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Professor

Michael Udvardi

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Overview

Availability

Professor Michael Udvardi is:
Available for supervision

Qualifications

  • Doctor of Philosophy, Australian National University

Works

Search Professor Michael Udvardi’s works on UQ eSpace

232 works between 1986 and 2026

81 - 100 of 232 works

2015

Journal Article

PvNAC1 and PvNAC2 Are Associated with Leaf Senescence and Nitrogen Use Efficiency in Switchgrass

Yang, Jiading, Worley, Eric, Torres-Jerez, Ivone, Miller, Randall, Wang, Mingyi, Fu, Chunxiang, Wang, Zeng-Yu, Tang, Yuhong and Udvardi, Michael (2015). PvNAC1 and PvNAC2 Are Associated with Leaf Senescence and Nitrogen Use Efficiency in Switchgrass. BioEnergy Research, 8 (2), 868-880. doi: 10.1007/s12155-014-9566-x

PvNAC1 and PvNAC2 Are Associated with Leaf Senescence and Nitrogen Use Efficiency in Switchgrass

2015

Book Chapter

Retrotransposon (Tnt1)-Insertion Mutagenesis in Medicago as a Tool for Genetic Dissection of Symbiosis in Legumes

Pislariu, Catalina I., Sinharoy, Senjuti, Wen, JiangQi, Murray, Jeremy D., Ratet, Pascal and Udvardi, Michael K. (2015). Retrotransposon (Tnt1)-Insertion Mutagenesis in Medicago as a Tool for Genetic Dissection of Symbiosis in Legumes. Biological Nitrogen Fixation. (pp. 837-853) edited by DeBruijn, FJ. Hoboken, NJ United States: John Wiley & Sons.

Retrotransposon (Tnt1)-Insertion Mutagenesis in Medicago as a Tool for Genetic Dissection of Symbiosis in Legumes

2015

Book Chapter

Functional Genomics of Symbiotic Nitrogen Fixation in Legumes with a Focus on Transcription Factors and Membrane Transporters

Sinharoy, Senjuti, Kryvoruchko, Igor S., Pislariu, Catalina I., González-Guerrero, Manuel, Benedito, Vagner A. and Udvardi, Michael K. (2015). Functional Genomics of Symbiotic Nitrogen Fixation in Legumes with a Focus on Transcription Factors and Membrane Transporters. Biological Nitrogen Fixation. (pp. 823-836) Wiley Blackwell. doi: 10.1002/9781119053095.ch82

Functional Genomics of Symbiotic Nitrogen Fixation in Legumes with a Focus on Transcription Factors and Membrane Transporters

2015

Journal Article

A high-throughput rna interference (RNAI)-Based approach using hairy roots for the study of plant–Rhizobia interactions

Sinharoy, Senjuti, Pislariu, Catalina I. and Udvardi, Michael K. (2015). A high-throughput rna interference (RNAI)-Based approach using hairy roots for the study of plant–Rhizobia interactions. Methods in Molecular Biology, 1287, 159-178. doi: 10.1007/978-1-4939-2453-0_12

A high-throughput rna interference (RNAI)-Based approach using hairy roots for the study of plant–Rhizobia interactions

2015

Book Chapter

Retrotransposon (Tnt1)-Insertion Mutagenesis in Medicago as a Tool for Genetic Dissection of Symbiosis in Legumes

Pislariu, Catalina I., Sinharoy, Senjuti, Wen, Jiangqi, Murray, Jeremy D., Ratet, Pascal and Udvardi, Michael K. (2015). Retrotransposon (Tnt1)-Insertion Mutagenesis in Medicago as a Tool for Genetic Dissection of Symbiosis in Legumes. Biological Nitrogen Fixation. (pp. 837-854) Wiley Blackwell. doi: 10.1002/9781119053095.ch83

Retrotransposon (Tnt1)-Insertion Mutagenesis in Medicago as a Tool for Genetic Dissection of Symbiosis in Legumes

2015

Book Chapter

Functional Genomics of Symbiotic Nitrogen Fixation in Legumes with a Focus on Transcription Factors and Membrane Transporters

Sinharoy, Senjuti, Kryvoruchko, Igor S., Pislariu, Catalina I., Gonzalez-Guerrero, Manuel, Benedito, Vagner A. and Udvardi, Michael K. (2015). Functional Genomics of Symbiotic Nitrogen Fixation in Legumes with a Focus on Transcription Factors and Membrane Transporters. Biological Nitrogen Fixation. (pp. 823-836) edited by DeBruijn, FJ. Hoboken, NJ United States: John Wiley & Sons.

