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Common Motifs in the Response of Cereal Primary Metabolism to Fungal Pathogens are not Based on Similar Transcriptional Reprogramming

During compatible interactions with their host plants, biotrophic plant–pathogens subvert host metabolism to ensure the sustained provision of nutrient assimilates by the colonized host cells. To investigate, whether common motifs can be revealed in the response of primary carbon and nitrogen metabo...

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Autores principales: Voll, Lars Matthias, Horst, Robin Jonathan, Voitsik, Anna-Maria, Zajic, Doreen, Samans, Birgit, Pons-Kühnemann, Jörn, Doehlemann, Gunther, Münch, Steffen, Wahl, Ramon, Molitor, Alexandra, Hofmann, Jörg, Schmiedl, Alfred, Waller, Frank, Deising, Holger Bruno, Kahmann, Regine, Kämper, Jörg, Kogel, Karl-Heinz, Sonnewald, Uwe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3355734/
https://www.ncbi.nlm.nih.gov/pubmed/22645534
http://dx.doi.org/10.3389/fpls.2011.00039
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author Voll, Lars Matthias
Horst, Robin Jonathan
Voitsik, Anna-Maria
Zajic, Doreen
Samans, Birgit
Pons-Kühnemann, Jörn
Doehlemann, Gunther
Münch, Steffen
Wahl, Ramon
Molitor, Alexandra
Hofmann, Jörg
Schmiedl, Alfred
Waller, Frank
Deising, Holger Bruno
Kahmann, Regine
Kämper, Jörg
Kogel, Karl-Heinz
Sonnewald, Uwe
author_facet Voll, Lars Matthias
Horst, Robin Jonathan
Voitsik, Anna-Maria
Zajic, Doreen
Samans, Birgit
Pons-Kühnemann, Jörn
Doehlemann, Gunther
Münch, Steffen
Wahl, Ramon
Molitor, Alexandra
Hofmann, Jörg
Schmiedl, Alfred
Waller, Frank
Deising, Holger Bruno
Kahmann, Regine
Kämper, Jörg
Kogel, Karl-Heinz
Sonnewald, Uwe
author_sort Voll, Lars Matthias
collection PubMed
description During compatible interactions with their host plants, biotrophic plant–pathogens subvert host metabolism to ensure the sustained provision of nutrient assimilates by the colonized host cells. To investigate, whether common motifs can be revealed in the response of primary carbon and nitrogen metabolism toward colonization with biotrophic fungi in cereal leaves, we have conducted a combined metabolome and transcriptome study of three quite divergent pathosystems, the barley powdery mildew fungus (Blumeria graminis f.sp. hordei), the corn smut fungus Ustilago maydis, and the maize anthracnose fungus Colletotrichum graminicola, the latter being a hemibiotroph that only exhibits an initial biotrophic phase during its establishment. Based on the analysis of 42 water-soluble metabolites, we were able to separate early biotrophic from late biotrophic interactions by hierarchical cluster analysis and principal component analysis, irrespective of the plant host. Interestingly, the corresponding transcriptome dataset could not discriminate between these stages of biotrophy, irrespective, of whether transcript data for genes of central metabolism or the entire transcriptome dataset was used. Strong differences in the transcriptional regulation of photosynthesis, glycolysis, the TCA cycle, lipid biosynthesis, and cell wall metabolism were observed between the pathosystems. However, increased contents of Gln, Asn, and glucose as well as diminished contents of PEP and 3-PGA were common to early post-penetration stages of all interactions. On the transcriptional level, genes of the TCA cycle, nucleotide energy metabolism and amino acid biosynthesis exhibited consistent trends among the compared biotrophic interactions, identifying the requirement for metabolic energy and the rearrangement of amino acid pools as common transcriptional motifs during early biotrophy. Both metabolome and transcript data were employed to generate models of leaf primary metabolism during early biotrophy for the three investigated interactions.
