Mildaziene Vida, Ivankov Anatolii, Sera Bozena, Baniulis Danas
Faculty of Natural Sciences, Vytautas Magnus University, LT-44404 Kaunas, Lithuania.
Department of Environmental Ecology and Landscape Management, Faculty of Natural Sciences, Comenius University in Bratislava, 84215 Bratislava, Slovakia.
Plants (Basel). 2022 Mar 23;11(7):856. doi: 10.3390/plants11070856.
Among the innovative technologies being elaborated for sustainable agriculture, one of the most rapidly developing fields relies on the positive effects of non-thermal plasma (NTP) treatment on the agronomic performance of plants. A large number of recent publications have indicated that NTP effects are far more persistent and complex than it was supposed before. Knowledge of the molecular basis and the resulting outcomes of seed treatment with NTP is rapidly accumulating and requires to be analyzed and presented in a systematic way. This review focuses on the biochemical and physiological processes in seeds and plants affected by seed treatment with NTP and the resulting impact on plant metabolism, growth, adaptability and productivity. Wide-scale changes evolving at the epigenomic, transcriptomic, proteomic and metabolic levels are triggered by seed irradiation with NTP and contribute to changes in germination, early seedling growth, phytohormone amounts, metabolic and defense enzyme activity, secondary metabolism, photosynthesis, adaptability to biotic and abiotic stress, microbiome composition, and increased plant fitness, productivity and growth on a longer time scale. This review highlights the importance of these novel findings, as well as unresolved issues that remain to be investigated.
在为可持续农业而研发的创新技术中,发展最为迅速的领域之一依赖于非热等离子体(NTP)处理对植物农艺性能的积极影响。最近大量的出版物表明,NTP的影响远比之前认为的更为持久和复杂。关于NTP种子处理的分子基础及结果的知识正在迅速积累,需要以系统的方式进行分析和呈现。本综述聚焦于受NTP种子处理影响的种子和植物中的生化及生理过程,以及对植物代谢、生长、适应性和生产力的影响。NTP种子辐照引发了表观基因组、转录组、蛋白质组和代谢水平上的广泛变化,这些变化导致了发芽、幼苗早期生长、植物激素含量、代谢和防御酶活性、次生代谢、光合作用、对生物和非生物胁迫的适应性、微生物群落组成的改变,并在更长的时间尺度上提高了植物的健康状况、生产力和生长。本综述强调了这些新发现的重要性,以及有待研究的未解决问题。