Ajustando el metabolismo de la prolina en las plantas para aumentar su tolerancia al estrés
Biología de Plantas y Alimentos
AI-Driven Discovery and Commercialization of High-Value Bio-materials for Global Market Entry
Drought-tolerant Gene Selection and Biotechnology Soybean Seed Development
58. Tarkowski ŁP, Signorelli S. (2025) "No free entry: stomatal state as decision maker in defining stress response strategies" Journal of Experimental Botany, Volume 76, Issue 2, 10 January 2025, Pages 205–209, https://doi.org/10.1093/jxb/erae447
57. Sakti-Mahambara-Padma-Negara HA, Rachmi-Esyanti R, Iriawati I, Signorelli S, Kirana R, Meitha K. (2024) “Enhancing genetic modification in recalcitrant plants: An investigation in chili (Capsicum annuum) through the optimized tape sandwich protoplast isolation and polyethylene glycol-mediated transfection” Plant Biotech. 24.0613a. DOI: 10.5511/plantbiotechnology.24.0613a
55. Sena F, Monza J, Signorelli S*. (2024) “Determination of free proline in plants” en: Methods in Molecular Biology, Eds: JF Corpas. Springer Nature. DOI: 10.1007/978-1-0716-3826-2_12
56. Arias M, Considine MJ, Signorelli S*. (2024) “Reinterpreting olive bud dormancy” J. Exp. Bot. Accepted. DOI; 10.1093/jxb/erae353
54. Tham J, Patisenah A, Soetrisno-Tjia TO, Signorelli S, Taufik I, Meitha K. (2023) “sgRNA design and in vitro nucleolyytic analysis of the Cas9-RNP complex for transgene-free genome editing of the eIF4E1 gene from Capsicum annuum L.” Indones J Biotechnol. 28:4, 238-247. DOI: 10.22146/ijbiotech.86778
53. Signorelli S*, Bhati KK. (2023) “Harnessing autophagy to improve plant quality and resilience” Front. Plant Sci. 14, 1266982. DOI: 10.3389/fpls.2023.1266982
52. Velappan Y, De Simone A, Signorelli S, Considine JA, Foyer CH, Considine MJ. (2023) “Hydrogen Cyanamide Causes Reversible G2/M Cell Cycle Arrest Accompanied by Oxidation of the Nucleus and Cytosol in Arabidopsis thaliana Root Apical Meristem Cells” Antioxidants. 12, 1330 DOI:10.3390/antiox12071330
51. Nim-Lee H, Chacko J, Gonzalez-Solís A, Chen KE, Barros JAS, Signorelli S, Millar AH, Vierstra RD, Eliceiri KW, Otegui MS. (2023)“The autophagy receptor NBR1 directs the clearance of photodamaged chloroplasts” eLife Apr 18, 2023 12:e86030. DOI: 10.7554/eLife.86030
50. Morel-Revetria MA, Berais-Rubio A, Giménez M, Sanjuán J, Signorelli S, Monza J. (2023) “Competitiveness and phylogenetic relationship of rhizobia strains with different symbiotic efficiency in T repens: conversion of parasitic in non-parasitic rhizobia by natural symbiotic gene transfer” Biology. 12(2), 243 DOI: 10.3390/biology12020243
49. Meitha K, Hanisia RH, Signorelli S, Fauziah T, Iriawati I, Esyanti RR. (2023) “Extracellular DNA of Fusarium oxysporum f.sp. cubense as a priming agent for inducing the resistance of banana plantlets” Agronomy, 13(2), 441. DOI: 10.3390/agronomy13020441
48. Dewi JR, Signorelli S, Considine MJ. “The enzymatic quantification of ascorbate and glutathione in woody tissues: current state and limitation” In: Plant Reactive Oxygen Species, Eds: Amna Mhadmi. Accepted 2022.