Functional Genomics of Symbiotic Nitrogen Fixation in Legumes with a Focus on Transcription Factors and Membrane Transporters

2014

Journal Article

Control of vegetative to reproductive phase transition improves biomass yield and simultaneously reduces lignin content in Medicago truncatula

Tadege, Million, Chen, Fang, Murray, Jeremy, Wen, Jiangqi, Ratet, Pascal, Udvardi, Michael K., Dixon, Richard A. and Mysore, Kirankumar S. (2014). Control of vegetative to reproductive phase transition improves biomass yield and simultaneously reduces lignin content in Medicago truncatula. BioEnergy Research, 8 (2), 857-867. doi: 10.1007/s12155-014-9565-y

Control of vegetative to reproductive phase transition improves biomass yield and simultaneously reduces lignin content in Medicago truncatula

2014

Journal Article

A NAP-AAO3 Regulatory Module Promotes Chlorophyll Degradation via ABA Biosynthesis in Arabidopsis Leaves

Yang, Jiading, Worley, Eric and Udvardi, Michael (2014). A NAP-AAO3 Regulatory Module Promotes Chlorophyll Degradation via ABA Biosynthesis in Arabidopsis Leaves. The Plant Cell, 26 (12), 4862-4874. doi: 10.1105/tpc.114.133769

A NAP-AAO3 Regulatory Module Promotes Chlorophyll Degradation via ABA Biosynthesis in Arabidopsis Leaves

2014

Journal Article

Global reprogramming of transcription and metabolism in Medicago truncatula during progressive drought and after rewatering

Zhang, Ji-Yi, Cruz DE Carvalho, Maria H., Torres-Jerez, Ivone, Kang, Yun, Allen, Stacy N., Huhman, David V., Tang, Yuhong, Murray, Jeremy, Sumner, Lloyd W. and Udvardi, Michael K. (2014). Global reprogramming of transcription and metabolism in Medicago truncatula during progressive drought and after rewatering. Plant, Cell & Environment, 37 (11), 2553-76. doi: 10.1111/pce.12328

Global reprogramming of transcription and metabolism in Medicago truncatula during progressive drought and after rewatering

2014

Journal Article

Diversity of nitrogen-fixing bacteria associated with switchgrass in the native tallgrass prairie of northern Oklahoma

Bahulikar, Rahul A., Torres-Jerez, Ivone, Worley, Eric, Craven, Kelly and Udvardi, Michael K. (2014). Diversity of nitrogen-fixing bacteria associated with switchgrass in the native tallgrass prairie of northern Oklahoma. Applied and Environmental Microbiology, 80 (18), 5636-5643. doi: 10.1128/AEM.02091-14

Diversity of nitrogen-fixing bacteria associated with switchgrass in the native tallgrass prairie of northern Oklahoma

2014

Journal Article

Extreme specificity of NCR gene expression in Medicago truncatula

Guefrachi, Ibtissem, Nagymihaly, Marianna, Pislariu, Catalina I., Van de Velde, Willem, Ratet, Pascal, Mars, Mohamed, Udvardi, Michael K., Kondorosi, Eva, Mergaert, Peter and Alunni, Benoît (2014). Extreme specificity of NCR gene expression in Medicago truncatula. BMC Genomics, 15 (1) 712. doi: 10.1186/1471-2164-15-712

Extreme specificity of NCR gene expression in Medicago truncatula

2014

Journal Article

Keel petal incision: a simple and efficient method for genetic crossing in Medicago truncatula

Veerappan, Vijaykumar, Kadel, Khem, Alexis, Naudin, Scott, Ashley, Kryvoruchko, Igor, Sinharoy, Senjuti, Taylor, Mark, Udvardi, Michael and Dickstein, Rebecca (2014). Keel petal incision: a simple and efficient method for genetic crossing in Medicago truncatula. Plant Methods, 10 (1) 11. doi: 10.1186/1746-4811-10-11

Keel petal incision: a simple and efficient method for genetic crossing in Medicago truncatula

2014

Journal Article

The H+-ATPase HA1 of Medicago truncatula is essential for phosphate transport and plant growth during arbuscular mycorrhizal symbiosis

Krajinski, Franziska, Courty, Pierre-Emmanuel, Sieh, Daniela, Franken, Philipp, Zhang, Haoqiang, Bucher, Marcel, Gerlach, Nina, Kryvoruchko, Igor, Zoeller, Daniela, Udvardi, Michael and Hause, Bettina (2014). The H+-ATPase HA1 of Medicago truncatula is essential for phosphate transport and plant growth during arbuscular mycorrhizal symbiosis. The Plant Cell, 26 (4), 1808-1817. doi: 10.1105/tpc.113.120436

The H+-ATPase HA1 of Medicago truncatula is essential for phosphate transport and plant growth during arbuscular mycorrhizal symbiosis

2014

Journal Article

An efficient reverse genetics platform in the model legume Medicago truncatula

Cheng, Xiaofei, Wang, Mingyi, Lee, Hee-Kyung, Tadege, Million, Ratet, Pascal, Udvardi, Michael, Mysore, Kirankumar S. and Wen, Jiangqi (2014). An efficient reverse genetics platform in the model legume Medicago truncatula. New Phytologist, 201 (3), 1065-1076. doi: 10.1111/nph.12575

