Dr. Bettina Berger

Profil

Derzeitige StellungProfessor W-1 und Äquivalente
FachgebietPflanzenphysiologie,Genetik der Pflanzen
KeywordsPhenomics, Forward genetics, Salinity stress

Aktuelle Kontaktadresse

LandAustralien
OrtUrrbrae
Universität/InstitutionUniversity of Adelaide
Institut/AbteilungThe Plant Accelerator
Websitehttps://researchers.adelaide.edu.au/profile/bettina.berger

Gastgeber*innen während der Förderung

Prof. Dr. Peter LangridgeAustralian Centre for Plant Functional Genomics, University of Adelaide, Glen Osmond
Beginn der ersten Förderung01.05.2008

Programm(e)

2008Feodor Lynen-Forschungsstipendien-Programm für Postdocs

Publikationen (Auswahl)

2021Stephanie J. Watts-Williams and Alison R. Gill and Nathaniel Jewell and Christopher J. Brien and Bettina Berger and Binh T. T. Tran and Emma Mace and Alan W. Cruickshank and David R. Jordan and Trevor Garnett and Timothy R. Cavagnaro: Enhancement of sorghum grain yield and nutrition: A role for arbuscular mycorrhizal fungi regardless of soil phosphorus availability. In: {PLANTS}, {PEOPLE}, {PLANET}, 2021,
2021M.J. Salomon and S.J. Watts-Williams and M.J. McLaughlin and C.J. Brien and N. Jewell and B. Berger and T.R. Cavagnaro: Evaluation of commercial composts and potting mixes and their ability to support arbuscular mycorrhizal fungi with maize (Zea mays) as host plant. In: Waste Management, 134, 2021, 187--196
2021Matros, Andrea and Houston, Kelly and Tucker, Matthew R and Schreiber, Miriam and Berger, Bettina and Aubert, Matthew K and Wilkinson, Laura G and Witzel, Katja and Waugh, Robbie and Seiffert, Udo and others: Genome-wide association study reveals the genetic complexity of fructan accumulation patterns in barley grain. In: Journal of Experimental Botany, 2021,
2020Bettina Berger and Chana Borjigin and Rhiannon K. Schilling and Jayakumar Bose and Maria Hrmova and Jiaen Qiu and Stefanie Wege and Apriadi Situmorang and Caitlin Byrt and Chris Brien and Bettina Berger and Matthew Gilliham and Allison S. Pearson and Stuart J. Roy: A single nucleotide substitution in TaHKT1;5‐D controls shoot Na+ accumulation in bread wheat. In: Plant Cell \& Environment, 2020,
2020Bettina Berger: Approaches, applications, and future directions for hyperspectral vegetation studies: An emphasis on yield‐limiting factors in~wheat. In: The Plant Phenome Journal, 2020,
2020Bettina Berger and Moumouni Konate and Mike J. Wilkinson and Benjamin T. Mayne and Eileen S. Scott and Bettina Berger and Carlos M. Rodr{\'i}guez L{\'o}pez: Atlas of Age- and Tissue-Specific DNA Methylation during Early Development of Barley ( Hordeum vulgare ). 2020
2020Bettina Berger and Stephanie Saade and Chengdao Li and Chris Brien and Yveline Pailles and Bettina Berger and Mohammad Shahid and Joanne Russell and Robbie Waugh and S{\'o}nia Negr{\~a}o and Mark Tester: Dissecting new genetic components of salinity tolerance in two-row spring barley at the vegetative and reproductive stages. In: PLOS ONE, 2020,
2020Broad, Ronan C and Bonneau, Julien P and Beasley, Jesse T and Roden, Sally and Sadowski, Pawel and Jewell, Nathaniel and Brien, Chris and Berger, Bettina and Tako, Elad and Glahn, Raymond P and others: Effect of Rice GDP-L-Galactose Phosphorylase Constitutive Overexpression on Ascorbate Concentration, Stress Tolerance, and Iron Bioavailability in Rice. In: Frontiers in plant science, 11, 2020,
2020Bettina Berger: Greenhouse Spatial Effects Detected in the Barley (Hordeum vulgare L.) Epigenome Underlie Stochasticity of DNA Methylation. In: Frontiers in Plant Science, 2020,
