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Open AccessJournal ArticleDOI

The nodule inception‐like protein 7 modulates nitrate sensing and metabolism in Arabidopsis

TLDR
It is reported that Arabidopsis thaliana NIN-like protein 7 (NLP7) knockout mutants constitutively show several features of nitrogen-starved plants, and that they are tolerant to drought stress.
Abstract
Nitrate is an essential nutrient, and is involved in many adaptive responses of plants, such as localized proliferation of roots, flowering or stomatal movements. How such nitrate-specific mechanisms are regulated at the molecular level is poorly understood. Although the Arabidopsis ANR1 transcription factor appears to control stimulation of lateral root elongation in response to nitrate, no regulators of nitrate assimilation have so far been identified in higher plants. Legume-specific symbiotic nitrogen fixation is under the control of the putative transcription factor, NIN, in Lotus japonicus. Recently, the algal homologue NIT2 was found to regulate nitrate assimilation. Here we report that Arabidopsis thaliana NIN-like protein 7 (NLP7) knockout mutants constitutively show several features of nitrogen-starved plants, and that they are tolerant to drought stress. We show that nlp7 mutants are impaired in transduction of the nitrate signal, and that the NLP7 expression pattern is consistent with a function of NLP7 in the sensing of nitrogen. Translational fusions with GFP showed a nuclear localization for the NLP7 putative transcription factor. We propose NLP7 as an important element of the nitrate signal transduction pathway and as a new regulatory protein specific for nitrogen assimilation in non-nodulating plants.

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Citations
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Journal ArticleDOI

Plant nitrogen assimilation and use efficiency.

TL;DR: The limiting factors in plant metabolism for maximizing NUE are different at high and low N supplies, indicating great potential for improving the NUE of current cultivars, which were bred in well-fertilized soil.
Journal ArticleDOI

Nitrogen uptake, assimilation and remobilization in plants: challenges for sustainable and productive agriculture

TL;DR: This review presents the complexity of NUE and supports the idea that the integration of the numerous data coming from transcriptome studies, functional genomics, quantitative genetics, ecophysiology and soil science into explanatory models of whole-plant behaviour will be promising.

REVIEW: PART OF A SPECIAL ISSUE ON PLANT NUTRITION Nitrogen uptake, assimilation and remobilization in plants: challenges for sustainable and productive agriculture

TL;DR: In this paper, a review of the physiological, metabolic, and genetic aspects of nitrogen uptake, assimilation, and remobilization in crop plants is presented and the enzymes and regulatory processes manipulated to improve NUE components are also discussed.
Journal ArticleDOI

CHL1 functions as a nitrate sensor in plants.

TL;DR: CHL1 uses dual-affinity binding and a phosphorylation switch to sense a wide range of nitrate concentrations in the soil, thereby functioning as an ion sensor in higher plants.
Journal ArticleDOI

Metabolic and signaling aspects underpinning the regulation of plant carbon nitrogen interactions

TL;DR: Recent advances in carbon/nitrogen metabolisms as well as sensing and signaling systems in illuminated leaves of C3-plants are discussed and a perspective of the type of experiments that are now required in order to take understanding to a higher level is provided.
References
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Journal ArticleDOI

Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana

TL;DR: The modified method should facilitate high-throughput transformation of Arabidopsis for efforts such as T-DNA gene tagging, positional cloning, or attempts at targeted gene replacement.
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Assaying chimeric genes in plants: The GUS gene fusion system

TL;DR: Gene fusions can be defined its DNA constructions that result in the coding sequences from one gene (r@o,ter) being transcribed and/or translated under the direction of the controlling sequences of another gene (cmltrr).
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Genome-Wide Analysis of Arabidopsis Pentatricopeptide Repeat Proteins Reveals Their Essential Role in Organelle Biogenesis

TL;DR: A detailed bioinformatic analysis of 441 members of the Arabidopsis PPR family plus genomic and genetic data on the expression, localization, and general function of many family members confirm, but massively extend, the very sparse observations previously obtained from detailed characterization of individual mutants in other organisms.
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An Arabidopsis MADS box gene that controls nutrient-induced changes in root architecture.

TL;DR: Transgenic plants in which ANR1 was repressed had an altered sensitivity to NO3- and no longer responded to No3--rich zones by lateral root proliferation, indicating that ANR 1 is a key determinant of developmental plasticity in Arabidopsis roots.
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A conserved MYB transcription factor involved in phosphate starvation signaling both in vascular plants and in unicellular algae

TL;DR: PHR1-binding sequences are present in the promoter of Pi starvation-responsive structural genes, indicating that this protein acts downstream in the Pi starvation signaling pathway.
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