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Quantitative Profiling of Arabidopsis Polar Glycerolipids under Two Types of Heat Stress. | LitMetric

Quantitative Profiling of Arabidopsis Polar Glycerolipids under Two Types of Heat Stress.

Plants (Basel)

The Germplasm Bank of Wild Species, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650201, China.

Published: May 2020

AI Article Synopsis

  • Plants cope with heat stress primarily by remodeling membrane lipids and producing heat shock proteins (HSPs), but the interaction between these processes needs more research.
  • In this study, the glycerolipid profiles of both wild-type Arabidopsis and an HSP101-deficient mutant were examined under heat stress.
  • Results showed that while glycerolipid changes were similar in both types of plants, heat acclimation helped reduce glycerolipid degradation in extreme heat, suggesting that plant responses are complex and involve different metabolic pathways.

Article Abstract

At the cellular level, the remodelling of membrane lipids and production of heat shock proteins are the two main strategies whereby plants survive heat stress. Although many studies related to glycerolipids and HSPs under heat stress have been reported separately, detailed alterations of glycerolipids and the role of HSPs in the alterations of glycerolipids still need to be revealed. In this study, we profiled the glycerolipids of wild-type Arabidopsis and its HSP101-deficient mutant under two types of heat stress. Our results demonstrated that the alterations of glycerolipids were very similar in wild-type Arabidopsis and during heat stress. Although heat acclimation led to a slight decrease of glycerolipids, the decrease of glycerolipids in plants without heat acclimation is more severe under heat shock. The contents of 36:x monogalactosyl diacylglycerol (MGDG) were slightly increased, whereas that of 34:6 MGDG and 34:4 phosphatidylglycerol (PG) were severely decreased during moderate heat stress. Our findings suggested that heat acclimation could reduce the degradation of glycerolipids under heat shock. Synthesis of glycerolipids through the prokaryotic pathway was severely suppressed, whereas that through the eukaryotic pathway was slightly enhanced during moderate heat stress. In addition, HSP101 has a minor effect on the alterations of glycerolipids under heat stress.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7356150PMC
http://dx.doi.org/10.3390/plants9060693DOI Listing

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