2020Bettina Berger and Kirsten Rae Ball and Roberto Papa and Sally Anne Power and Chris Brien and Sarah Woodin and Nathaniel Jewell and Bettina Berger and Elise Pendall: High-throughput, image-based phenotyping reveals nutrient-dependent growth facilitation in a grass-legume mixture. In: PLOS ONE, 2020,
2020Bettina Berger and Binh T. T. Tran and Timothy R. Cavagnaro and Nathaniel Jewell and Chris Brien and Bettina Berger and Stephanie J. Watts‐Williams: High‐throughput phenotyping reveals growth of Medicago truncatula is positively affected by arbuscular mycorrhizal fungi even at high soil phosphorus availability. In: Plants People Planet, 2020,
2020Bettina Berger: Hyperspectral imaging and 3D technologies for plant phenotyping: From satellite to close-range sensing. In: Computers and Electronics in Agriculture, 2020,
2020Bettina Berger: Identification of salt tolerance QTL in a wheat RIL mapping population using destructive and non-destructive phenotyping. In: Functional Plant Biology, 2020,
2020Bettina Berger: Smoothing and extraction of traits in the growth analysis of noninvasive phenotypic data. In: Plant Methods, 2020,
2020Bettina Berger and Huajian Liu and Brooke Bruning and Trevor Garnett and Bettina Berger: The Performances of Hyperspectral Sensors for Proximal Sensing of Nitrogen Levels in Wheat. In: Sensors, 2020,
2019Bettina Berger: Genome-wide association of barley plant growth under drought stress using a nested association mapping population. 2019,
2019Bettina Berger: High-throughput 3D modelling to dissect the genetic control of leaf elongation in barley (Hordeum vulgare\ ). 2019,
2019Bettina Berger: Resource allocation to growth or luxury consumption drives mycorrhizal responses. In: Ecology Letters, 2019,
2019Dunlevy, Jake and Blackmore, Deidre and Edwards, Everard and Walker, Rob and Berger, Bettina and Walker, Mandy and others: Rootstocks: Developing a smart, rapid screening method for desirable grapevine rootstock traits. In: Wine \& Viticulture Journal, 34, 2019, 55
2019Bettina Berger and Brooke Bruning and Huajian Liu and Chris Brien and Bettina Berger and Megan Lewis and Trevor Garnett: The Development of Hyperspectral Distribution Maps to Predict the Content and Distribution of Nitrogen and Water in Wheat (Triticum aestivum). In: Frontiers in Plant Science, 2019,
2019Bettina Berger: Using High-Throughput Phenotyping to Explore Growth Responses to Mycorrhizal Fungi and Zinc in Three Plant Species. In: Plant Phenomics, 2019,
2018Asif, M.A. and Schilling, R.K. and Tilbrook, J. and Brien, C. and Dowling, K. and Rabie, H. and Short, L. and Trittermann, C. and Garcia, A. and Barrett-Lennard, E.G. and Berger, B. and Mather, D.E. and Gilliham, M. and Fleury, D. and Tester, M. and Roy, S.J. and Pearson, A.S.: Mapping of novel salt tolerance QTL in an Excalibur ? Kukri doubled haploid wheat population. In: Theoretical and Applied Genetics, 131, 2018, 2179-2196
2018Yichie, Y. and Brien, C. and Berger, B. and Roberts, T.H. and Atwell, B.J.: Salinity tolerance in Australian wild Oryza species varies widely and matches that observed in O. sativa. In: Rice, 11, 2018,
2018Bettina Berger: Salt Stress Induces Non-CG Methylation in Coding Regions of Barley Seedlings (Hordeum vulgare). 2018,
2018Bettina Berger: Tackling Nitrogen Use Efficiency in Cereal Crops Using High-Throughput Phenotyping. 2018
2017Campbell, M.T. and Du, Q. and Liu, K. and Brien, C.J. and Berger, B. and Zhang, C. and Walia, H.: A comprehensive image-based phenomic analysis reveals the complex genetic architecture of shoot growth dynamics in rice (Oryza sativa). In: Plant Genome, 10, 2017,
