Luzzi, Irene

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  • Luzzi, Irene (3)
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Author's Bibliography

Drought-coping epigenetic mechanisms in sunflower

Radanović, Aleksandra; Luzzi, Irene; Cvejić, Sandra; Jocković, Milan; Jocić, Siniša; Dedić, Boško; Jocković, Jelena; Kondić-Špika, Ankica; Varotto, Serena; Miladinović, Dragana

(Tirana : Academy of Sciences of Albania, 2023)

TY  - CONF
AU  - Radanović, Aleksandra
AU  - Luzzi, Irene
AU  - Cvejić, Sandra
AU  - Jocković, Milan
AU  - Jocić, Siniša
AU  - Dedić, Boško
AU  - Jocković, Jelena
AU  - Kondić-Špika, Ankica
AU  - Varotto, Serena
AU  - Miladinović, Dragana
PY  - 2023
UR  - http://fiver.ifvcns.rs/handle/123456789/3778
AB  - Drought is the leading cause of agricultural production loss, with 75% of the world's harvested land sustaining yield losses due to this major abiotic stress. According to global climate models, drought conditions are expected to worsen as droughts will grow more severe and prolonged as a result of climate change. Production of sunflower, the fourth most important oil crop, is affected by drought, hence breeding for drought tolerance presents a major task for breeders. So far, the majority studies were oriented toward understanding changes drought causes on morphological, physiological and more recently, on genomic, transcriptomic and proteomic level. Epigenetic mechanisms of drought tolerance in sunflower are still to these days unrevealed. At the Institute of Field and Vegetable Crops several drought tests are being developed for detecting drought tolerant sunflower genotypes from our vast collection. In vitro tests with PEG6000 and rhizothron testing allows detecting genotypes tolerant at early stages of sunflower development, while pot tests in walk-in-chambers enables detection of tolerant sunflower in the flowering stage. We will analyze differentially expressed non-coding sRNAs and lncRNAs and their target genes between the most drought tolerant and least drought tolerant genotype for the identification of epiQTLs that can be used in sunflower breeding programs. Additionally, mild drought stress mimicking field conditions is applied to plants grown in pots at early stage of development, to investigate chromatin dynamics during stress application and after recovery from the stress.
PB  - Tirana : Academy of Sciences of Albania
C3  - Book of Abstracts, EPICATCH Workshop: Climate Change Impact on Epigenetic Plant Responses within 2nd International Conference on Water Environmental Protection and Sustainable Development – WEPSD-2023, 22-23 September 2023, Tirana
T1  - Drought-coping epigenetic mechanisms in sunflower
EP  - 42
SP  - 41
UR  - https://hdl.handle.net/21.15107/rcub_fiver_3778
ER  - 
@conference{
author = "Radanović, Aleksandra and Luzzi, Irene and Cvejić, Sandra and Jocković, Milan and Jocić, Siniša and Dedić, Boško and Jocković, Jelena and Kondić-Špika, Ankica and Varotto, Serena and Miladinović, Dragana",
year = "2023",
abstract = "Drought is the leading cause of agricultural production loss, with 75% of the world's harvested land sustaining yield losses due to this major abiotic stress. According to global climate models, drought conditions are expected to worsen as droughts will grow more severe and prolonged as a result of climate change. Production of sunflower, the fourth most important oil crop, is affected by drought, hence breeding for drought tolerance presents a major task for breeders. So far, the majority studies were oriented toward understanding changes drought causes on morphological, physiological and more recently, on genomic, transcriptomic and proteomic level. Epigenetic mechanisms of drought tolerance in sunflower are still to these days unrevealed. At the Institute of Field and Vegetable Crops several drought tests are being developed for detecting drought tolerant sunflower genotypes from our vast collection. In vitro tests with PEG6000 and rhizothron testing allows detecting genotypes tolerant at early stages of sunflower development, while pot tests in walk-in-chambers enables detection of tolerant sunflower in the flowering stage. We will analyze differentially expressed non-coding sRNAs and lncRNAs and their target genes between the most drought tolerant and least drought tolerant genotype for the identification of epiQTLs that can be used in sunflower breeding programs. Additionally, mild drought stress mimicking field conditions is applied to plants grown in pots at early stage of development, to investigate chromatin dynamics during stress application and after recovery from the stress.",
publisher = "Tirana : Academy of Sciences of Albania",
journal = "Book of Abstracts, EPICATCH Workshop: Climate Change Impact on Epigenetic Plant Responses within 2nd International Conference on Water Environmental Protection and Sustainable Development – WEPSD-2023, 22-23 September 2023, Tirana",
title = "Drought-coping epigenetic mechanisms in sunflower",
pages = "42-41",
url = "https://hdl.handle.net/21.15107/rcub_fiver_3778"
}
Radanović, A., Luzzi, I., Cvejić, S., Jocković, M., Jocić, S., Dedić, B., Jocković, J., Kondić-Špika, A., Varotto, S.,& Miladinović, D.. (2023). Drought-coping epigenetic mechanisms in sunflower. in Book of Abstracts, EPICATCH Workshop: Climate Change Impact on Epigenetic Plant Responses within 2nd International Conference on Water Environmental Protection and Sustainable Development – WEPSD-2023, 22-23 September 2023, Tirana
Tirana : Academy of Sciences of Albania., 41-42.
https://hdl.handle.net/21.15107/rcub_fiver_3778
Radanović A, Luzzi I, Cvejić S, Jocković M, Jocić S, Dedić B, Jocković J, Kondić-Špika A, Varotto S, Miladinović D. Drought-coping epigenetic mechanisms in sunflower. in Book of Abstracts, EPICATCH Workshop: Climate Change Impact on Epigenetic Plant Responses within 2nd International Conference on Water Environmental Protection and Sustainable Development – WEPSD-2023, 22-23 September 2023, Tirana. 2023;:41-42.
https://hdl.handle.net/21.15107/rcub_fiver_3778 .
Radanović, Aleksandra, Luzzi, Irene, Cvejić, Sandra, Jocković, Milan, Jocić, Siniša, Dedić, Boško, Jocković, Jelena, Kondić-Špika, Ankica, Varotto, Serena, Miladinović, Dragana, "Drought-coping epigenetic mechanisms in sunflower" in Book of Abstracts, EPICATCH Workshop: Climate Change Impact on Epigenetic Plant Responses within 2nd International Conference on Water Environmental Protection and Sustainable Development – WEPSD-2023, 22-23 September 2023, Tirana (2023):41-42,
https://hdl.handle.net/21.15107/rcub_fiver_3778 .

