Bioproducts Department, corporación colombiana de investigación agropecuaria (AGROSAVIA), Km 14 Bogotá-Mosquera, Mosquera, Colombia.
Tibaitatá Research Center, corporación colombiana de investigación agropecuaria (AGROSAVIA), Km 14 Bogotá-Mosquera, Mosquera, Colombia.
Appl Microbiol Biotechnol. 2021 Mar;105(5):1889-1904. doi: 10.1007/s00253-021-11146-9. Epub 2021 Feb 9.
Seed coating is a technique to cover seeds with external agents to upgrade their performance, handling, and plant establishment. Plant beneficial microbes (PBMs), such as plant growth-promoting bacteria, mycorrhizal fungi, and other fungi (e.g., Trichoderma spp.), decrease agrochemical inputs, enhance tolerance to biotic-abiotic stresses, and increase essential plant nutrition. The demand for pre-treated seeds as delivery systems for biological agents is advancing. Here, a seed coating formulation containing Trichoderma koningiopsis is presented. The physicochemical and biological characterization of the seed coating prototypes included drying protector screening, the effect of the inoculum concentration on survival, the assessment of microbial release profiles in soil extract, and plant tissue colonization capability under semi-controlled conditions. Gelatine and pectin, two of the tested drying protectors, maintained fungus germination after 60 days at 18 °C with significantly higher values of up to 38% compared with the control. The initial concentration of 10 colony-forming units (CFU) per seed undergoes a positive effect on survival over time. Regarding plant tissue colonization, the fungus establishes endophytically in rice. In conclusion, seed coating is a promising alternative for the formulation of beneficial microbial agents such as Trichoderma sp., maintaining cell survival and further promoting the establishment in rice systems.Key points• Enhancing drying survival of T. koningiopsis formulates• Seed coating formulation approach for T. koningiopsis in rice• Colonization capacity of formulated T. koningiopsis in rice tissue.
种子包衣是一种用外部物质覆盖种子以提升其性能、便于操作和促进植物生长的技术。植物有益微生物(PBMs),如促生细菌、菌根真菌和其他真菌(如哈茨木霉),可以减少农用化学品的投入,提高对生物和非生物胁迫的耐受性,并增加必需的植物营养。作为生物制剂的传递系统,预处理种子的需求正在增加。在这里,我们提出了一种含有哈茨木霉菌的种子包衣配方。种子包衣原型的物理化学和生物学特性包括干燥保护剂筛选、接种浓度对存活的影响、在土壤浸提液中评估微生物释放特性,以及在半受控条件下植物组织定殖能力的评估。在 18°C 下,经过 60 天,明胶和果胶这两种测试的干燥保护剂中的两种,与对照相比,保持了真菌的发芽率,显著提高了 38%。种子初始浓度为 10 个菌落形成单位(CFU)/粒,随着时间的推移,对存活有积极的影响。关于植物组织定殖,真菌在水稻中建立了内生关系。总之,种子包衣是一种有前途的替代方案,可以将有益微生物制剂(如哈茨木霉)制成制剂,保持细胞存活,并进一步促进在水稻系统中的建立。关键点• 提高哈茨木霉菌的干燥存活率• 哈茨木霉在水稻中的种子包衣配方方法• 水稻组织中配方哈茨木霉的定殖能力。