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Open AccessJournal ArticleDOI

Plasticity of the Arabidopsis Root System under Nutrient Deficiencies

TLDR
A systematic comparison of RSA responses to nutrient deficiencies provides a comprehensive view of the overall changes in root plasticity induced by the deficiency of single nutrients and provides a solid basis for the identification of nutrient-sensitive steps in the root developmental program.
Abstract
Plant roots show a particularly high variation in their morphological response to different nutrient deficiencies. Although such changes often determine the nutrient efficiency or stress tolerance of plants, it is surprising that a comprehensive and comparative analysis of root morphological responses to different nutrient deficiencies has not yet been conducted. Since one reason for this is an inherent difficulty in obtaining nutrient-deficient conditions in agar culture, we first identified conditions appropriate for producing nutrient-deficient plants on agar plates. Based on a careful selection of agar specifically for each nutrient being considered, we grew Arabidopsis (Arabidopsis thaliana) plants at four levels of deficiency for 12 nutrients and quantified seven root traits. In combination with measurements of biomass and elemental concentrations, we observed that the nutritional status and type of nutrient determined the extent and type of changes in root system architecture (RSA). The independent regulation of individual root traits further pointed to a differential sensitivity of root tissues to nutrient limitations. To capture the variation in RSA under different nutrient supplies, we used principal component analysis and developed a root plasticity chart representing the overall modulations in RSA under a given treatment. This systematic comparison of RSA responses to nutrient deficiencies provides a comprehensive view of the overall changes in root plasticity induced by the deficiency of single nutrients and provides a solid basis for the identification of nutrient-sensitive steps in the root developmental program.

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Journal ArticleDOI

Ethylene and the Regulation of Physiological and Morphological Responses to Nutrient Deficiencies.

TL;DR: The data supporting a role for ethylene in the regulation of responses to different nutrient deficiencies will be reviewed, and the results suggesting the action of ethylene through different transduction pathways and its interaction with other hormones and signaling substances will be discussed.
Journal ArticleDOI

FIT, a regulatory hub for iron deficiency and stress signaling in roots, and FIT-dependent and -independent gene signatures

TL;DR: The role of the basic helix–loop–helix (bHLH) transcription factor FIT (FER-LIKE FE DEFICIENCY-INDUCED TRANSCRIPTION FACTOR) in Fe acquisition is reviewed and a connection of –Fe with ABA responses and root cell elongation processes is suggested.
Journal ArticleDOI

Magnesium stress signaling in plant: just a beginning.

TL;DR: Recent literatures involving in plant response to MgSs, including plant morphogenesis remodeling, magnesium transporters and signaling transductions are discussed, including plants' response to ABA, ethylene, auxins, and their factors.
Journal ArticleDOI

Roles of nitrogen and cytokinin signals in root and shoot communications in maximizing of plant productivity and their agronomic applications.

TL;DR: The role of spatio-temporal regulation of cytokinins in enhancing beneficial crop traits of yield and nitrogen use efficiency is discussed, and their interactive roles in regulating root-shoot morphological and physiological characteristics are reviewed.
Journal ArticleDOI

Identification of putative target genes of bZIP19, a transcription factor essential for Arabidopsis adaptation to Zn deficiency in roots.

TL;DR: Results demonstrate that bZIP19 mainly contributes to expression of genes, such as ZIP9, under Zn-deficient conditions, and revealed that ZIP9 is involved in uptake of Zn by the roots, and the mutant lacking ZIP9 was significantly more sensitive to Zn depletion than the wild-type.
References
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Journal ArticleDOI

A revised medium for rapid growth and bio assays with tobacco tissue cultures

TL;DR: In vivo redox biosensing resolves the spatiotemporal dynamics of compartmental responses to local ROS generation and provide a basis for understanding how compartment-specific redox dynamics may operate in retrograde signaling and stress 67 acclimation in plants.
Book

Marschner's Mineral Nutrition of Higher Plants

TL;DR: The third edition of Marschner's "Mineral Nutrition of Higher Plants" as mentioned in this paper is the most comprehensive and comprehensive reference on plant mineral nutrition, which has been published since 1996.
Journal ArticleDOI

ADE-4: a multivariate analysis and graphical display software

TL;DR: The user interface is simple and homogeneous among all the programs; this contributes to making the use of ADE-4 very easy for non- specialists in statistics, data analysis or computer science.
Journal ArticleDOI

Root Architecture and Plant Productivity.

TL;DR: The purpose of this Update is to briefly summarize conceptual issues and recent developments in the study of root architecture and to propose a framework for understanding its physiological basis.
Journal ArticleDOI

IRT1, an Arabidopsis Transporter Essential for Iron Uptake from the Soil and for Plant Growth

TL;DR: Genetic evidence is presented that IRT1 is essential for the uptake of iron from the soil, and it is shown that I RT1 is expressed in the external cell layers of the root, specifically in response to iron starvation.
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