An efficient reverse genetics platform in the model legume Medicago truncatula

2014

Journal Article

Lignin modification leads to increased nodule numbers in Alfalfa

Gallego-Giraldo, Lina, Bhattarai, Kishor, Pislariu, Catalina I., Nakashima, Jin, Jikumaru, Yusuke, Kamiya, Yuji, Udvardi, Michael K., Monteros, Maria J. and Dixon, Richard A. (2014). Lignin modification leads to increased nodule numbers in Alfalfa. Plant Physiology, 164 (3), 1139-1150. doi: 10.1104/pp.113.232421

Lignin modification leads to increased nodule numbers in Alfalfa

2014

Book Chapter

A Tutorial on Lotus japonicus Transcriptomic Tools

Verdier, Jerome, Bandyopadhyay, Kaustav and Udvardi, Michael (2014). A Tutorial on Lotus japonicus Transcriptomic Tools. Lotus Japonicus Genome. (pp. 183-199) edited by Tabata, S and Stougaard, J. Berlin, Germany: Springer. doi: 10.1007/978-3-662-44270-8_17

A Tutorial on Lotus japonicus Transcriptomic Tools

2013

Journal Article

PlantTFcat: An online plant transcription factor and transcriptional regulator categorization and analysis tool

Dai, Xinbin, Sinharoy, Senjuti, Udvardi, Michael and Zhao, Patrick X. (2013). PlantTFcat: An online plant transcription factor and transcriptional regulator categorization and analysis tool. BMC Bioinformatics, 14 (1) 321. doi: 10.1186/1471-2105-14-321

PlantTFcat: An online plant transcription factor and transcriptional regulator categorization and analysis tool

2013

Journal Article

A regulatory network-based approach dissects late maturation processes related to the acquisition of desiccation tolerance and longevity of Medicago truncatula seeds

Verdier, Jerome, Lalanne, David, Pelletier, Sandra, Torres-Jerez, Ivone, Righetti, Karima, Bandyopadhyay, Kaustav, Leprince, Olivier, Chatelain, Emilie, Vu, Benoit Ly, Gouzy, Jerome, Gamas, Pascal, Udvardi, Michael K. and Buitink, Julia (2013). A regulatory network-based approach dissects late maturation processes related to the acquisition of desiccation tolerance and longevity of Medicago truncatula seeds. Plant Physiology, 163 (2), 757-774. doi: 10.1104/pp.113.222380

A regulatory network-based approach dissects late maturation processes related to the acquisition of desiccation tolerance and longevity of Medicago truncatula seeds

2013

Journal Article

The C2H2 Transcription Factor REGULATOR OF SYMBIOSOME DIFFERENTIATION Represses Transcription of the Secretory Pathway Gene VAMP721a and Promotes Symbiosome Development in Medicago truncatula

Sinharoy, Senjuti, Torres-Jerez, Ivone, Bandyopadhyay, Kaustav, Kereszt, Attila, Pislariu, Catalina I., Nakashima, Jin, Benedito, Vagner A., Kondorosi, Eva and Udvardi, Michael K. (2013). The C2H2 Transcription Factor REGULATOR OF SYMBIOSOME DIFFERENTIATION Represses Transcription of the Secretory Pathway Gene VAMP721a and Promotes Symbiosome Development in Medicago truncatula. The Plant Cell, 25 (9), 3584-3601. doi: 10.1105/tpc.113.114017

The C2H2 Transcription Factor REGULATOR OF SYMBIOSOME DIFFERENTIATION Represses Transcription of the Secretory Pathway Gene VAMP721a and Promotes Symbiosome Development in Medicago truncatula

2013

Journal Article

Transcriptomic and metabolic changes associated with photorespiratory ammonium accumulation in the model legume Lotus japonicus

Pérez-Delgado, Carmen M., García-Calderón, Margarita, Sánchez, Diego H., Udvardi, Michael K., Kopka, Joachim, Márquez, Antonio J. and Betti, Marco (2013). Transcriptomic and metabolic changes associated with photorespiratory ammonium accumulation in the model legume Lotus japonicus. Plant Physiology, 162 (4), 1834-1848. doi: 10.1104/pp.113.217216

Transcriptomic and metabolic changes associated with photorespiratory ammonium accumulation in the model legume Lotus japonicus

Funding

Current funding

  • 2026 - 2029
    Accelerating sustainability by improving nitrogen fixation of legume crops
    ARC Discovery Projects
    Open grant
  • 2024 - 2028
    Genetic initiative to transform symbiotic nitrogen fixation in Australian pulse crops
    PROC-9176963 Genetic initiative to transform symbiotic nitrogen fixation in Australian pulse crops
    Open grant

Supervision

Availability

Professor Michael Udvardi is:
Available for supervision

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Supervision history

Current supervision

Media

Enquiries

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