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Metabolite profiling of Ricinus communis germination at different temperatures provides new insights into thermo-mediated requirements for successful seedling establishment

Authors :
Leo A. J. Willems
Henk W. M. Hilhorst
Paulo R. Ribeiro
Luzimar Gonzaga Fernandez
Wilco Ligterink
Marie-Chantal Mutimawurugo
Renato Delmondez de Castro
Source :
Plant Science, 239, 180-191, Plant Science 239 (2015)
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

Ricinus communis seeds germinate to a high percentage and faster at 35 °C than at lower temperatures, but with compromised seedling establishment. However, seedlings are able to cope with high temperatures at later stages of seedling establishment if germination occurred at lower temperatures. Our objective was to assess the biochemical and molecular requirements of R. communis germination for successful seedling establishment at varying temperatures. For that, we performed metabolite profiling (GC-TOF-MS) and measured transcript levels of key genes involved in several energy-generating pathways, such as storage oil mobilization, β-oxidation and gluconeogenesis of seeds germinated at three different temperatures. We identified a thermo-sensitive window during seed germination in which high temperatures compromise seedling development, most likely by down-regulating some energy-generating pathways. Overexpression of malate synthase (MLS) and glycerol kinase (GK) genes resulted in higher starch levels in Nicotiana benthamiana leaves, which highlights the importance of these genes in energy-generating pathways for seedling establishment. Additionally, we showed that GABA, which is a stress-responsive metabolite, accumulated in response to the water content of the seeds during the initial phase of imbibition. Herewith, we provide new insights into the molecular requirements for vigorous seedling growth of R. communis under different environmental conditions.

Details

ISSN :
01689452
Volume :
239
Database :
OpenAIRE
Journal :
Plant Science
Accession number :
edsair.doi.dedup.....6a8e9ddef8bee31bf5fef0e92cf3cc6f
Full Text :
https://doi.org/10.1016/j.plantsci.2015.08.002