Cargando…

A tale of two mixotrophic chrysophytes: Insights into the metabolisms of two Ochromonas species (Chrysophyceae) through a comparison of gene expression

Ochromonas spp. strains CCMP1393 and BG-1 are phagotrophic phytoflagellates with different nutritional strategies. Strain CCMP1393 is an obligate phototroph while strain BG-1 readily grows in continuous darkness in the presence of bacterial prey. Growth and gene expression of strain CCMP1393 were in...

Descripción completa

Detalles Bibliográficos
Autores principales: Lie, Alle A. Y., Liu, Zhenfeng, Terrado, Ramon, Tatters, Avery O., Heidelberg, Karla B., Caron, David A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5811012/
https://www.ncbi.nlm.nih.gov/pubmed/29438384
http://dx.doi.org/10.1371/journal.pone.0192439
_version_ 1783299798740238336
author Lie, Alle A. Y.
Liu, Zhenfeng
Terrado, Ramon
Tatters, Avery O.
Heidelberg, Karla B.
Caron, David A.
author_facet Lie, Alle A. Y.
Liu, Zhenfeng
Terrado, Ramon
Tatters, Avery O.
Heidelberg, Karla B.
Caron, David A.
author_sort Lie, Alle A. Y.
collection PubMed
description Ochromonas spp. strains CCMP1393 and BG-1 are phagotrophic phytoflagellates with different nutritional strategies. Strain CCMP1393 is an obligate phototroph while strain BG-1 readily grows in continuous darkness in the presence of bacterial prey. Growth and gene expression of strain CCMP1393 were investigated under conditions allowing phagotrophic, mixotrophic, or phototrophic nutrition. The availability of light and bacterial prey led to the differential expression of 42% or 45–59% of all genes, respectively. Data from strain CCMP1393 were compared to those from a study conducted previously on strain BG-1, and revealed notable differences in carbon and nitrogen metabolism between the 2 congeners under similar environmental conditions. Strain BG-1 utilized bacterial carbon and amino acids through glycolysis and the tricarboxylic acid cycle, while downregulating light harvesting and carbon fixation in the Calvin cycle when both light and bacteria were available. In contrast, the upregulation of genes related to photosynthesis, light harvesting, chlorophyll synthesis, and carbon fixation in the presence of light and prey for strain CCMP1393 implied that this species is more phototrophic than strain BG-1, and that phagotrophy may have enhanced phototrophy. Cellular chlorophyll a content was also significantly higher in strain CCMP1393 supplied with bacteria compared to those without prey. Our results thus point to very different physiological strategies for mixotrophic nutrition in these closely related chrysophyte species.
format Online
Article
Text
id pubmed-5811012
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-58110122018-02-28 A tale of two mixotrophic chrysophytes: Insights into the metabolisms of two Ochromonas species (Chrysophyceae) through a comparison of gene expression Lie, Alle A. Y. Liu, Zhenfeng Terrado, Ramon Tatters, Avery O. Heidelberg, Karla B. Caron, David A. PLoS One Research Article Ochromonas spp. strains CCMP1393 and BG-1 are phagotrophic phytoflagellates with different nutritional strategies. Strain CCMP1393 is an obligate phototroph while strain BG-1 readily grows in continuous darkness in the presence of bacterial prey. Growth and gene expression of strain CCMP1393 were investigated under conditions allowing phagotrophic, mixotrophic, or phototrophic nutrition. The availability of light and bacterial prey led to the differential expression of 42% or 45–59% of all genes, respectively. Data from strain CCMP1393 were compared to those from a study conducted previously on strain BG-1, and revealed notable differences in carbon and nitrogen metabolism between the 2 congeners under similar environmental conditions. Strain BG-1 utilized bacterial carbon and amino acids through glycolysis and the tricarboxylic acid cycle, while downregulating light harvesting and carbon fixation in the Calvin cycle when both light and bacteria were available. In contrast, the upregulation of genes related to photosynthesis, light harvesting, chlorophyll synthesis, and carbon fixation in the presence of light and prey for strain CCMP1393 implied that this species is more phototrophic than strain BG-1, and that phagotrophy may have enhanced phototrophy. Cellular chlorophyll a content was also significantly higher in strain CCMP1393 supplied with bacteria compared to those without prey. Our results thus point to very different physiological strategies for mixotrophic nutrition in these closely related chrysophyte species. Public Library of Science 2018-02-13 /pmc/articles/PMC5811012/ /pubmed/29438384 http://dx.doi.org/10.1371/journal.pone.0192439 Text en © 2018 Lie et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lie, Alle A. Y.
Liu, Zhenfeng
Terrado, Ramon
Tatters, Avery O.
Heidelberg, Karla B.
Caron, David A.
A tale of two mixotrophic chrysophytes: Insights into the metabolisms of two Ochromonas species (Chrysophyceae) through a comparison of gene expression
title A tale of two mixotrophic chrysophytes: Insights into the metabolisms of two Ochromonas species (Chrysophyceae) through a comparison of gene expression
title_full A tale of two mixotrophic chrysophytes: Insights into the metabolisms of two Ochromonas species (Chrysophyceae) through a comparison of gene expression
title_fullStr A tale of two mixotrophic chrysophytes: Insights into the metabolisms of two Ochromonas species (Chrysophyceae) through a comparison of gene expression
title_full_unstemmed A tale of two mixotrophic chrysophytes: Insights into the metabolisms of two Ochromonas species (Chrysophyceae) through a comparison of gene expression
title_short A tale of two mixotrophic chrysophytes: Insights into the metabolisms of two Ochromonas species (Chrysophyceae) through a comparison of gene expression
title_sort tale of two mixotrophic chrysophytes: insights into the metabolisms of two ochromonas species (chrysophyceae) through a comparison of gene expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5811012/
https://www.ncbi.nlm.nih.gov/pubmed/29438384
http://dx.doi.org/10.1371/journal.pone.0192439
work_keys_str_mv AT liealleay ataleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT liuzhenfeng ataleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT terradoramon ataleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT tattersaveryo ataleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT heidelbergkarlab ataleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT carondavida ataleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT liealleay taleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT liuzhenfeng taleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT terradoramon taleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT tattersaveryo taleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT heidelbergkarlab taleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression
AT carondavida taleoftwomixotrophicchrysophytesinsightsintothemetabolismsoftwoochromonasspecieschrysophyceaethroughacomparisonofgeneexpression