Zeng Qingpan, Dong Jiawei, Lin Xiaoru, Zhou Xiaofu, Xu Hongwei
Jilin Provincial Key Laboratory of Plant Resource Science and Green Production, Jilin Normal University, Siping 136000, China.
J Fungi (Basel). 2024 Feb 8;10(2):136. doi: 10.3390/jof10020136.
The symbiosis between endophytic fungi and plants can promote the absorption of potassium, nitrogen, phosphorus, and other nutrients by plants. Phosphorus is one of the indispensable nutrient elements for plant growth and development. However, the content of available phosphorus in soil is very low, which limits the growth of plants. Phosphorus-soluble microorganisms can improve the utilization rate of insoluble phosphorus. In this study, (), a potential phosphorus-soluble fungus, was isolated from , a plant with strong stress resistance, and its phosphorus-soluble ability in relation to cucumber seedlings under different treatment conditions was determined. In addition, the morphological, physiological, and biochemical indexes of the cucumber seedlings were assessed. The results show that could solubilize tricalcium phosphate (TCP) and lecithin, and the solubilization effect of lecithin was higher than that of TCP. After the application of , the leaf photosynthetic index increased significantly. The photosynthetic system damage caused by low phosphorus stress was alleviated, and the root morphological indexes of cucumber seedlings were increased. The plant height, stem diameter, and leaf area of cucumber seedlings treated with were also significantly higher than those without treatment. Therefore, it was shown that is a beneficial endophytic fungus that can promote plant growth and improve plant stress resistance. This study will provide a useful reference for further research on endophytic fungi to promote growth and improve plant stress resistance.
内生真菌与植物之间的共生关系可以促进植物对钾、氮、磷等养分的吸收。磷是植物生长发育不可或缺的营养元素之一。然而,土壤中有效磷的含量很低,这限制了植物的生长。解磷微生物可以提高难溶性磷的利用率。在本研究中,从抗逆性强的植物 中分离出一种潜在的解磷真菌(),并测定了其在不同处理条件下对黄瓜幼苗的解磷能力。此外,还评估了黄瓜幼苗的形态、生理和生化指标。结果表明, 能够溶解磷酸三钙(TCP)和卵磷脂,且对卵磷脂的溶解效果高于TCP。施用 后,叶片光合指数显著提高。低磷胁迫引起的光合系统损伤得到缓解,黄瓜幼苗的根系形态指标增加。用 处理的黄瓜幼苗的株高、茎粗和叶面积也显著高于未处理的幼苗。因此,表明 是一种有益的内生真菌,能够促进植物生长并提高植物抗逆性。本研究将为进一步研究内生真菌促进生长和提高植物抗逆性提供有益参考。