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Differential Accumulation of sHSPs Isoforms during Desiccation of the Resurrection Plant IHaberlea rhodopensis/I Friv. under Optimal and High Temperature
by
Tchorbadjieva, Magdalena
, Mihailova, Gergana
, Rakleova, Goritsa
, Georgieva, Katya
in
Bioaccumulation
/ Botanical research
/ Dehydration (Physiology)
/ Hardiness
/ Heat shock proteins
/ Photosynthesis
/ Physiological aspects
/ Plants
/ Proteins
2023
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Differential Accumulation of sHSPs Isoforms during Desiccation of the Resurrection Plant IHaberlea rhodopensis/I Friv. under Optimal and High Temperature
by
Tchorbadjieva, Magdalena
, Mihailova, Gergana
, Rakleova, Goritsa
, Georgieva, Katya
in
Bioaccumulation
/ Botanical research
/ Dehydration (Physiology)
/ Hardiness
/ Heat shock proteins
/ Photosynthesis
/ Physiological aspects
/ Plants
/ Proteins
2023
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Differential Accumulation of sHSPs Isoforms during Desiccation of the Resurrection Plant IHaberlea rhodopensis/I Friv. under Optimal and High Temperature
by
Tchorbadjieva, Magdalena
, Mihailova, Gergana
, Rakleova, Goritsa
, Georgieva, Katya
in
Bioaccumulation
/ Botanical research
/ Dehydration (Physiology)
/ Hardiness
/ Heat shock proteins
/ Photosynthesis
/ Physiological aspects
/ Plants
/ Proteins
2023
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Differential Accumulation of sHSPs Isoforms during Desiccation of the Resurrection Plant IHaberlea rhodopensis/I Friv. under Optimal and High Temperature
Journal Article
Differential Accumulation of sHSPs Isoforms during Desiccation of the Resurrection Plant IHaberlea rhodopensis/I Friv. under Optimal and High Temperature
2023
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Overview
Haberlea rhodopensis (Gesneriaceae) belongs to the group of so-called resurrection plants, which are able to lose more than 95% of the water in the cells and quickly restore their metabolism upon rehydration. The plant is characterized with a high ecological plasticity growing at altitude from 136 m to near 1700 m at different temperature, water, and light conditions. In its natural habitats, H. rhodopensis is often exposed to high temperatures during dry periods in the summer. In the present study, we investigated the accumulation of small heat shock proteins (sHSPs) and the extent of non-photochemical quenching during the downregulation of photosynthesis in H. rhodopensis under desiccation at optimum (23 °C) and high temperature (38 °C). Dehydration at high temperature has a detrimental effect on plant photosynthesis, thus leading to oxidative stress and damage of different important macromolecules in the cells. Plants accumulate different protective proteins when exposed to high temperatures, one of the most characteristic being sHSPs. They prevent irreversible aggregation of unfolded or aggregated proteins and facilitate their refolding. Plants possess more than 30 different of sHSPs, much more compared to mammals and microorganisms. Fourteen different isoforms of sHSPs accumulate during dehydration at 38 °C compared to 23 °C, where only two were detected. H. rhodopensis is an excellent model system to study the protective mechanisms under extreme dehydration at high temperature, thus helping plant breeders to create high temperature resistant crops.
Publisher
MDPI AG
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