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从杨树林根际土壤中分离的解钾真菌(枝孢霉属)的特性研究。

Characterization of potassium-solubilizing fungi, Mortierella spp., isolated from a poplar plantation rhizosphere soil.

机构信息

College of Ecology and Environment, Nanjing Forestry University, 159 Longpan Road, Nanjing, 210037, China.

出版信息

Arch Microbiol. 2024 Mar 13;206(4):157. doi: 10.1007/s00203-024-03912-w.

Abstract

Potassium-solubilizing microorganisms are capable of secreting acidic chemicals that dissolve and release potassium from soil minerals, thus facilitating potassium uptake by plants. In this study, three potassium-dissolving filamentous fungi were isolated from the rhizosphere soil of a poplar plantation in Jiangsu Province, China. Phylogenetic analyses based on ITS, 18 S, and 28 S showed that these three isolates were most similar to Mortierella. These strains also possessed spherical or ellipsoidal spores, produced sporangia at the hyphal tip, and formed petal-like colonies on PDA media resembling those of Mortierella species. These findings, along with further phenotypic observations, suggest that these isolates were Mortierella species. In addition, the potassium-dissolution experiment showed that strain 2K4 had a relatively high potassium-solubilizing capacity among these isolated fungi. By investigating the influences of different nutrient conditions (carbon source, nitrogen source, and inorganic salt) and initial pH values on the potassium-dissolving ability, the optimal potassium-solubilization conditions of the isolate were determined. When potassium feldspar powder was used as an insoluble potassium source, isolate 2K4 exhibited a significantly better polysaccharide aggregation ability on the formed mycelium-potassium feldspar complex. The composition and content of organic acids secreted by strain 2K4 were further detected, and the potassium-dissolution mechanism of the Mortierella species and its growth promotion effect were discussed, using maize as an example.

摘要

解钾微生物能够分泌酸性化学物质,溶解和释放土壤矿物中的钾,从而促进植物对钾的吸收。本研究从江苏省杨树人工林根际土壤中分离得到 3 株解钾丝状真菌。基于 ITS、18S 和 28S 的系统发育分析表明,这 3 株分离物与 Mortierella 最为相似。这些菌株还具有球形或椭圆形孢子,在菌丝顶端产生孢子囊,并在 PDA 培养基上形成花瓣状菌落,类似于 Mortierella 属的菌株。这些发现以及进一步的表型观察表明,这些分离物是 Mortierella 属的菌株。此外,解钾实验表明,菌株 2K4 在这些分离真菌中具有相对较高的解钾能力。通过研究不同营养条件(碳源、氮源和无机盐)和初始 pH 值对解钾能力的影响,确定了该分离物的最佳解钾条件。当钾长石粉作为不溶性钾源时,分离物 2K4 在形成的菌丝-钾长石复合物上表现出更好的多糖聚集能力。进一步检测了菌株 2K4 分泌的有机酸的组成和含量,并以玉米为例,讨论了 Mortierella 属的解钾机制及其生长促进作用。

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