Haveman Natasha J, Schuerger Andrew C, Yu Pei-Ling, Brown Mark, Doebler Robert, Paul Anna-Lisa, Ferl Robert J
NASA Utilization & Life Sciences Office (UB-A), Kennedy Space Center, Merritt Island, FL, United States.
Department of Plant Pathology, University of Florida, Space Life Science Lab, Merritt Island, FL, United States.
Front Plant Sci. 2023 Jun 14;14:1194753. doi: 10.3389/fpls.2023.1194753. eCollection 2023.
Human space exploration missions will continue the development of sustainable plant cultivation in what are obviously novel habitat settings. Effective pathology mitigation strategies are needed to cope with plant disease outbreaks in any space-based plant growth system. However, few technologies currently exist for space-based diagnosis of plant pathogens. Therefore, we developed a method of extracting plant nucleic acid that will facilitate the rapid diagnosis of plant diseases for future spaceflight applications. The microHomogenizer from Claremont BioSolutions, originally designed for bacterial and animal tissue samples, was evaluated for plant-microbial nucleic acid extractions. The microHomogenizer is an appealing device in that it provides automation and containment capabilities that would be required in spaceflight applications. Three different plant pathosystems were used to assess the versatility of the extraction process. Tomato, lettuce, and pepper plants were respectively inoculated with a fungal plant pathogen, an oomycete pathogen, and a plant viral pathogen. The microHomogenizer, along with the developed protocols, proved to be an effective mechanism for producing DNA from all three pathosystems, in that PCR and sequencing of the resulting samples demonstrated clear DNA-based diagnoses. Thus, this investigation advances the efforts to automate nucleic acid extraction for future plant disease diagnosis in space.
人类太空探索任务将在明显新颖的栖息地环境中继续推进可持续植物种植的发展。需要有效的病理学缓解策略来应对任何天基植物生长系统中的植物病害爆发。然而,目前用于天基植物病原体诊断的技术很少。因此,我们开发了一种提取植物核酸的方法,这将有助于未来太空飞行应用中植物病害的快速诊断。对克莱蒙特生物解决方案公司最初设计用于细菌和动物组织样本的微型均质器进行了植物微生物核酸提取评估。微型均质器是一种很有吸引力的设备,因为它提供了太空飞行应用所需的自动化和密封能力。使用三种不同的植物病理系统来评估提取过程的通用性。番茄、生菜和辣椒植株分别接种了一种真菌植物病原体、一种卵菌病原体和一种植物病毒病原体。微型均质器以及所开发的方案被证明是从所有三种病理系统中提取DNA的有效机制,因为对所得样本进行的PCR和测序显示出基于DNA的明确诊断。因此,这项研究推动了未来太空植物病害诊断核酸提取自动化的工作。