Skip to main content

Research Repository

Advanced Search

All Outputs (7)

Glutaredoxin regulation of primary root growth is associated with early drought stress tolerance in pearl millet (2023)
Journal Article
de la Fuente, C., Grondin, A., Sine, B., Debieu, M., Belin, C., Hajjarpoor, A., …Laplaze, L. (2023). Glutaredoxin regulation of primary root growth is associated with early drought stress tolerance in pearl millet. eLife, 12, Article RP86169. https://doi.org/10.7554/elife.86169.3

Seedling root traits impact plant establishment under challenging environments. Pearl millet is one of the most heat and drought tolerant cereal crops that provides a vital food source across the sub-Saharan Sahel region. Pearl millet’s early root sy... Read More about Glutaredoxin regulation of primary root growth is associated with early drought stress tolerance in pearl millet.

Uncovering root compaction response mechanisms: new insights and opportunities (2023)
Journal Article
Pandey, B. K., & Bennett, M. J. (2024). Uncovering root compaction response mechanisms: new insights and opportunities. Journal of Experimental Botany, 75(2), 578-583. https://doi.org/10.1093/jxb/erad389

Compaction disrupts soil structure, reducing root growth, nutrient and water uptake, gas exchange, and microbial growth. Root growth inhibition by soil compaction was originally thought to reflect the impact of mechanical impedance and reduced water... Read More about Uncovering root compaction response mechanisms: new insights and opportunities.

Mechanistic insight into the role of AUXIN RESISTANCE4 in trafficking of AUXIN1 and LIKE AUX1-2 (2023)
Journal Article
Tidy, A., Abu Bakar, N., Carrier, D., Kerr, I. D., Hodgman, C., Bennett, M. J., & Swarup, R. (2024). Mechanistic insight into the role of AUXIN RESISTANCE4 in trafficking of AUXIN1 and LIKE AUX1-2. Plant Physiology, 194(1), 422-433. https://doi.org/10.1093/plphys/kiad506

AUXIN RESISTANCE4 (AXR4) regulates the trafficking of auxin influx carrier AUXIN1 (AUX1), a plasma-membrane protein that predominantly localizes to the endoplasmic reticulum (ER) in the absence of AXR4. In Arabidopsis (Arabidopsis thaliana), AUX1 is... Read More about Mechanistic insight into the role of AUXIN RESISTANCE4 in trafficking of AUXIN1 and LIKE AUX1-2.

Turning up the volume: How root branching adaptive responses aid water foraging (2023)
Journal Article
Mehra, P., Fairburn, R., Leftley, N., Banda, J., & Bennett, M. J. (2023). Turning up the volume: How root branching adaptive responses aid water foraging. Current Opinion in Plant Biology, 75, Article 102405. https://doi.org/10.1016/j.pbi.2023.102405

Access to water is critical for all forms of life. Plants primarily access water through their roots. Root traits such as branching are highly sensitive to water availability, enabling plants to adapt their root architecture to match soil moisture di... Read More about Turning up the volume: How root branching adaptive responses aid water foraging.

Sarbecoviruses of British Horseshoe Bats; Sequence Variation and Epidemiology (2023)
Journal Article
Apaa, T., Withers, A. J., Staley, C. E., Blanchard, A. M., Bennett, M., Bremner-Harrison, S., …Tarlinton, R. E. (2023). Sarbecoviruses of British Horseshoe Bats; Sequence Variation and Epidemiology. Journal of General Virology, 104(6), Article 001859. https://doi.org/10.1101/2023.02.14.528476

Horseshoe bats are the natural hosts of the Sarbecovirus subgenus that includes SARS-CoV and SARS-CoV- 2. Despite the devastating impact of the COVID-19 pandemic, there is still little known about the underlying epidemiology and virology of sarbecovi... Read More about Sarbecoviruses of British Horseshoe Bats; Sequence Variation and Epidemiology.

Transcription factor bHLH121 regulates root cortical aerenchyma formation in maize (2023)
Journal Article
Schneider, H. M., Lor, V. S., Zhang, X., Saengwilai, P., Hanlon, M. T., Klein, S. P., …Lynch, J. P. (2023). Transcription factor bHLH121 regulates root cortical aerenchyma formation in maize. Proceedings of the National Academy of Sciences, 120(12), Article e2219668120. https://doi.org/10.1073/pnas.2219668120

Root anatomical phenotypes present a promising yet underexploited avenue to deliver major improvements in yield and climate resilience of crops by improving water and nutrient uptake. For instance, the formation of root cortical aerenchyma (RCA) sign... Read More about Transcription factor bHLH121 regulates root cortical aerenchyma formation in maize.

Relationships between soil and badger elemental concentrations across a heterogeneously contaminated landscape (2023)
Journal Article
Sartorius, A., Cahoon, M., Corbetta, D., Grau-Roma, L., Johnson, M. F., Sandoval Barron, E., …Bennett, M. (2023). Relationships between soil and badger elemental concentrations across a heterogeneously contaminated landscape. Science of the Total Environment, 869, Article 161684. https://doi.org/10.1016/j.scitotenv.2023.161684

Understanding the links between environmental and wildlife elemental concentrations is key to help assess ecosystem functions and the potential effects of legacy pollutants. In this study, livers from 448 European badgers (Meles meles) collected acro... Read More about Relationships between soil and badger elemental concentrations across a heterogeneously contaminated landscape.