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一种用于土壤中菌丝的低成本高分辨率成像装置的组装与应用。

Assembly and application of a low-cost high-resolution imaging device for hyphae in soil.

作者信息

Schaefer Holger

机构信息

Kansai Research Center, Forestry and Forest Products Research Institute, Kyoto City, Kyoto Prefecture, Japan.

出版信息

PLoS One. 2025 Jan 24;20(1):e0318083. doi: 10.1371/journal.pone.0318083. eCollection 2025.

Abstract

Soil imaging in the field and laboratory has greatly advanced our understanding of plant root systems. Soil fungi function as important plant symbionts and decomposers of complex organic material in soil environments. For fungal hyphae, however, the application of soil imaging remains scarce, limiting our understanding of hyphal systems in soil. This scarce application is partly due to the challenging development of a soil imaging device for hyphae: technical requirements to resolve fine hyphae (2-5 μm in diameter) are high, while the device cost must be low to facilitate sufficient deployment that can capture the high spatial heterogeneity of hyphal dynamics in soil. This protocol describes the do-it-yourself assembly and application of a low-cost high-resolution imaging device for observing hyphae in soil. The assembly of the open-source imaging device relies on many 3D-printed parts, reducing material costs to ca. 930 USD. The application of the imaging device yields soil profile images with a resolution of up to 0.52 μm px-1 (49000 dpi) within an observable volume of 70 × 210 × 1.5 mm. By repeatedly imaging a soil profile using the presented techniques, changes in the amount, distribution, and morphology of hyphae in soil can be observed and quantified.

摘要

田间和实验室的土壤成像极大地增进了我们对植物根系系统的理解。土壤真菌在土壤环境中作为重要的植物共生体和复杂有机物质的分解者发挥作用。然而,对于真菌菌丝而言,土壤成像的应用仍然很少,这限制了我们对土壤中菌丝系统的理解。这种应用稀少的部分原因在于开发用于菌丝的土壤成像设备具有挑战性:解析细小菌丝(直径2 - 5微米)的技术要求很高,而设备成本必须很低,以便能够进行足够的部署,从而捕捉土壤中菌丝动态的高空间异质性。本方案描述了一种用于观察土壤中菌丝的低成本高分辨率成像设备的自制组装及应用。该开源成像设备的组装依赖于许多3D打印部件,将材料成本降低至约930美元。该成像设备的应用可在70×210×1.5毫米的可观察体积内生成分辨率高达0.52微米/像素(49000 dpi)的土壤剖面图像。通过使用所介绍的技术对土壤剖面进行反复成像,可以观察和量化土壤中菌丝的数量、分布和形态变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1286/11760638/33f26790f7d4/pone.0318083.g001.jpg

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