Mohan Binoop, Karthik Chandrima, Thingujam Doni, Pajerowska-Mukhtar Karolina M, Thomas Vinoy, Mukhtar M Shahid
Department of Biology, University of Alabama at Birmingham (UAB), 3100 East Science Hall, 902 14th Street South, Birmingham, AL 35294, USA.
Department of Mechanical and Materials Engineering, University of Alabama at Birmingham (UAB), Birmingham, AL 35294, USA.
Microorganisms. 2025 Jan 13;13(1):146. doi: 10.3390/microorganisms13010146.
Plasma treatment has emerged as a promising tool for manipulating plant microbiomes and metabolites. This review explores the diverse applications and effects of plasma on these biological systems. It is hypothesized that plasma treatment will not induce substantial changes in the composition of plant microbiomes or the concentration of plant metabolites. We delve into the mechanisms by which plasma can regulate microbial communities, enhance antimicrobial activity, and recruit beneficial microbes to mitigate stress. Furthermore, we discuss the optimization of plasma parameters for effective microbiome interaction and the role of plasmids in plant-microbe interactions. By characterizing plasmidome responses to plasma exposure and investigating transcriptional and metabolomic shifts, we provide insights into the potential of plasma as a tool for engineering beneficial plant-microbe interactions. The review presented herein demonstrates that plasma treatment induces substantial changes in both microbial community composition and metabolite levels, thereby refuting our initial hypothesis. Finally, we integrate plasmidome, transcriptome, and metabolome data to develop a comprehensive understanding of plasma's effects on plant biology and explore future perspectives for agricultural applications.
等离子体处理已成为一种用于操纵植物微生物群和代谢物的有前景的工具。本综述探讨了等离子体对这些生物系统的多种应用和影响。据推测,等离子体处理不会引起植物微生物群组成或植物代谢物浓度的实质性变化。我们深入研究了等离子体调节微生物群落、增强抗菌活性以及招募有益微生物以减轻压力的机制。此外,我们讨论了用于有效微生物群相互作用的等离子体参数优化以及质粒在植物 - 微生物相互作用中的作用。通过表征质粒组对等离子体暴露的反应并研究转录组和代谢组的变化,我们深入了解了等离子体作为一种用于构建有益植物 - 微生物相互作用工具的潜力。本文提出的综述表明,等离子体处理会引起微生物群落组成和代谢物水平的实质性变化,从而反驳了我们最初的假设。最后,我们整合质粒组、转录组和代谢组数据,以全面了解等离子体对植物生物学的影响,并探索农业应用的未来前景。