Chromatin features and epigenetic-mediated mechanisms in Helianthus annuus L. in the climate change scenario

Luzzi, Irene; Radanović, Aleksandra; Cvejić, Sandra; Jocković, Milan; Jocić, Siniša; Dedić, Boško; Gvozdenac, Sonja; Ćuk, Nemanja; Jocković, Jelena; Hladni, Nada; Marjanović-Jeromela, Ana; Kondić-Špika, Ankica; Miladinović, Dragana; Varotto, Serena

(Bari : University of Bari, 2023)

TY  - CONF
AU  - Luzzi, Irene
AU  - Radanović, Aleksandra
AU  - Cvejić, Sandra
AU  - Jocković, Milan
AU  - Jocić, Siniša
AU  - Dedić, Boško
AU  - Gvozdenac, Sonja
AU  - Ćuk, Nemanja
AU  - Jocković, Jelena
AU  - Hladni, Nada
AU  - Marjanović-Jeromela, Ana
AU  - Kondić-Špika, Ankica
AU  - Miladinović, Dragana
AU  - Varotto, Serena
PY  - 2023
UR  - http://fiver.ifvcns.rs/handle/123456789/4125
AB  - Drought as a major abiotic stress induces numerous, complex responses in plant cells. Those include gene expression alteration, accumulation of different metabolites, and synthesis of specific proteins. At molecular level, changes are under the control of complex regulatory pathways that include epigenetic mechanisms responsible for suitable and fast reactions to newly occurring stress conditions. Epigenetic modifications cause gene expression alteration through histone posttranscriptional modifications, DNA methylation, and small RNAs and lncRNAs expression. Some of these epigenetic modifications might pass on to the next generation, thus providing a good basis for a quicker response to drought stress. Revealing the epigenetic memory mechanisms involved in stress response could be of use in breeding programs for a prompt adaptation of plants to stress conditions. In the contest of the Cropinno project, funded under the Europe Horizon Programme, our aim is to develop an exploratory research project dedicated to the implementation of multi-omics tools for increasing the climate resilience of sunflowers.
PB  - Bari : University of Bari
PB  - Foggia : University of Foggia
C3  - Proceedings, 66th SIGA Annual Congress of The Italian Society of Agricultural Genetics, Bari, 5-8 September 2023
T1  - Chromatin features and epigenetic-mediated mechanisms in Helianthus annuus L. in the climate change scenario
SP  - 5.09
UR  - https://hdl.handle.net/21.15107/rcub_fiver_4125
ER  - 
@conference{
author = "Luzzi, Irene and Radanović, Aleksandra and Cvejić, Sandra and Jocković, Milan and Jocić, Siniša and Dedić, Boško and Gvozdenac, Sonja and Ćuk, Nemanja and Jocković, Jelena and Hladni, Nada and Marjanović-Jeromela, Ana and Kondić-Špika, Ankica and Miladinović, Dragana and Varotto, Serena",
year = "2023",
