Light and temperature shape the developmental trajectory and morphology of plants. Changes in chromatin organization and nuclear architecture can modulate gene expression and lead to short- and long-term plant adaptation to the environment. Here, we review recent reports investigating how changes in chromatin composition, structure, and topology modulate gene expression in response to fluctuating light and temperature conditions resulting in developmental and physiological responses. Furthermore, the potential application of novel revolutionary techniques, such Hi-C, RNA fluorescence in situ hybridization (FISH) and padlock-FISH, to study the impact of environmental stimuli such as light and temperature on nuclear compartmentalization in plants is discussed.

The impact of light and temperature on chromatin organization and plant adaptation / G. Perrella, A. Zioutopoulou, L.R. Headland, E. Kaiserli. - In: JOURNAL OF EXPERIMENTAL BOTANY. - ISSN 0022-0957. - 71:17(2020 Aug), pp. 5247-5255. [10.1093/jxb/eraa154]

The impact of light and temperature on chromatin organization and plant adaptation

G. Perrella
Primo
;
2020

Abstract

Light and temperature shape the developmental trajectory and morphology of plants. Changes in chromatin organization and nuclear architecture can modulate gene expression and lead to short- and long-term plant adaptation to the environment. Here, we review recent reports investigating how changes in chromatin composition, structure, and topology modulate gene expression in response to fluctuating light and temperature conditions resulting in developmental and physiological responses. Furthermore, the potential application of novel revolutionary techniques, such Hi-C, RNA fluorescence in situ hybridization (FISH) and padlock-FISH, to study the impact of environmental stimuli such as light and temperature on nuclear compartmentalization in plants is discussed.
chromatin regulation; flowering; gene expression; hermomorphogenesis; light signalling; nuclear organization; photomorphogenesis; cell nucleus; gene expression regulation, plant; in situ hybridization, fluorescence; temperature; chromatin; plants
Settore BIO/18 - Genetica
ago-2020
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/920845
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