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>.

Sokol, Sarah L; Primack, Abby S; Nair, Sethu C; Wong, Zhee S; Tembo, Maiwase; Verma, Shiv K; Cerqueira-Cezar, Camila K; Dubey, J P et al. · Elife · 2018

basic_science · Level V

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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.

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