Zhang Xiaona, Yang Guimin, Gu Lingdi, Liu Can, Chen Qingfu
Research Center of Buckwheat Industry Technology, College of Life Science, Guizhou Normal University, Guiyang 550025, China.
School of International Education, Guizhou Normal University, Guiyang 550025, China.
Plants (Basel). 2024 Nov 29;13(23):3360. doi: 10.3390/plants13233360.
To obtain fungal strains that enhance plant growth in the rhizosphere soil of buckwheat, we utilized morphological and molecular biological methods to identify 10 fungal strains from the rhizosphere soil and subsequently evaluated their effects on seed germination. The results demonstrated that all 10 fungal strains were classified as . The spores of these strains significantly enhanced the germination of buckwheat seeds, with germination rates improving by 3.46% to 700.75% compared to the control group. This study fills the gap in understanding as soil rhizosphere fungi, providing a foundation and materials for the seed coating technology of buckwheat seeds.
为了获得能促进荞麦根际土壤中植物生长的真菌菌株,我们利用形态学和分子生物学方法从根际土壤中鉴定出10株真菌菌株,随后评估了它们对种子萌发的影响。结果表明,所有10株真菌菌株都被归类为 。这些菌株的孢子显著提高了荞麦种子的萌发率,与对照组相比,发芽率提高了3.46%至700.75%。本研究填补了对 作为土壤根际真菌认识的空白,为荞麦种子包衣技术提供了基础和材料。