Suppr超能文献

快速切片机、一种3D打印的切片机以及一种用于高质量植物切片的改进手动切片方法。

The rapid-tome, a 3D-printed microtome, and an updated hand-sectioning method for high-quality plant sectioning.

作者信息

Thomas David J, Rainbow Jordan, Bartley Laura E

机构信息

Department of Microbiology and Plant Biology, University of Oklahoma, Norman, OK, 73019, USA.

Institute of Biological Chemistry, Washington State University, Pullman, WA, 99164, USA.

出版信息

Plant Methods. 2023 Feb 4;19(1):12. doi: 10.1186/s13007-023-00986-3.

Abstract

BACKGROUND

Microscopic analysis of plant anatomy is a common procedure in biology to study structure and function that requires high-quality sections for accurate measurements. Hand sectioning of specimens is typically limited to moderately soft tissue while harder samples prohibit sectioning by hand and/or result in inconsistent thicknesses.

RESULTS

Here we present both a clearly described hand-sectioning method and a novel microtome design that together provide the means to section a variety of plant sample types. The described hand-sectioning method for herbaceous stems works well for softer subjects but is less suitable for samples with secondary growth (e.g., wood production). Instead, the "Rapid-Tome" is a novel tool for sectioning both soft and tougher high-aspect-ratio samples, such as stems and roots, with excellent sample control. The Rapid-Tome can be 3D-printed in approximately 18 h on a mid-quality printer common at university maker spaces. After printing and trimming, Rapid-Tome assembly takes a few minutes with five metal parts common at hardware stores. Users sectioned a variety of plant samples including the hollow internodes of switchgrass (Panicum virgatum), fibrous switchgrass roots containing aerenchyma, and woody branches of eastern red cedar (Juniperus virginiana) and American sycamore (Platanus occidentalis). A comparative analyses with Rapid-Tome-produced sections readily revealed a significant difference in seasonal growth of sycamore xylem vessel area in spring (49%) vs. summer (23%). Additionally, high school students with no prior experience produced sections with the Rapid-Tome adequate for comparative analyses of various plant samples in less than an hour.

CONCLUSIONS

The described hand-sectioning method is suitable for softer tissues, including hollow-stemmed grasses and similar samples. In addition, the Rapid-Tome provides capacity to safely produce high-quality sections of tougher plant materials at a fraction of the cost of traditional microtomes combined with excellent sample control. The Rapid-Tome features rapid sectioning, sample advancement, blade changes, and sample changes; it is highly portable and can be used easily with minimal training making production of thin sections accessible for classroom and outreach use, in addition to research.

摘要

背景

植物解剖结构的显微镜分析是生物学中研究结构与功能的常用方法,需要高质量切片以进行精确测量。手工切片标本通常仅限于中等软质组织,而较硬的样本则无法手工切片,且/或导致切片厚度不一致。

结果

在此,我们展示了一种描述清晰的手工切片方法和一种新型切片机设计,它们共同提供了对多种植物样本类型进行切片的手段。所描述的草本茎手工切片方法适用于较软的样本,但不太适合有次生生长的样本(如木材生产)。相反,“快速切片机”是一种用于切片软质和硬质高长宽比样本(如茎和根)的新型工具,对样本的控制效果极佳。快速切片机可以在大学创客空间常见的中等质量打印机上约18小时内3D打印出来。打印并修剪后,使用五金店常见的五个金属部件,快速切片机的组装只需几分钟。用户对多种植物样本进行了切片,包括柳枝稷(Panicum virgatum)的中空节间、含有通气组织的柳枝稷纤维根,以及东部红雪松(Juniperus virginiana)和美国梧桐(Platanus occidentalis)的木质枝条。对快速切片机制作的切片进行的比较分析很容易揭示出梧桐木质部导管面积在春季(49%)与夏季(23%)的季节性生长存在显著差异。此外,没有经验的高中生使用快速切片机在不到一小时内就能制作出适合对各种植物样本进行比较分析的切片。

结论

所描述的手工切片方法适用于较软的组织,包括中空茎的草类和类似样本。此外,快速切片机能够以传统切片机成本的一小部分安全地制作出高质量的较硬植物材料切片,同时对样本有极佳的控制。快速切片机具有快速切片、样本推进、刀片更换和样本更换功能;它高度便携,经过最少的培训即可轻松使用,除了研究用途外,还可用于课堂教学和科普活动中的薄片制作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cacb/9898918/31efb38f648b/13007_2023_986_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验