2019
DOI: 10.1071/fp18263
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Detergent-resistant microdomains (lipid rafts) in endomembranes of the wild halophytes

Abstract: In the present work, we studied detergent-resistant membrane microdomains (DRM) of chloroplasts and mitochondria – organelles that provide photosynthesis and respiration in a plant cell. The objects of the study were euhalophyte Salicorniaperennans Willd., which relates to salt-accumulating plants and glycohalophyte Artemisia santonica L., which relates to salt-excluder plants. To get DRM, the chloroplast and mitochondria fractions were solubilised with a solution containing Triton X-100. The resulting materia… Show more

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Cited by 13 publications
(11 citation statements)
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“…The content of sphingolipids in the chloroplast membranes of eu-and glycohalophytes is only 2-3%, and it does not depend on the strategy of salt accumulation (Nesterov et al 2017). In halophyte mitochondria, on the other handthe organelles supplying the cell with energythe content of sphingolipids reaches 11% of total membrane lipids (Rozentsvet et al 2019). The relative content of sphingolipids in euhalophytes is three-fold of that in glycohalophytes.…”
Section: Sphingolipidsmentioning
confidence: 99%
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“…The content of sphingolipids in the chloroplast membranes of eu-and glycohalophytes is only 2-3%, and it does not depend on the strategy of salt accumulation (Nesterov et al 2017). In halophyte mitochondria, on the other handthe organelles supplying the cell with energythe content of sphingolipids reaches 11% of total membrane lipids (Rozentsvet et al 2019). The relative content of sphingolipids in euhalophytes is three-fold of that in glycohalophytes.…”
Section: Sphingolipidsmentioning
confidence: 99%
“…In A. santonica, the predominant PL of mitochondrial DRM is PC; in S. perennans, it is DPG. The content of each of these components, however, does not exceed 5% of total membrane lipids (Rozentsvet et al 2019).…”
mentioning
confidence: 93%
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“…Например, изменения состава липидов в рафтах при холодовой акклиматизации в экспериментальных условиях приводило к изменениям термодинамических свойств и физиологических функций микродоменов, что, в свою очередь, влияло на устойчивость растений к низким температурам [7]. В отношении дикорастущих солеустойчивых растений были обнаружены различия в относительном содержании рафтоспецифичных липидов в микродоменах эндомембран галофитов с разными механизмами регуляции солевого обмена -эугалофитах и гликогалофитах [8]. Понятие…”
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