Stebėti
Santiago Signorelli
Santiago Signorelli
Prof. Agr. de Bioquímica, Universidad de la República
Patvirtintas el. paštas fagro.edu.uy - Pagrindinis puslapis
Pavadinimas
Cituota
Cituota
Metai
Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)1
DJ Klionsky, AK Abdel-Aziz, S Abdelfatah, M Abdellatif, A Abdoli, S Abel, ...
autophagy 17 (1), 1-382, 2021
97522021
Guidelines for the use and interpretation of assays for monitoring autophagy 1
DJ Klionsky, AK Abdel-Aziz, S Abdelfatah, M Abdellatif, A Abdoli, S Abel, ...
autophagy 17 (1), 1, 2021
4164*2021
Linking autophagy to abiotic and biotic stress responses
S Signorelli, ŁP Tarkowski, W Van den Ende, DC Bassham
Trends in plant science 24 (5), 413-430, 2019
2552019
Molecular Mechanisms for the Reaction Between OH Radicals and Proline: Insights on the Role as Reactive Oxygen Species Scavenger in Plant Stress
S Signorelli, EL Coitiño, O Borsani, J Monza
The Journal of Physical Chemistry B 118 (1), 37-47, 2014
2082014
Connecting proline and γ-aminobutyric acid in stressed plants through non-enzymatic reactions
S Signorelli, PD Dans, EL Coitiño, O Borsani, J Monza
PLoS One 10 (3), e0115349, 2015
1602015
Water stress induces a differential and spatially distributed nitro-oxidative stress response in roots and leaves of Lotus japonicus
S Signorelli, FJ Corpas, O Borsani, JB Barroso, J Monza
Plant science 201, 137-146, 2013
1602013
γ‐Aminobutyric acid and related amino acids in plant immune responses: emerging mechanisms of action
ŁP Tarkowski, S Signorelli, M Höfte
Plant, Cell & Environment 43 (5), 1103-1116, 2020
1162020
Proline metabolism and its functions in development and stress tolerance
M Trovato, G Forlani, S Signorelli, D Funck
Osmoprotectant-mediated abiotic stress tolerance in plants: recent advances …, 2019
1142019
Regulation of proline accumulation and its molecular and physiological functions in stress defence
G Forlani, M Trovato, D Funck, S Signorelli
Osmoprotectant-mediated abiotic stress tolerance in plants: recent advances …, 2019
952019
The fermentation analogy: a point of view for understanding the intriguing role of proline accumulation in stressed plants
S Signorelli
Frontiers in Plant Science 7, 1339, 2016
882016
Proline does not quench singlet oxygen: evidence to reconsider its protective role in plants
S Signorelli, JB Arellano, TB Melø, O Borsani, J Monza
Plant Physiology and Biochemistry 64, 80-83, 2013
872013
Autophagy in plants: both a puppet and a puppet master of sugars
HC Janse van Rensburg, W Van den Ende, S Signorelli
Frontiers in Plant Science 10, 14, 2019
842019
Cell cycle arrest in plants: what distinguishes quiescence, dormancy and differentiated G1?
Y Velappan, S Signorelli, MJ Considine
Annals of Botany 120 (4), 495-509, 2017
832017
Learning to breathe: developmental phase transitions in oxygen status
MJ Considine, P Diaz-Vivancos, P Kerchev, S Signorelli, ...
Trends in plant science 22 (2), 140-153, 2017
722017
Nitric oxide enables germination by a four-pronged attack on ABA-induced seed dormancy
S Signorelli, MJ Considine
Frontiers in Plant Science 9, 296, 2018
682018
Developmental control of hypoxia during bud burst in grapevine
K Meitha, P Agudelo‐Romero, S Signorelli, DJ Gibbs, JA Considine, ...
Plant, Cell & Environment 41 (5), 1154-1170, 2018
572018
In vivo and in vitro approaches demonstrate proline is not directly involved in the protection against superoxide, nitric oxide, nitrogen dioxide and peroxynitrite
S Signorelli, C Imparatta, M Rodríguez-Ruiz, O Borsani, FJ Corpas, ...
Functional Plant Biology 43 (9), 870-879, 2016
562016
Nitrogen dioxide solubility and permeation in lipid membranes
S Signorelli, MN Möller, EL Coitiño, A Denicola
Archives of biochemistry and biophysics 512 (2), 190-196, 2011
512011
Assessing photosynthesis in plant systems: A cornerstone to aid in the selection of resistant and productive crops
PI Calzadilla, FEL Carvalho, R Gomez, MCL Neto, S Signorelli
Environmental and Experimental Botany 201, 104950, 2022
482022
Antioxidant and photosystem II responses contribute to explain the drought–heat contrasting tolerance of two forage legumes
S Signorelli, E Casaretto, M Sainz, P Díaz, J Monza, O Borsani
Plant Physiology and Biochemistry 70, 195-203, 2013
472013
Sistema negali atlikti operacijos. Bandykite vėliau dar kartą.
Straipsniai 1–20