei Wei, Sue A Karagiosis, et al.
Bioresource Technology|March 19, 2026
Host analysis-guided selection and targeted engineering (HASTE) of Lipomyces tetrasporus for the conversion of CO<sub>2</sub>-derived feedstocksZhengyang Xiao, Jeffrey J Czajka, Jasmin Alvarez, et al.
Pageof 5