abstract = "Drought as a major abiotic stress induces numerous, complex responses in plant cells. Those include gene expression alteration, accumulation of different metabolites, and synthesis of specific proteins. At molecular level, changes are under the control of complex regulatory pathways that include epigenetic mechanisms responsible for suitable and fast reactions to newly occurring stress conditions. Epigenetic modifications cause gene expression alteration through histone posttranscriptional modifications, DNA methylation, and small RNAs and lncRNAs expression. Some of these epigenetic modifications might pass on to the next generation, thus providing a good basis for a quicker response to drought stress. Revealing the epigenetic memory mechanisms involved in stress response could be of use in breeding programs for a prompt adaptation of plants to stress conditions. In the contest of the Cropinno project, funded under the Europe Horizon Programme, our aim is to develop an exploratory research project dedicated to the implementation of multi-omics tools for increasing the climate resilience of sunflowers.",
publisher = "Bari : University of Bari, Foggia : University of Foggia",
journal = "Proceedings, 66th SIGA Annual Congress of The Italian Society of Agricultural Genetics, Bari, 5-8 September 2023",
title = "Chromatin features and epigenetic-mediated mechanisms in Helianthus annuus L. in the climate change scenario",
pages = "5.09",
url = "https://hdl.handle.net/21.15107/rcub_fiver_4125"
}
Luzzi, I., Radanović, A., Cvejić, S., Jocković, M., Jocić, S., Dedić, B., Gvozdenac, S., Ćuk, N., Jocković, J., Hladni, N., Marjanović-Jeromela, A., Kondić-Špika, A., Miladinović, D.,& Varotto, S.. (2023). Chromatin features and epigenetic-mediated mechanisms in Helianthus annuus L. in the climate change scenario. in Proceedings, 66th SIGA Annual Congress of The Italian Society of Agricultural Genetics, Bari, 5-8 September 2023
Bari : University of Bari., 5.09.
https://hdl.handle.net/21.15107/rcub_fiver_4125
Luzzi I, Radanović A, Cvejić S, Jocković M, Jocić S, Dedić B, Gvozdenac S, Ćuk N, Jocković J, Hladni N, Marjanović-Jeromela A, Kondić-Špika A, Miladinović D, Varotto S. Chromatin features and epigenetic-mediated mechanisms in Helianthus annuus L. in the climate change scenario. in Proceedings, 66th SIGA Annual Congress of The Italian Society of Agricultural Genetics, Bari, 5-8 September 2023. 2023;:5.09.
https://hdl.handle.net/21.15107/rcub_fiver_4125 .
Luzzi, Irene, Radanović, Aleksandra, Cvejić, Sandra, Jocković, Milan, Jocić, Siniša, Dedić, Boško, Gvozdenac, Sonja, Ćuk, Nemanja, Jocković, Jelena, Hladni, Nada, Marjanović-Jeromela, Ana, Kondić-Špika, Ankica, Miladinović, Dragana, Varotto, Serena, "Chromatin features and epigenetic-mediated mechanisms in Helianthus annuus L. in the climate change scenario" in Proceedings, 66th SIGA Annual Congress of The Italian Society of Agricultural Genetics, Bari, 5-8 September 2023 (2023):5.09,
https://hdl.handle.net/21.15107/rcub_fiver_4125 .

Epigenetic drivers of sunflower drought tolerance

Radanović, Aleksandra; Luzzi, Irene; Cvejić, Sandra; Jocković, Milan; Jocić, Siniša; Dedić, Boško; Gvozdenac, Sonja; Ćuk, Nemanja; Jocković, Jelena; Hladni, Nada; Marjanović-Jeromela, Ana; Kondić-Špika, Ankica; Varotto, Serena; Miladinović, Dragana

(2023)

