Phytohormonal Control of Root Development and Architecture

Authors

  • Gejar Tacha Department of Agronomy, Post-Graduate College of Agriculture, Dr. Rajendra Prasad Central Agricultural University, Pusa, Samastipur-848125
  • Jyostnarani Pradhan Department of Botany, Plant Physiology and Biochemistry, College of Basic Sciences and Humanities, Dr. Rajendra Prasad Central Agricultural University, Pusa, Samastipur-848125

DOI:

https://doi.org/10.5281/zenodo.16942244

Keywords:

root system architecture, phytohormones, cross talk, climate change, use-efficiency

Abstract

Root System Architecture (RSA) is a critical determinant of plant water and nutrient acquisition, stress tolerance, and anchorage. Its development is orchestrated by a complex network of phytohormones that integrate genetic programs with environmental cues. Auxin acts as the central regulator for directing meristem differentiation, cell elongation, and lateral root initiation, xylem differentiation while hormones like cytokinins, gibberellins, ethylene, jasmonic acid, abscisic acid, strigolactones, and brassinosteroids modify the activity of Auxin or influence specific RSA traits independently. The crosstalk among the hormones decides the dynamic reprogramming of growth patterns of root under various stresses such as drought, salinity, and nutrient limitations. Understanding these regulatory interactions provides valuable opportunities for crop breeding with optimised root traits for improved resource-use efficiency and tolerance against changing climate.

References

Coudert, Y., Périn, C., Courtois, B., Khong, N. G., & Gantet, P. (2010). Genetic control of root development in rice, the model cereal. Trends in Plant Science, 15(4), 219–226. https://doi.org/10.1016/j.tplants.2010.01.008

Goh, T., Kasahara, H., Mimura, T., Kamiya, Y., & Fukaki, H. (2012). Multiple AUX/IAA–ARF modules regulate lateral root formation: The role of Arabidopsis SHY2/IAA3-mediated auxin signalling. Philosophical Transactions of the Royal Society B: Biological Sciences, 367(1595), 1461–1468. https://doi.org/10.1098/rstb.2011.0232

Grieneisen, V. A., Xu, J., Marée, A. F. M., Hogeweg, P., &Scheres, B. (2007). Auxin transport is sufficient to generate a maximum and gradient guiding root growth. Nature, 449(7165), 1008–1013. https://doi.org/10.1038/nature06215

Koevoets, I. T., Venema, J. H., Elzenga, J. T. M., & Testerink, C. (2016). Roots withstanding their environment: Exploiting root system architecture responses to abiotic stress to improve crop tolerance. Frontiers in Plant Science, 7, 1335. https://doi.org/10.3389/fpls.2016.01335

Laplaze, L., Benkova, E., Casimiro, I., Maes, L., Vanneste, S., Swarup, R., ... & Bennett, M. (2007). Cytokinins act directly on lateral root founder cells to inhibit root initiation. The Plant Cell, 19(2), 388–401. https://doi.org/10.1105/tpc.106.041204

Satbhai, S. B., Ristova, D., & Busch, W. (2015). Underground tuning: Quantitative regulation of root growth. Journal of Experimental Botany, 66(4), 1099–1112. https://doi.org/10.1093/jxb/eru529

Smith, S., & De Smet, I. (2012). Root system architecture: Insights from Arabidopsis and cereal crops. Philosophical Transactions of the Royal Society B: Biological Sciences, 367(1595), 1441–1452. https://doi.org/10.1098/rstb.2011.0234

Steffens, B., Wang, J., & Sauter, M. (2011). Interactions between ethylene, gibberellins, and abscisic acid regulate emergence and growth rate of adventitious roots in deepwater rice. Plant Physiology, 156(2), 905–915. https://doi.org/10.1104/pp.111.174417

Ubeda-Tomás, S., Federici, F., Casimiro, I., Beemster, G. T. S., Bhalerao, R., Swarup, R., ... & Dodd, A. N. (2009). Gibberellin signaling in the endodermis controls Arabidopsis root meristem size. Current Biology, 19(14), 1194–1199. https://doi.org/10.1016/j.cub.2009.06.023

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Published

2025-08-24

How to Cite

Tacha, G., & Pradhan, J. (2025). Phytohormonal Control of Root Development and Architecture. NG Agriculture Insights, 1(2), 53-57. https://doi.org/10.5281/zenodo.16942244

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