bioRxiv · 10.1101/2024.08.26.609741
Maize genetic diversity identifies moisture-dependent root-branch signaling pathways
Abstract
Plants grow complex root systems to extract unevenly distributed resources from soils. Spatial differences in soil moisture are perceived by root tips leading to the patterning of new root branches towards available water, a process called hydropatterning. Little is known about hydropatterning behavior and its genetic basis in crops plants. Here, we develop an assay to measure hydropatterning in maize and reveal substantial differences between tropical/subtropical and temperate maize breeding germplasm that likely resulted from divergent selection. Genetic dissection of hydropatterning confirmed the regulatory role of auxin and revealed that the gaseous hormone ethylene acts to locally inhibit root branching from air-exposed tissues. These findings demonstrate the crop relevance of hydropatterning and establish its genetic basis.
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Scharwies, J. D., Clarke, T., Zheng, Z., Dinneny, A., Birkeland, S., Veltman, M. A., Sturrock, C. J., Torres-Martinez, H. H., Viana, W. G., Khare, R., Kieber, J., Pandey, B. K. K., Bennett, M. J., Schnable, P. S., Dinneny, J. R.. 2024-08-27. Maize genetic diversity identifies moisture-dependent root-branch signaling pathways. https://doi.org/10.1101/2024.08.26.609741
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