47. Velappan Y, Considine JA, Signorelli S, Considine MJ. (2022) “Contrasting seasonal dynamics of dormancy, respiratory metabolism and cell cycle state in grapevine buds of a subtropical and mediterranean climate” Food and Energy Security, 12(2) e431 DOI: 10.1002/fes3.431
46. Tarkowski ŁP, Signorelli S, Considine MJ, Montrichard F. (2022) “Integration of reactive oxygen species and nutrient signaling to shape root system architecture” Plant Cell Environ., 46:379-390. DOI: 10.1111/pce.14504
45. Berais-Rubio A, Morel M, Giménez M, Signorelli S, Monza J. (2022) “Competitiveness and symbiotic efficiency in alfalfa of Rhizobium favelukesii ORY1 strain in which homologous genes of peptidases HrrP and SapA that negatively affect symbiosis were identified” Front. Agronomy, 4:1092169. DOI: 10.3389/fagro.2022.1092169
44. Signorelli S* (2022) “Plant Responses to Stress and Environmental Stimulus” Agronomy 12, 2250. DOI: 10.3390/agronomy12102250
43. Furlan AL, Gonzalez EM, Choudhury SR, Signorelli S. (2022) “Editorial: Drought stress in legumes” Front Plant Sci. 13:1026157. DOI: 10.3389/fpls.2022.1026157
42. Ivanova A, O’Leary B, Signorelli S, Falconet D, Moyankova D, Whelan J, Djilianov D, Murcha MW. (2022) “Mitochondrial activity and biogenesis during resurrection of Haberlea rhodopensis” New Phytologist, 236:943-957. DOI: 10.1111/nph.18396
41. Calzadilla PI, Carvalho FEL, Gomez R, Lima-Neto MC, Signorelli S*. (2022) “Assessing photosynthesis in plant systems: A cornerstone to aid in the selection of resistant and productive crops” Env. Exp Botany, 201:104950. DOI: 10.1016/j.envexpbot.2022.104950
40. Signorelli S*, Dewi JR, Considine MJ. (2022) “Soil Water Content Directly Affects Bud Burst Rate in Single-Node Cuttings of Perennial Plants” Agronomy, 12(360):1-8 DOI: 10.3390/agronomy12020360
39. Velappan Y, Chabikwa TG, Considine JA, Agudelo-Romero P, Foyer CH, Signorelli S, Considine MJ. (2022) “The bud dormancy disconnect: latent buds of grapevine are dormant during summer despite a high metabolic rate” J Exp Botany, 73(7):2061–2076. DOI: 10.3390/agronomy12020443
38. Berriel V, Perdomo CH, Signorelli S, Monza J. (2022) “Crop Performance Indexes Applied to Legume Used as Summer Cover Crops under Water Deficit Conditions” Agronomy, 12(443):1-11. DOI: 10.3390/agronomy12020443
37. Meitha K, Pramesti Y, Signorelli S, Kriswantoro JA. (2022) “Postharvest chitosan application maintains the quality of spinach through suppression of bacterial growth and elicitation” Horticulture, Environment, and Biotechnology, 63, 17–227. DOI: 10.1007/s13580-021-00397-0
36. Signorelli S*, Tarkowski ŁP, O’Leary B, Tabares-da Rosa S, Borsani O, Monza J. (2021) “GABA and Proline Metabolism in Response to Stress” en: Hormones and plant response, Eds: JF Corpas and DK Gupta. Springer Nature, 291-314. DOI: 10.1007/978-3-030-77477-6_12
35. Oh G, O’Leary B, Signorelli S, Millar AH. (2021) “Alternative oxidase1a and 1d limit proline-induced oxidative stress and aid salinity recovery in Arabidopsis” Plant Phys, 188(3):1521–1536 DOI: 10.1093/plphys/kiab578
34. #Wijerathna-Yapa A,#Signorelli S, Fenske R, Ganguly DR, Stroeher E, Li L, Pogson BJ, Duncan O, Millar AH. (2021) “Autophagy mutants show delayed chloroplast development during de-etiolation in carbon limiting conditions” Plant Journal, 108:459–477 DOI: 10.1111/tpj.15452
33. de la Cruz-Jimenez J, Clode PL, Signorelli S, Veneklaas EJ, Colmer TD, Kotula L. (2021) “The barrier to radial oxygen loss impedes the apoplastic entry of Fe into the roots of Urochloa humidicola” J Exp Botany, 72(8):3279–3293. DOI: 10.1093/jxb/erab043
32. Klionsky DJ, Abdel-Aziz AK, et al. (2021) “Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)” Autophagy, 17(1):1-384. DOI: 10.1080/15548627.2020.1797280
31. Zorrilla-Fontanesi Y, Pauwels L, Panis B, Signorelli S, Vanderschuren H, Swennen R. (2020) “Strategies to revise agrosystems and breeding for Fusarium wilt control of banana”. Nature Food. 1, 599-604. DOI: 10.1038/s43016-020-00155-y