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spelling pubmed-33557342012-05-29 Common Motifs in the Response of Cereal Primary Metabolism to Fungal Pathogens are not Based on Similar Transcriptional Reprogramming Voll, Lars Matthias Horst, Robin Jonathan Voitsik, Anna-Maria Zajic, Doreen Samans, Birgit Pons-Kühnemann, Jörn Doehlemann, Gunther Münch, Steffen Wahl, Ramon Molitor, Alexandra Hofmann, Jörg Schmiedl, Alfred Waller, Frank Deising, Holger Bruno Kahmann, Regine Kämper, Jörg Kogel, Karl-Heinz Sonnewald, Uwe Front Plant Sci Plant Science During compatible interactions with their host plants, biotrophic plant–pathogens subvert host metabolism to ensure the sustained provision of nutrient assimilates by the colonized host cells. To investigate, whether common motifs can be revealed in the response of primary carbon and nitrogen metabolism toward colonization with biotrophic fungi in cereal leaves, we have conducted a combined metabolome and transcriptome study of three quite divergent pathosystems, the barley powdery mildew fungus (Blumeria graminis f.sp. hordei), the corn smut fungus Ustilago maydis, and the maize anthracnose fungus Colletotrichum graminicola, the latter being a hemibiotroph that only exhibits an initial biotrophic phase during its establishment. Based on the analysis of 42 water-soluble metabolites, we were able to separate early biotrophic from late biotrophic interactions by hierarchical cluster analysis and principal component analysis, irrespective of the plant host. Interestingly, the corresponding transcriptome dataset could not discriminate between these stages of biotrophy, irrespective, of whether transcript data for genes of central metabolism or the entire transcriptome dataset was used. Strong differences in the transcriptional regulation of photosynthesis, glycolysis, the TCA cycle, lipid biosynthesis, and cell wall metabolism were observed between the pathosystems. However, increased contents of Gln, Asn, and glucose as well as diminished contents of PEP and 3-PGA were common to early post-penetration stages of all interactions. On the transcriptional level, genes of the TCA cycle, nucleotide energy metabolism and amino acid biosynthesis exhibited consistent trends among the compared biotrophic interactions, identifying the requirement for metabolic energy and the rearrangement of amino acid pools as common transcriptional motifs during early biotrophy. Both metabolome and transcript data were employed to generate models of leaf primary metabolism during early biotrophy for the three investigated interactions. Frontiers Research Foundation 2011-08-22 /pmc/articles/PMC3355734/ /pubmed/22645534 http://dx.doi.org/10.3389/fpls.2011.00039 Text en Copyright © 2011 Voll, Horst, Voitsik, Zajic, Samans, Pons-Kühnemann, Doehlemann, Münch, Wahl, Molitor, Hofmann, Schmiedl, Waller, Deising, Kahmann, Kämper, Kogel and Sonnewald. http://www.frontiersin.org/licenseagreement This is an open-access article subject to a non-exclusive license between the authors and Frontiers Media SA, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and other Frontiers conditions are complied with.
spellingShingle Plant Science
Voll, Lars Matthias
Horst, Robin Jonathan
Voitsik, Anna-Maria
Zajic, Doreen
Samans, Birgit
Pons-Kühnemann, Jörn
Doehlemann, Gunther
Münch, Steffen
Wahl, Ramon
Molitor, Alexandra
Hofmann, Jörg
Schmiedl, Alfred
Waller, Frank
Deising, Holger Bruno
Kahmann, Regine
Kämper, Jörg
Kogel, Karl-Heinz
Sonnewald, Uwe
Common Motifs in the Response of Cereal Primary Metabolism to Fungal Pathogens are not Based on Similar Transcriptional Reprogramming
title Common Motifs in the Response of Cereal Primary Metabolism to Fungal Pathogens are not Based on Similar Transcriptional Reprogramming
title_full Common Motifs in the Response of Cereal Primary Metabolism to Fungal Pathogens are not Based on Similar Transcriptional Reprogramming
title_fullStr Common Motifs in the Response of Cereal Primary Metabolism to Fungal Pathogens are not Based on Similar Transcriptional Reprogramming
title_full_unstemmed Common Motifs in the Response of Cereal Primary Metabolism to Fungal Pathogens are not Based on Similar Transcriptional Reprogramming
title_short Common Motifs in the Response of Cereal Primary Metabolism to Fungal Pathogens are not Based on Similar Transcriptional Reprogramming
title_sort common motifs in the response of cereal primary metabolism to fungal pathogens are not based on similar transcriptional reprogramming
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3355734/
https://www.ncbi.nlm.nih.gov/pubmed/22645534
http://dx.doi.org/10.3389/fpls.2011.00039
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