2017Qiongyan, L. and Cai, J. and Berger, B. and Okamoto, M. and Miklavcic, S.J.: Detecting spikes of wheat plants using neural networks with Laws texture energy. In: Plant Methods, 13, 2017,
2017Bettina Berger and Judith Atieno and Yongle Li and Peter Langridge and Kate Dowling and Chris Brien and Bettina Berger and Rajeev K. Varshney and Tim Sutton: Exploring genetic variation for salinity tolerance in chickpea using image-based phenotyping. In: Scientific Reports, 2017,
2017Meng, R. and Saade, S. and Kurtek, S. and Berger, B. and Brien, C. and Pillen, K. and Tester, M. and Sun, Y.: Growth curve registration for evaluating salinity tolerance in barley. In: Plant Methods, 13, 2017,
2017Bettina Berger and Joanne Tilbrook and Rhiannon K. Schilling and Bettina Berger and Alexandre F. Garcia and Christine Trittermann and Stewart Coventry and Huwaida Rabie and Chris Brien and Martin Nguyen and Mark Tester and Stuart J. Roy: Variation in shoot tolerance mechanisms not related to ion toxicity in barley. In: Functional Plant Biology, 2017,
2016Al-Tamimi, N. and Brien, C. and Oakey, H. and Berger, B. and Saade, S. and Ho, Y.S. and Schmöckel, S.M. and Tester, M. and Negra{\~o}, S.: Salinity tolerance loci revealed in rice using high-throughput non-invasive phenotyping. In: Nature Communications, 7, 2016,
2015Ward, B. and Bastian, J. and Van Den Hengel, A. and Pooley, D. and Bari, R. and Berger, B. and Tester, M.: A model-based approach to recovering the structure of a plant from images. In: Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), 8928, 2015, 215-230
2015Parent, B. and Shahinnia, F. and Maphosa, L. and Berger, B. and Rabie, H. and Chalmers, K. and Kovalchuk, A. and Langridge, P. and Fleury, D.: Combining field performance with controlled environment plant imaging to identify the genetic control of growth and transpiration underlying yield response to water-deficit stress in wheat. In: Journal of Experimental Botany, 66, 2015, 5481-5492
2015Takahashi, F. and Tilbrook, J. and Trittermann, C. and Berger, B. and Roy, S.J. and Seki, M. and Shinozaki, K. and Tester, M.: Comparison of leaf sheath transcriptome profiles with physiological traits of bread wheat cultivars under salinity stress. In: PLoS ONE, 10, 2015,
2015Schmöckel, S.M. and Garcia, A.F. and Berger, B. and Tester, M. and Webb, A.A.R. and Roy, S.J.: Different NaCl-induced calcium signatures in the arabidopsis thaliana ecotypes Col-0 and C24. In: PLoS ONE, 10, 2015,
2015Malachy T. Campbell and Avi C. Knecht and Bettina Berger and Chris J. Brien and Dong Wang and Harkamal Walia: Integrating Image-Based Phenomics and Association Analysis to Dissect the Genetic Architecture of Temporal Salinity Responses in Rice. In: Plant Physiology, 168, 2015, 1476--1489
2015Neilson, E.H. and Edwards, A.M. and Blomstedt, C.K. and Berger, B. and M?ller, B.L. and Gleadow, R.M.: Utilization of a high-throughput shoot imaging system to examine the dynamic phenotypic responses of a C\<inf\>4\</inf\> cereal crop plant to nitrogen and water deficiency over time. In: Journal of Experimental Botany, 66, 2015, 1817-1832
2014Schilling, R.K. and Marschner, P. and Shavrukov, Y. and Berger, B. and Tester, M. and Roy, S.J. and Plett, D.C.: Expression of the Arabidopsis vacuolar H+-pyrophosphatase gene (AVP1) improves the shoot biomass of transgenic barley and increases grain yield in a saline field. In: Plant Biotechnology Journal, 12, 2014, 378-386