30. Tarkowski ŁP, Signorelli S, Höfte M. (2020) “GABA and related amino acids in plant immune responses: emerging mechanisms of action”. Plant Cell Environ. 43(5):1103-1116. DOI: 10.1111/pce.13734
29. Signorelli S*, Sainz M, Tabares-da Rosa S, Monza J. (2020) “The role of nitric oxide in nitrogen fixation by legumes”. Front Plant Sci. 11:521. DOI: 10.3389/fpls.2020.00521
28. #Casaretto E, #Signorelli S, Gallino JP, Vidal S, Borsani O. (2021) “Endogenous ·NO accumulation in soybean is associated with initial stomatal response to water deficit” Phys Plantarum, 172: 564–576. DOI: 10.1111/ppl.13259
27. Signorelli S*, Shaw J, Hermawaty D, Wang Z, Verboven P, Considine JA, Considine MJ. (2020) “The initiation of bud burst in grapevine features dynamic regulation of the apoplastic pore size” J Exp Bot, 71(2):719-729. DOI: 10.1093/jxb/erz200
26. Trovato, M, Forlani, G, Signorelli S, Funck, D. (2019) “Proline Metabolism and its Functions in Development and Stress Tolerance.” In: Hossain M., Kumar V., Burritt D., Fujita M., Mäkelä P. (eds) Osmoprotectant- Mediated Abiotic Stress Tolerance in Plants. Springer International Publishing Switzerland. DOI: 10.1007/978-3-030-27423-8_2
25. Forlani, G, Trovato, M, Funck, D, Signorelli S*. (2019) “Regulation of proline accumulation and its molecular and physiological functions in stress defence.” In: Hossain M., Kumar V., Burritt D., Fujita M., Mäkelä P. (eds) Osmoprotectant-Mediated Abiotic Stress Tolerance in Plants. Springer International Publishing Switzerland.DOI: 10.1007/978-3-030-27423-8_3
24. Tartaglia C., Guitérrez P., Sabatini O., Irisarri P., Signorelli, S, Rebuffo M., Monza J. (2019) “Caracterización de rizobios que nodulan Trifolium polymorphym” Chapter 4 in: Cepas nativas para desarrollar un inoculante rizobiano competitivo y eficiente en trébol blanco. 33-45.
23. Tabares-da Rosa S, Signorelli S, Del Papa F, Reyno R, Lattanzi F, Rebuffo M, Sabatini O, Sanjuán J, Monza J. (2019) “Rhizobium inoculants for alfalfa in acid soils: a proposal for Uruguay”. Agrociencia-Uruguay. 23(2) 2301-1548 DOI: 10.31285/agro.23.120
22. Signorelli S*, Masclaux-Daubresse C, Moriyasu Y, Van den Ende W, Bassham DC. (2019) “Editorial: Sugars and autophagy in plants” Front Plant Sci, 10:1190. DOI: 10.3389/fpls.2019.01190.
21. Signorelli S*, Tarkowski ŁP, Van den Ende W, Bassham DC. (2019) “Linking autophagy to abiotic and biotic stress responses” Trends Plant Sci. 24:5, 413-429. DOI: 10.1016/j.tplants.2019.02.001
20. Janse van Rensburg HC, Van den Ende W, Signorelli S. (2019) “Autophagy in plants: both a puppet and a puppet master of sugars” Front Plant Sci. 10:14. DOI: 10.3389/fpls.2019.00014
19. Signorelli, S*, Considine, MJ. (2018) “Nitric oxide enables germination by a four-pronged attack on ABA-induced seed dormancy” Front Plant Sci. March 2018, Volume 9, Article 296. DOI: 10.3389/fpls.2018.00296
18. Signorelli S*, Corpas FJ, Rodríguez-Ruiz M, Valderrama R, Barroso, JB Borsani O, Monza J. (2018) “Drought stress triggers the accumulation of NO and SNOs in cortical cells of Lotus japonicus L. roots and the nitration of proteins with relevant metabolic function” Environ Exp Bot. 161(2019), 228–241. DOI: 10.1016/j.envexpbot.2018.08.007a
17. Signorelli S, Agudelo-Romero, P, Meitha, K, Foyer, CH, Considine, MJ. (2018) “Roles for light, energy and oxygen in the fate of quiescent axillary buds” Plant Physiol. 178, 1171-1181. DOI: 10.1104/pp.17.01479
16. #Meitha K, #Agudelo-Romero P, #Signorelli S, Gibbs DJ, Considine JA, Foyer CH, Considine MJ. (2018) “Developmental control of hypoxia during bud burst in grapevine” Plant Cell Environ. 41(5), 1154-1170. DOI: 10.1111/pce.13141
15. Signorelli S*, Monza J. “Identification of Δ1-pyrroline 5-carboxylate synthase (P5CS) genes involved in the synthesis of proline in Lotus japonicus” (2017) Plant Sig Behav. e1367464. DOI: 10.1080/15592324.2017.1367464
