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Simulated Microgravity Induces Cultivar-Specific Changes Affecting <i>Salmonella enterica</i> Ingression Independent of Stomatal Physiology

2026-05-15

Abstract excerpt

Advances in NASA’s astrobiology program have demonstrated the feasibility of cultivating plants in space and in analog extraterrestrial habitats. In addition to abiotic stressors, plants grown in terrestrial and space-like environments are challenged by both phytopathogens and opportunistic human pathogens, with implications for plant productivity and human health. The persistence of human-associated pathogens in...

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Literature Corpus work
53bc8f16-aaf8-5e04-b40a-dd2d670c91db
DOI
10.64898/2026.05.13.724889
Open publication

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Simulated Microgravity Induces Cultivar-Specific Changes Affecting <i>Salmonella enterica</i> Ingression Independent of Stomatal PhysiologyDOI 10.64898/2026.05.13.724889
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