Paravar Arezoo, Piri Ramin, Balouchi Hamidreza, Ma Ying
Department of Crop Production and Plant Breeding, College of Agriculture, Shahed University, Tehran, Iran.
Department of Agronomy and Plant Breeding, College of Agriculture, University of Tehran, Tehran, Iran.
Biotechnol Rep (Amst). 2023 Jan 5;37:e00781. doi: 10.1016/j.btre.2023.e00781. eCollection 2023 Mar.
Seed coating is considered one of the best methods to promote sustainable agriculture where the physical and physiological properties of seeds can be improved to facilitate planting, increase growth indices and alleviate abiotic and biotic stresses. Several methods of seed coating are used to attain good application uniformity and adherence in the seed coating process. Seed coating has been tested in seeds of various plant species with different dimensions, forms, textures, and germination types. Plant beneficial microorganisms (PBM), such as rhizobia, bacteria, and fungi inoculated via seed inoculation can increase seed germination, plant performance and tolerance across biotic (e.g., pathogens and pests) and abiotic stress (e.g., salt, drought, and heavy metals) while reducing the use of agrochemical inputs. In this review, the microbial seed coating process and their ability to increase seed performance and protect plants from biotic and abiotic stresses are well discussed and highlighted in sustainable agricultural systems.
种子包衣被认为是促进可持续农业发展的最佳方法之一,通过该方法可改善种子的物理和生理特性,便于播种,提高生长指标,并减轻非生物和生物胁迫。种子包衣过程中使用了多种方法,以实现良好的应用均匀性和附着力。种子包衣已在各种具有不同尺寸、形状、质地和发芽类型的植物种子上进行了测试。通过种子接种的植物有益微生物(PBM),如根瘤菌、细菌和真菌,可以提高种子发芽率、植物性能,并增强对生物胁迫(如病原体和害虫)和非生物胁迫(如盐、干旱和重金属)的耐受性,同时减少农用化学品的投入。在这篇综述中,对微生物种子包衣过程及其提高种子性能以及保护植物免受生物和非生物胁迫的能力进行了充分讨论,并在可持续农业系统中予以强调。