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The coupling of transcriptome and proteome adaptation during development and heat stress response of tomato pollen
- Source :
- BMC Genomics, Vol 19, Iss 1, Pp 1-20 (2018), BMC Genomics, 19, 1-20, BMC Genomics, 19, 1, pp. 1-20
- Publication Year :
- 2018
-
Abstract
- Contains fulltext : 198854.pdf (Publisher’s version ) (Open Access) BACKGROUND: Pollen development is central for plant reproduction and is assisted by changes of the transcriptome and proteome. At the same time, pollen development and viability is largely sensitive to stress, particularly to elevated temperatures. The transcriptomic and proteomic changes during pollen development and of different stages in response to elevated temperature was targeted to define the underlying molecular principles. RESULTS: The analysis of the transcriptome and proteome of Solanum lycopersicum pollen at tetrad, post-meiotic and mature stage before and after heat stress yielded a decline of the transcriptome but an increase of the proteome size throughout pollen development. Comparison of the transcriptome and proteome led to the discovery of two modes defined as direct and delayed translation. Here, genes of distinct functional processes are under the control of direct and delayed translation. The response of pollen to elevated temperature occurs rather at proteome, but not as drastic at the transcriptome level. Heat shock proteins, proteasome subunits, ribosomal proteins and eukaryotic initiation factors are most affected. On the example of heat shock proteins we demonstrate a decoupling of transcript and protein levels as well as a distinct regulation between the developmental stages. CONCLUSIONS: The transcriptome and proteome of developing pollen undergo drastic changes in composition and quantity. Changes at the proteome level are a result of two modes assigned as direct and delayed translation. The response of pollen to elevated temperature is mainly regulated at the proteome level, whereby proteins related to synthesis and degradation of proteins are most responsive and might play a central role in the heat stress response of pollen. 20 p.
- Subjects :
- 0106 biological sciences
0301 basic medicine
Proteomics
Pollen development
lcsh:QH426-470
lcsh:Biotechnology
Molecular Plant Physiology
Biology
Heat stre
medicine.disease_cause
01 natural sciences
Heat stress
Transcriptome
03 medical and health sciences
Solanum lycopersicum
Ribosomal protein
lcsh:TP248.13-248.65
Heat shock protein
Pollen
Eukaryotic initiation factor
Genetics
medicine
Heat shock
Lycopersicon esculentum
Transcriptomics
Gene Expression Profiling
food and beverages
Proteomic
Adaptation, Physiological
Cell biology
lcsh:Genetics
030104 developmental biology
Transcriptomic
Proteome
Heat-Shock Response
010606 plant biology & botany
Biotechnology
Subjects
Details
- Language :
- English
- ISSN :
- 14712164
- Database :
- OpenAIRE
- Journal :
- BMC Genomics, Vol 19, Iss 1, Pp 1-20 (2018), BMC Genomics, 19, 1-20, BMC Genomics, 19, 1, pp. 1-20
- Accession number :
- edsair.doi.dedup.....5e590e34e1cf4d2b2a7cf892ddd2f940