2014Honsdorf, N. and March, T.J. and Berger, B. and Tester, M. and Pillen, K.: High-throughput phenotyping to detect drought tolerance QTL in wild barley introgression lines. In: PLoS ONE, 9, 2014,
2014Hairmansis, A. and Berger, B. and Tester, M. and Roy, S.J.: Image-based phenotyping for non-destructive screening of different salinity tolerance traits in rice. In: Rice, 7, 2014, 1-10
2014Frerigmann, H. and Berger, B. and Gigolashvili, T.: bHLH05 is an interaction partner of MYB51 and a novel regulator of glucosinolate biosynthesis in arabidopsis. In: Plant Physiology, 166, 2014, 349-369
2013Brien, C.J. and Berger, B. and Rabie, H. and Tester, M.: Accounting for variation in designing greenhouse experiments with special reference to greenhouses containing plants on conveyor systems. In: Plant Methods, 9, 2013,
2013Berger, B. and De Regt, B. and Tester, M.: Applications of high-throughput plant phenotyping to study nutrient use efficiency. In: Methods in Molecular Biology, 953, 2013, 277-290
2013Hayes, J.E. and Pallotta, M. and Baumann, U. and Berger, B. and Langridge, P. and Sutton, T.: Germanium as a tool to dissect boron toxicity effects in barley and wheat. In: Functional Plant Biology, 40, 2013, 618-627
2012Berger, B. and De Regt, B. and Tester, M.: High-throughput phenotyping of plant shoots. In: Methods in Molecular Biology, 918, 2012, 9-20
2012Berger, B. and De Regt, B. and Tester, M.: Trait dissection of salinity tolerance with plant phenomics. In: Methods in Molecular Biology, 913, 2012, 399-413
2012Berger, B. and de Regt, B. and Tester, M.: Trait dissection of salinity tolerance with plant phenomics.. In: Methods in molecular biology (Clifton, N.J.), 913, 2012, 399-413
2011Golzarian, M.R. and Frick, R.A. and Rajendran, K. and Berger, B. and Roy, S. and Tester, M. and Lun, D.S.: Accurate inference of shoot biomass from high-throughput images of cereal plants. In: Plant Methods, 7, 2011,
2010Berger, B. and Parent, B. and Tester, M.: High-throughput shoot imaging to study drought responses. In: Journal of Experimental Botany, 61, 2010, 3519-3528
2009Plett, D. and Berger, B. and Tester, M.: Genetic Determinants of Salinity Tolerance in Crop Plants. In: Genes for Plant Abiotic Stress, 2009, 81-111
2009Gigolashvili, T. and Berger, B. and Flügge, U.-I.: Specific and coordinated control of indolic and aliphatic glucosinolate biosynthesis by R2R3-MYB transcription factors in Arabidopsis thaliana. In: Phytochemistry Reviews, 8, 2009, 3-13
2008Roy, S.J. and Gilliham, M. and Berger, B. and Essah, P.A. and Cheffings, C. and Miller, A.J. and Davenport, R.J. and Liu, L.-H. and Skynner, M.J. and Davies, J.M. and Richardson, P. and Leigh, R.A. and Tester, M.: Investigating glutamate receptor-like gene co-expression in Arabidopsis thaliana. In: Plant, Cell and Environment, 31, 2008, 861-871
2007Berger, B. and Stracke, R. and Yatusevich, R. and Weisshaar, B. and Flügge, U.-I. and Gigolashvili, T.: A simplified method for the analysis of transcription factor-promoter interactions that allows high-throughput data generation. In: Plant Journal, 50, 2007, 911-916
2007Gigolashvili, T. and Yatusevich, R. and Berger, B. and Müller, C. and Flügge, U.-I.: The R2R3-MYB transcription factor HAG1/MYB28 is a regulator of methionine-derived glucosinolate biosynthesis in Arabidopsis thaliana. In: Plant Journal, 51, 2007, 247-261
2007Gigolashvili, T. and Berger, B. and Mock, H.-P. and Müller, C. and Weisshaar, B. and Flügge, U.-I.: The transcription factor HIG1/MYB51 regulates indolic glucosinolate biosynthesis in Arabidopsis thaliana. In: Plant Journal, 50, 2007, 886-901