Signalling Overlaps between Nitrate and Auxin in Regulation of The Root System Architecture: Insights from the <i>Arabidopsis thaliana</i>

Nitrate (NO<sub>3</sub><sup>–</sup>) and auxin are key regulators of root growth and development, modulating the signalling cascades in auxin-induced lateral root formation. Auxin biosynthesis, transport, and transduction are significantly altered by nitrate. A decrease in ni...

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Bibliographic Details
Main Authors: Muhammad Asim, Zia Ullah, Aluko Oluwaseun, Qian Wang, Haobao Liu
Format: Article
Language:English
Published: MDPI AG 2020-04-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/21/8/2880
Description
Summary:Nitrate (NO<sub>3</sub><sup>–</sup>) and auxin are key regulators of root growth and development, modulating the signalling cascades in auxin-induced lateral root formation. Auxin biosynthesis, transport, and transduction are significantly altered by nitrate. A decrease in nitrate (NO<sub>3</sub><sup>–</sup>) supply tends to promote auxin translocation from shoots to roots and vice-versa. This nitrate mediated auxin biosynthesis regulating lateral roots growth is induced by the nitrate transporters and its downstream transcription factors. Most nitrate responsive genes (short-term and long-term) are involved in signalling overlap between nitrate and auxin, thereby inducing lateral roots initiation, emergence, and development. Moreover, in the auxin signalling pathway, the varying nitrate supply regulates lateral roots development by modulating the auxin accumulation in the roots. Here, we focus on the roles of nitrate responsive genes in mediating auxin biosynthesis in <i>Arabidopsis</i> root, and the mechanism involved in the transport of auxin at different nitrate levels. In addition, this review also provides an insight into the significance of nitrate responsive regulatory module and their downstream transcription factors in root system architecture in the model plant <i>Arabidopsis thaliana</i>.
ISSN:1661-6596
1422-0067