Dissection of the <i>in vitro</i> developmental program of <i>Hammondia hammondi</i> reveals a link between stress sensitivity and life cycle flexibility in <i>Toxoplasma gondii</i>.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 29785929.
- Also identified by DOI 10.7554/eLife.36491 and PMC identifier 5963921.
- Licence recorded as CC0.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Most eukaryotic parasites are obligately heteroxenous, requiring sequential infection of different host species in order to survive. <i>Toxoplasma gondii</i> is a rare exception to this rule, having a uniquely facultative heteroxenous life cycle. To understand the origins of this phenomenon, we compared development and stress responses in <i>T. gondii</i> to those of its its obligately heteroxenous relative, <i>Hammondia hammondi</i> and have identified multiple <i>H. hammondi</i> growth states that are distinct from those in <i>T. gondii.</i> Of these, the most dramatic difference was that <i>H. hammondi</i> was refractory to stressors that robustly induce cyst formation in <i>T. gondii,</i> and this was reflected most dramatically in its unchanging transcriptome after stress exposure. We also found that <i>H. hammondi</i> could be propagated <i>in vitro</i> for up to 8 days post-excystation, and we exploited this to generate the first ever transgenic <i>H. hammondi</i> line. Overall our data show that <i>H. hammondi</i> zoites grow as stringently regulated, unique life stages that are distinct from <i>T. gondii</i> tachyzoites, and implicate stress sensitivity as a potential developmental innovation that increased the flexibility of the <i>T. gondii</i> life cycle.
Medical subject headings
- Life Cycle Stages
- Sarcocystidae
- Stress, Physiological
- Toxoplasma