TY  - CONF
AU  - Radanović, Aleksandra
AU  - Luzzi, Irene
AU  - Cvejić, Sandra
AU  - Jocković, Milan
AU  - Jocić, Siniša
AU  - Dedić, Boško
AU  - Gvozdenac, Sonja
AU  - Ćuk, Nemanja
AU  - Jocković, Jelena
AU  - Hladni, Nada
AU  - Marjanović-Jeromela, Ana
AU  - Kondić-Špika, Ankica
AU  - Varotto, Serena
AU  - Miladinović, Dragana
PY  - 2023
UR  - http://fiver.ifvcns.rs/handle/123456789/4223
AB  - Drought as a major abiotic stress induces numerous, complex responses in plant cells. Those include gene expression alteration, accumulation of different metabolites, and synthesis of specific proteins. Changes on a molecular level are under the control of complex regulatory pathways that include epigenetic mechanisms responsible for suitable and fast reactions to newly occurring stress conditions. Epigenetic modifications cause gene expression alteration through histone posttranscriptional modifications, DNA methylation, and small RNAs and lncRNAs expression. Some of these epigenetic modifications might pass on to the next generation and thus providing a good basis for a quicker response to drought stress. Revealing the epigenetic mechanisms involved in stress response could be of use in breeding programs for a prompt adaptation of plants to stress conditions. Hence, we have tested 30 sunflower inbred lines created at the Institute of Field and Vegetable Crops (IFVCNS) in in vitro conditions using PEG 6000 for creating a smaller panel of genotypes for analyzing their transcriptome alterations induced by drought.
C3  - Abstract Book, 3rd EPI-CATCH Conference, 30 May - 1 June 2023, Sofia, Bulgaria
T1  - Epigenetic drivers of sunflower drought tolerance
EP  - 40
SP  - 40
UR  - https://hdl.handle.net/21.15107/rcub_fiver_4223
ER  - 
@conference{
author = "Radanović, Aleksandra and Luzzi, Irene and Cvejić, Sandra and Jocković, Milan and Jocić, Siniša and Dedić, Boško and Gvozdenac, Sonja and Ćuk, Nemanja and Jocković, Jelena and Hladni, Nada and Marjanović-Jeromela, Ana and Kondić-Špika, Ankica and Varotto, Serena and Miladinović, Dragana",
year = "2023",
abstract = "Drought as a major abiotic stress induces numerous, complex responses in plant cells. Those include gene expression alteration, accumulation of different metabolites, and synthesis of specific proteins. Changes on a molecular level are under the control of complex regulatory pathways that include epigenetic mechanisms responsible for suitable and fast reactions to newly occurring stress conditions. Epigenetic modifications cause gene expression alteration through histone posttranscriptional modifications, DNA methylation, and small RNAs and lncRNAs expression. Some of these epigenetic modifications might pass on to the next generation and thus providing a good basis for a quicker response to drought stress. Revealing the epigenetic mechanisms involved in stress response could be of use in breeding programs for a prompt adaptation of plants to stress conditions. Hence, we have tested 30 sunflower inbred lines created at the Institute of Field and Vegetable Crops (IFVCNS) in in vitro conditions using PEG 6000 for creating a smaller panel of genotypes for analyzing their transcriptome alterations induced by drought.",
journal = "Abstract Book, 3rd EPI-CATCH Conference, 30 May - 1 June 2023, Sofia, Bulgaria",
title = "Epigenetic drivers of sunflower drought tolerance",
pages = "40-40",
url = "https://hdl.handle.net/21.15107/rcub_fiver_4223"
}
Radanović, A., Luzzi, I., Cvejić, S., Jocković, M., Jocić, S., Dedić, B., Gvozdenac, S., Ćuk, N., Jocković, J., Hladni, N., Marjanović-Jeromela, A., Kondić-Špika, A., Varotto, S.,& Miladinović, D.. (2023). Epigenetic drivers of sunflower drought tolerance. in Abstract Book, 3rd EPI-CATCH Conference, 30 May - 1 June 2023, Sofia, Bulgaria, 40-40.
https://hdl.handle.net/21.15107/rcub_fiver_4223
Radanović A, Luzzi I, Cvejić S, Jocković M, Jocić S, Dedić B, Gvozdenac S, Ćuk N, Jocković J, Hladni N, Marjanović-Jeromela A, Kondić-Špika A, Varotto S, Miladinović D. Epigenetic drivers of sunflower drought tolerance. in Abstract Book, 3rd EPI-CATCH Conference, 30 May - 1 June 2023, Sofia, Bulgaria. 2023;:40-40.
https://hdl.handle.net/21.15107/rcub_fiver_4223 .
Radanović, Aleksandra, Luzzi, Irene, Cvejić, Sandra, Jocković, Milan, Jocić, Siniša, Dedić, Boško, Gvozdenac, Sonja, Ćuk, Nemanja, Jocković, Jelena, Hladni, Nada, Marjanović-Jeromela, Ana, Kondić-Špika, Ankica, Varotto, Serena, Miladinović, Dragana, "Epigenetic drivers of sunflower drought tolerance" in Abstract Book, 3rd EPI-CATCH Conference, 30 May - 1 June 2023, Sofia, Bulgaria (2023):40-40,
https://hdl.handle.net/21.15107/rcub_fiver_4223 .