14. Velappan Y, Signorelli S, Considine MJ. (2017) “Cell cycle arrest in plants: what distinguishes quiescence, dormancy and differentiated G1” Ann Bot. 120, (4) 495-509. DOI: 10.1093/aob/mcx082
13. Considine MJ, Diaz-Vivancos P, Kerchev P, Signorelli S, Agudelo-Romero P, Gibbs DJ, Foyer CH. (2017) “Learning to breathe: developmental phase transitions in oxygen status” Trends Plant Sci. 22, (2) 140-153. DOI: 10.1016/j.tplants.2016.11.013
12. Signorelli S*, Imparatta C, Rodríguez-Ruiz M, Borsani O, Corpas FJ, Monza J. (2016) “In vivo and in vitro approaches demonstrate proline is not directly involved in the protection against superoxide, nitric oxide, nitrogen dioxide and peroxynitrite” Func Plant Biol. 43, 870-879. DOI: 10.1071/FP16060
11. Calzadilla PI, Signorelli S, Escaray FJ, Menéndez AB, Monza J, Ruiz OA, Maiales SJ (2016) “Photosynthetic responses mediate the adaptation of two Lotus japonicus ecotypes to low temperature” Plant Sci. 250, 59-68. DOI: 10.1016/j.plantsci.2016.06.003
10. Signorelli S*. (2016) “The fermentation analogy: a point of view for understanding the intriguing role of proline accumulation in stressed plants” Front Plant Sci. DOI: 10.3389/fpls.2016.01339
9. Signorelli S, Casaretto E, Monza J, Borsani O. (2015) “Combined Abiotic Stress in Legumes” In: Stresses in Plants, Mahalingam, R. (Ed.). Springer International Publishing Switzerland. 123-146. DOI: 10.1007/978-3-319-07899-1_6
8. Signorelli S*, Dans PD, Coitiño EL, Borsani O, Monza J. (2015) “Connecting proline and γ- aminobutyric acid in stressed plants through non-enzymatic reactions” PLOSONE, 10 (3), 1-14. DOI: 10.1371/journal.pone.0115349
7. Díaz P, Betti M, García-Calderón M, Pérez-Delgado C, Signorelli S, Borsani O, Márquez A, Monza J. (2014)“Amino acids and drought stress in Lotus: use of transcriptomics and a plastidic glutamine synthetase mutant for new insights in proline metabolism” In: Amino acids and their derivatives: significance for plant stress adaptations, Gill NAAaSS, Cabi-UK. DOI: 10.1079/9781780642734.0053
6. Signorelli S*, Coitiño EL, Borsani O, Monza J. (2014) “Molecular Mechanisms for the Reaction Between ·OH Radicals and Proline: Insights on the Role as Reactive Oxygen Species Scavenger in Plant Stress”. J Physic Chem B. 118: 1, 37-47. DOI: 10.1021/jp407773u
5. Signorelli S*, Arellano JB, Melø TB, Borsani O, Monza J. (2013) “Proline does not quench singlet oxygen: Evidence to reconsider its protective role in plants”. Plant Physiol Bioch. 64, 80-84. DOI: 10.1016/j.plaphy.2012.12.017.
4. Signorelli S, Corpas FJ, Borsani O, Barroso JB, Monza J. (2013) “Water stress induces a differential and spatially distributed nitro-oxidative stress response in roots and leaves of Lotus japonicus”. Plant Sci. 201, 137-146. DOI: 10.1016/j.plantsci.2012.12.004.
3. Signorelli S, Casaretto E, Sainz M, Diaz P, Monza J, Borsani O. (2013) “Antioxidant and photosystem II responses explain the drought-heat contrasting tolerance of two forage legumes”. Plant Physiol Bioch. 70, 195-203. DOI: 10.1016/j.plaphy.2013.05.028.
2. Bonanata J, Signorelli S, Coitiño L. (2011) “Increasing Complexity Models for Describing the Generation of Substrate Radicals at the Active Site of Ethanolamine Ammonia Lyase/B12”. Comput Theor Chem. 975, 52-60. DOI: 10.1016/j.comptc.2011.07.029.
1. Signorelli S, Möller M, Coitiño L, Denicola A. (2011) “Nitrogen dioxide solubility and permeation in lipid membranes” Arch Biochem Biophys. 512, 190-196. DOI: 10.1016/j.abb.2011.06.003
Acumulación de prolina en plantas: un enfoque multidisciplinario para dilucidar
Edición del gen eIF4E de chile (Capsicum annuum) para desarrollar cultivares resistentes a Potyvirus
Aceleración de la evolución: ingeniería de enzimas invertasa para mejorar el metabolismo de la fruta en el banano
Desarrollo de un inoculante de alfalfa persistente a los suelos ácidos de la cuenca lechera uruguaya