Structural and Functional Heat Stress Responses of Chloroplasts of Arabidopsis thaliana

Author(s)
Puneet Paul, Anida Mesihovic, Palak Chaturvedi, Arindam Ghatak, Wolfram Weckwerth, Maik Böhmer, Enrico Schleiff
Abstract

Temperature elevations constitute a major threat to plant performance. In recent years, much was learned about the general molecular mode of heat stress reaction of plants. The current research focuses on the integration of the knowledge into more global networks, including the reactions of cellular compartments. For instance, chloroplast function is central for plant growth and survival, and the performance of chloroplasts is tightly linked to the general status of the cell and vice versa. We examined the changes in photosynthesis, chloroplast morphology and proteomic composition posed in Arabidopsis thaliana chloroplasts after a single or repetitive heat stress treatment over a period of two weeks. We observed that the acclimation is potent in the case of repetitive application of heat stress, while a single stress results in lasting alterations. Moreover, the physiological capacity and its adjustment are dependent on the efficiency of the protein translocation process as judged from the analysis of mutants of the two receptor units of the chloroplast translocon, TOC64, and TOC33. In response to repetitive heat stress, plants without TOC33 accumulate Hsp70 proteins and plants without TOC64 have a higher content of proteins involved in thylakoid structure determination when compared to wild-type plants.

Organisation(s)
Functional and Evolutionary Ecology, Research Platform Vienna Metabolomics Center
External organisation(s)
Johann Wolfgang Goethe-Universität Frankfurt am Main, Frankfurt Institute for Advanced Studies (FIAS)
Journal
Genes
Volume
11
No. of pages
20
ISSN
2073-4425
DOI
https://doi.org/10.3390/genes11060650
Publication date
06-2020
Peer reviewed
Yes
Austrian Fields of Science 2012
106037 Proteomics
Keywords
ASJC Scopus subject areas
Genetics(clinical), Genetics
Portal url
https://ucris.univie.ac.at/portal/en/publications/structural-and-functional-heat-stress-responses-of-chloroplasts-of-arabidopsis-thaliana(4db4e2f2-cc17-43d6-b04c-c6bdef34bb2c).html