Cellular Stress Following Water Deprivation in the Model Legume Lotus japonicus.

Cells

Department of Vegetal Biochemistry and Molecular Biology, Chemistry Faculty, University of Seville, Apartado 1203, 41071-Sevilla, Spain.

Published: November 2012

AI Article Synopsis

  • Drought stress significantly impacts plant productivity globally, prompting changes in gene expression to help plants survive.
  • A transcriptomic study of the legume Lotus japonicus revealed that drought leads to major modifications in genes related to cellular metabolism, especially in areas like photosynthesis and stress response.
  • Key genes involved in the cell cycle, antioxidant defenses, and stress signaling showed modulation, with some transcription factors being similar to known stress-responsive genes in Arabidopsis thaliana, while others were unique to L. japonicus.

Article Abstract

Drought stress is one of the most important factors in the limitation of plant productivity worldwide. In order to cope with water deprivation, plants have adopted several strategies that produce major changes in gene expression. In this paper, the response to drought stress in the model legume Lotus japonicus was studied using a transcriptomic approach. Drought induced an extensive reprogramming of the transcriptome as related to various aspects of cellular metabolism, including genes involved in photosynthesis, amino acid metabolism and cell wall metabolism, among others. A particular focus was made on the genes involved in the cellular stress response. Key genes involved in the control of the cell cycle, antioxidant defense and stress signaling, were modulated as a consequence of water deprivation. Genes belonging to different families of transcription factors were also highly responsive to stress. Several of them were homologies to known stress-responsive genes from the model plant Arabidopsis thaliana, while some novel transcription factors were peculiar to the L. japonicus drought stress response.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3901144PMC
http://dx.doi.org/10.3390/cells1041089DOI Listing

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