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Response of the transcriptome of the intertidal red seaweed Chondrus crispus to controlled and natural stresses.
New Phytol. 2007; 176(1):45-55.NP

Abstract

Intertidal seaweeds inhabit an inherently stressful environment with rapidly changing physical conditions with the turning tides. Many macroalgae are therefore very resistant to abiotic stress; however, the bases for this tolerance and the relative importance of different stressors are largely unknown. Here, the effects of stress on the transcriptome of the red seaweed Chondrus crispus were investigated using cDNA microarrays. The responses were studied after exposure to high light, high temperature, and hypo- and hyperosmotic conditions in the laboratory and compared with gene expression in nature at different stress loads: at high and low tide at solar noon, and during a cloudy and a sunny day, respectively. The study identifies key stress genes and marker genes for specific stressors. The data also provide an insight into the physiological effects of stress; for example, high light stress and high natural stress caused an increase in antioxidative proteins, suggesting an increased oxidative stress. Clustering analysis suggested that osmotic stress modulated the gene expression in nature under high-stress conditions and was thus the most significant natural stressor. The potential cross-talk between stress reactions and methyl jasmonate-induced responses was also investigated and is tentatively suggested to be mediated by reactive oxygen species.

Authors+Show Affiliations

Centre National de la Recherche Scientifique, Université Pierre et Marie Curie-Paris 6, Laboratoire International Associé-Dispersal and Adaptation in Marine Species, Unité Mixte de Recherche 7139, Station Biologique, BP 74, 29682 Roscoff cedex, France.INSERM U533, Institut du Thorax, BP 53508, 44035 Nantes cedex 1, France.INSERM U533, Institut du Thorax, BP 53508, 44035 Nantes cedex 1, France.Centre National de la Recherche Scientifique, Université Pierre et Marie Curie-Paris 6, Laboratoire International Associé-Dispersal and Adaptation in Marine Species, Unité Mixte de Recherche 7139, Station Biologique, BP 74, 29682 Roscoff cedex, France.

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

17803640

Citation

Collén, Jonas, et al. "Response of the Transcriptome of the Intertidal Red Seaweed Chondrus Crispus to Controlled and Natural Stresses." The New Phytologist, vol. 176, no. 1, 2007, pp. 45-55.
Collén J, Guisle-Marsollier I, Léger JJ, et al. Response of the transcriptome of the intertidal red seaweed Chondrus crispus to controlled and natural stresses. New Phytol. 2007;176(1):45-55.
Collén, J., Guisle-Marsollier, I., Léger, J. J., & Boyen, C. (2007). Response of the transcriptome of the intertidal red seaweed Chondrus crispus to controlled and natural stresses. The New Phytologist, 176(1), 45-55. https://doi.org/10.1111/j.1469-8137.2007.02152.x
Collén J, et al. Response of the Transcriptome of the Intertidal Red Seaweed Chondrus Crispus to Controlled and Natural Stresses. New Phytol. 2007;176(1):45-55. PubMed PMID: 17803640.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Response of the transcriptome of the intertidal red seaweed Chondrus crispus to controlled and natural stresses. AU - Collén,Jonas, AU - Guisle-Marsollier,Isabelle, AU - Léger,Jean J, AU - Boyen,Catherine, PY - 2007/9/7/pubmed PY - 2007/11/14/medline PY - 2007/9/7/entrez SP - 45 EP - 55 JF - The New phytologist JO - New Phytol VL - 176 IS - 1 N2 - Intertidal seaweeds inhabit an inherently stressful environment with rapidly changing physical conditions with the turning tides. Many macroalgae are therefore very resistant to abiotic stress; however, the bases for this tolerance and the relative importance of different stressors are largely unknown. Here, the effects of stress on the transcriptome of the red seaweed Chondrus crispus were investigated using cDNA microarrays. The responses were studied after exposure to high light, high temperature, and hypo- and hyperosmotic conditions in the laboratory and compared with gene expression in nature at different stress loads: at high and low tide at solar noon, and during a cloudy and a sunny day, respectively. The study identifies key stress genes and marker genes for specific stressors. The data also provide an insight into the physiological effects of stress; for example, high light stress and high natural stress caused an increase in antioxidative proteins, suggesting an increased oxidative stress. Clustering analysis suggested that osmotic stress modulated the gene expression in nature under high-stress conditions and was thus the most significant natural stressor. The potential cross-talk between stress reactions and methyl jasmonate-induced responses was also investigated and is tentatively suggested to be mediated by reactive oxygen species. SN - 0028-646X UR - https://www.unboundmedicine.com/medline/citation/17803640/Response_of_the_transcriptome_of_the_intertidal_red_seaweed_Chondrus_crispus_to_controlled_and_natural_stresses_ L2 - https://doi.org/10.1111/j.1469-8137.2007.02152.x DB - PRIME DP - Unbound Medicine ER -