Our results
on the main scientific journals
of the world.
Check the list of papers from NScTI Citrus
Use the filters at the top of the list to select articles by year or by researcher. In the box for each article, use the links ("Summary", "Links", "BibTeX") to open additional information.
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2022
Sousa, Andressa Rodrigues Oliveira; Ribas, Rogério Ferreira; Filho, Mauricio Antônio Coelho; Freschi, Luciano; Ferreira, Claudia Fortes; Filho, Walter Santos Soares; Pérez-Molina, Junior Pastor; Gesteira, Abelmon Silva
Drought tolerance memory transmission by citrus buds Journal Article
In: Plant Science, vol. 320, pp. 111292, 2022, ISSN: 0168-9452.
Abstract | Links | BibTeX | Tags: Abiotic stress, Citrus, Epigenetics, Photosynthetic performance, water deficit
@article{nokey,
title = {Drought tolerance memory transmission by citrus buds},
author = {Andressa Rodrigues Oliveira Sousa and Rogério Ferreira Ribas and Mauricio Antônio Coelho Filho and Luciano Freschi and Claudia Fortes Ferreira and Walter Santos Soares Filho and Junior Pastor Pérez-Molina and Abelmon Silva Gesteira},
doi = {10.1016/J.PLANTSCI.2022.111292},
issn = {0168-9452},
year = {2022},
date = {2022-01-01},
journal = {Plant Science},
volume = {320},
pages = {111292},
publisher = {Elsevier},
abstract = {Plants face recurrent drought events, and previous stresses can influence their responses to subsequent stress episodes. Studies on drought stress memory are recent in citriculture, although they show promise as a tool for crop improvement. Here, we investigated whether stress memory mechanisms can be detected in citrus plants grafted with buds from plants subjected to recurrent water deficit. Three rootstock varieties, namely ‘Rangpur Santa Cruz’ lime, ‘Sunki Maravilha’ mandarin and ‘Sunki Tropical’ mandarin, in combination with ‘Valencia’ orange, were either maintained under full irrigation or subjected to one, two, or three water deficit cycles. Buds from ‘Valencia’ orange were grafted onto ‘Swingle’ citrumelo rootstocks and were evaluated. This combination displayed improved physiological and biochemical performance under water limitation, especially ‘Valencia’ buds grafted onto ‘Sunki Maravilha’, with better photosynthetic performance under water deficit. These findings indicate that genotype-dependent epigenetic memory is a key factor in restoring citrus plants’ capacity to rely on previous stress experiences to restore better photosynthetic and physiological responses when undergoing new water deficit events. Therefore, epigenetic marks can be stored and transmitted to new citrus plants and are a promising alternative to enable increased water deficit tolerance when plants are then challenged by drought-prone environments.},
keywords = {Abiotic stress, Citrus, Epigenetics, Photosynthetic performance, water deficit},
pubstate = {published},
tppubtype = {article}
}
Sousa, Andressa Rodrigues Oliveira; Ribas, Rogério Ferreira; Filho, Mauricio Antônio Coelho; Freschi, Luciano; Ferreira, Claudia Fortes; Filho, Walter Santos Soares; Pérez-Molina, Junior Pastor; Gesteira, Abelmon Silva
Drought tolerance memory transmission by citrus buds Journal Article
In: Plant Science, vol. 320, pp. 111292, 2022, ISSN: 0168-9452.
Abstract | Links | BibTeX | Tags: Abiotic stress, Citrus, Epigenetics, Photosynthetic performance, water deficit
@article{nokey,
title = {Drought tolerance memory transmission by citrus buds},
author = {Andressa Rodrigues Oliveira Sousa and Rogério Ferreira Ribas and Mauricio Antônio Coelho Filho and Luciano Freschi and Claudia Fortes Ferreira and Walter Santos Soares Filho and Junior Pastor Pérez-Molina and Abelmon Silva Gesteira},
doi = {10.1016/J.PLANTSCI.2022.111292},
issn = {0168-9452},
year = {2022},
date = {2022-01-01},
journal = {Plant Science},
volume = {320},
pages = {111292},
publisher = {Elsevier},
abstract = {Plants face recurrent drought events, and previous stresses can influence their responses to subsequent stress episodes. Studies on drought stress memory are recent in citriculture, although they show promise as a tool for crop improvement. Here, we investigated whether stress memory mechanisms can be detected in citrus plants grafted with buds from plants subjected to recurrent water deficit. Three rootstock varieties, namely ‘Rangpur Santa Cruz’ lime, ‘Sunki Maravilha’ mandarin and ‘Sunki Tropical’ mandarin, in combination with ‘Valencia’ orange, were either maintained under full irrigation or subjected to one, two, or three water deficit cycles. Buds from ‘Valencia’ orange were grafted onto ‘Swingle’ citrumelo rootstocks and were evaluated. This combination displayed improved physiological and biochemical performance under water limitation, especially ‘Valencia’ buds grafted onto ‘Sunki Maravilha’, with better photosynthetic performance under water deficit. These findings indicate that genotype-dependent epigenetic memory is a key factor in restoring citrus plants’ capacity to rely on previous stress experiences to restore better photosynthetic and physiological responses when undergoing new water deficit events. Therefore, epigenetic marks can be stored and transmitted to new citrus plants and are a promising alternative to enable increased water deficit tolerance when plants are then challenged by drought-prone environments.},
keywords = {Abiotic stress, Citrus, Epigenetics, Photosynthetic performance, water deficit},
pubstate = {published},
tppubtype = {article}
}