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List of works by Sara Trevisan

Evaluation of candidate reference genes for qPCR in maize.

scientific article published on 27 March 2012

Expression and tissue-specific localization of nitrate-responsive miRNAs in roots of maize seedlings.

scientific article

Expression of two maize putative nitrate transporters in response to nitrate and sugar availability.

scientific article

Humic substances affect Arabidopsis physiology by altering the expression of genes involved in primary metabolism, growth and development

Humic substances induce lateral root formation and expression of the early auxin-responsive IAA19 gene and DR5 synthetic element in Arabidopsis.

scientific article published in July 2010

NO homeostasis is a key regulator of early nitrate perception and root elongation in maize

scientific article published on 12 November 2013

NO signaling is a key component of the root growth response to nitrate in Zea mays L.

scientific article published on 10 March 2014

Nitrate affects transcriptional regulation of UPBEAT1 and ROS localisation in roots of Zea mays L

scientific article published on 28 October 2018

Nitrate sensing by the maize root apex transition zone: a merged transcriptomic and proteomic survey

scientific article published on 23 April 2015

Nitric Oxide-Mediated Maize Root Apex Responses to Nitrate are Regulated by Auxin and Strigolactones.

scientific article published on January 2015

Quantitative Proteomics of Maize Roots Treated with a Protein Hydrolysate: A Comparative Study with Transcriptomics Highlights the Molecular Mechanisms Responsive to Biostimulants

scientific article published on 01 July 2020

Transcriptome analysis reveals coordinated spatiotemporal regulation of hemoglobin and nitrate reductase in response to nitrate in maize roots

scientific article published on July 15, 2011

Whole-mount in situ detection of microRNAs on Arabidopsis tissues using Zip Nucleic Acid probes

scientific article published on 10 November 2012

mRNA-Sequencing Analysis Reveals Transcriptional Changes in Root of Maize Seedlings Treated with Two Increasing Concentrations of a New Biostimulant

scientific article