نتایج جستجو برای: nitrate assimilation

تعداد نتایج: 51714  

Journal: :Plant physiology 2007
Rongchen Wang Xiujuan Xing Nigel Crawford

Nitrate serves as a potent signal to control gene expression in plants and algae, but little is known about the signaling role of nitrite, the direct product of nitrate reduction. Analysis of several nitrate-induced genes showed that nitrite increases mRNA levels as rapidly as nitrate in nitrogen-starved Arabidopsis (Arabidopsis thaliana) roots. Both nitrite and nitrate induction are apparent a...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2010
Elena A Vidal Viviana Araus Cheng Lu Geraint Parry Pamela J Green Gloria M Coruzzi Rodrigo A Gutiérrez

One of the most striking examples of plant developmental plasticity to changing environmental conditions is the modulation of root system architecture (RSA) in response to nitrate supply. Despite the fundamental and applied significance of understanding this process, the molecular mechanisms behind nitrate-regulated changes in developmental programs are still largely unknown. Small RNAs (sRNAs)...

2007
Peter V. Minorsky

It is well known that nitrate is an important nutrient that supports plant growth and development. The application of nitrate also causes extensive changes in the expression of genes coding for proteins involved in nitrogen (N) metabolism. Indeed, genomic analyses have provided a comprehensive dataset of more than a thousand nitrate-responsive genes in Arabidopsis (Arabidopsis thaliana). Much l...

2017
Huairong Cao Shengdong Qi Mengwei Sun Zehui Li Yi Yang Nigel M. Crawford Yong Wang

Nitrate is a key nutrient that affects maize growth and yield, and much has yet to be learned about nitrate regulatory genes and mechanisms in maize. Here, we identified nine ZmNLP genes in maize and analyzed the functions of two ZmNLP members in nitrate signaling. qPCR results revealed a broad pattern of expression for ZmNLP genes in different stages and organs with the highest levels of trans...

2015
Ryoichi Araki Kosuke Namba Yoshiko Murata Jun Murata

Poaceae plants release phytosiderophores into the rhizosphere in order to chelate iron (Fe), which often exists in insoluble forms especially under high pH conditions. The impact of phytosiderophore treatment at the physiological and molecular levels in vivo remains largely elusive, although the biosynthesis of phytosiderophores and the transport of phytosiderophore-metal complexes have been we...

Journal: :The Biochemical journal 2011
Andrew J Gates Victor M Luque-Almagro Alan D Goddard Stuart J Ferguson M Dolores Roldán David J Richardson

The denitrifying bacterium Paracoccus denitrificans can grow aerobically or anaerobically using nitrate or nitrite as the sole nitrogen source. The biochemical pathway responsible is expressed from a gene cluster comprising a nitrate/nitrite transporter (NasA), nitrite transporter (NasH), nitrite reductase (NasB), ferredoxin (NasG) and nitrate reductase (NasC). NasB and NasG are essential for g...

2015
E. Bouguyon F. Brun D. Meynard M. Kubeš M. Pervent S. Leran B. Lacombe G. Krouk E. Guiderdoni E. Zažímalová K. Hoyerová P. Nacry

In Arabidopsis the plasmamembrane nitrate transceptor (transporter/receptor) NRT1.1 governs many physiological and developmental responses to nitrate. Alongside facilitating nitrate uptake, NRT1.1 regulates the expression levels of many nitrate assimilation pathway genes, modulates root system architecture, relieves seed dormancy and protects plants from ammonium toxicity. Here, we assess the f...

2015
Ryoichi Araki Kayoko Kousaka Kosuke Namba Yoshiko Murata Jun Murata

Poaceae plants release 2'-deoxymugineic acid (DMA) and related phytosiderophores to chelate iron (Fe), which often exists as insoluble Fe(III) in the rhizosphere, especially under high pH conditions. Although the molecular mechanisms behind the biosynthesis and secretion of DMA have been studied extensively, little information is known about whether DMA has biological roles other than chelating...

Journal: :Plant physiology 2014
Femke de Jong Kate Thodey Laurence V Lejay Michael W Bevan

Mineral nutrient uptake and assimilation is closely coordinated with the production of photosynthate to supply nutrients for growth. In Arabidopsis (Arabidopsis thaliana), nitrate uptake from the soil is mediated by genes encoding high- and low-affinity transporters that are transcriptionally regulated by both nitrate and photosynthate availability. In this study, we have studied the interactio...

Journal: :Journal of experimental botany 2007
Rodrigo A Gutiérrez Miriam L Gifford Chris Poultney Rongchen Wang Dennis E Shasha Gloria M Coruzzi Nigel M Crawford

Nitrate is both a nutrient and a potent signal that stimulates plant growth. Initial experiments in the late 1950s showing that nitrate enhances nitrate reductase (NR) activity after several hours of treatment have now progressed to transcriptome studies identifying over 1000 genes that respond to muM levels of nitrate within minutes. The use of an Arabidopsis NR-null mutant allowed the identif...

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