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采用卷毛巾法进行玉米幼苗生长和激素反应分析。

Maize Seedling Growth and Hormone Response Assays Using the Rolled Towel Method.

机构信息

Department of Genetics, Development, and Cell Biology, Iowa State University, Ames, Iowa.

Current address: Corteva Agriscience, 8325 NW 62nd Ave, Johnston, Iowa.

出版信息

Curr Protoc. 2022 Oct;2(10):e562. doi: 10.1002/cpz1.562.

Abstract

Root system architecture is a critical factor in maize health and stress resilience. Determining the genetic and environmental factors that shape maize root system architecture is an active research area. However, the ability to phenotype juvenile root systems is hindered by the use of field-grown and soil-based systems. An alternative to soil- and field-based growing conditions for maize seedlings is a controlled environment with a soil-free medium, which can facilitate root system phenotyping. Here, we describe how to grow maize under soil-free conditions for up to 12 days to facilitate root phenotyping. Maize seeds are sterilized and planted on specialized seed germination paper to minimize fungal contamination and ensure synchronized seedling growth, followed by imaging at the desired time point. The root images are then analyzed to quantify traits of interest, such as primary root length, lateral root density, seminal root length, and seminal root number. In addition, juvenile shoot traits can be quantified using manual annotation methods. We also outline the steps for performing rigorous hormone response assays for four classical phytohormones: auxin, brassinosteroid, cytokinin, and jasmonic acid. This protocol can be rapidly scaled up and is compatible with genetic screens and sample collection for downstream molecular analyses such as transcriptomics and proteomics. © 2022 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Maize seedling rolled towel assay and phenotyping Basic Protocol 2: Maize seedling hormone response assays using the rolled towel assay.

摘要

根系结构是影响玉米健康和抗逆性的关键因素。研究影响玉米根系结构形成的遗传和环境因素是当前的一个活跃领域。然而,由于采用田间生长和基于土壤的系统,对幼年玉米根系表型的能力受到限制。替代土壤和田间生长条件的方法是使用无土的受控环境,这有助于根系表型分析。在这里,我们描述了如何在无土条件下生长玉米长达 12 天,以促进根系表型分析。将玉米种子进行消毒并种植在专门的种子发芽纸上,以尽量减少真菌污染并确保幼苗同步生长,然后在所需的时间点进行成像。然后分析根图像以量化感兴趣的特征,例如主根长度、侧根密度、初生根长度和初生根数量。此外,还可以使用手动注释方法来量化幼茎的特征。我们还概述了使用经典植物激素:生长素、油菜素内酯、细胞分裂素和茉莉酸进行严格激素反应测定的步骤。该方案可以快速扩展,并与遗传筛选和样本收集兼容,用于下游的分子分析,如转录组学和蛋白质组学。© 2022 作者。 Wiley Periodicals LLC 出版的《当代协议》。 基本方案 1:玉米幼苗滚毛巾测定法和表型分析 基本方案 2:使用滚毛巾测定法进行玉米幼苗激素反应测定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b4c/11648833/dd1e5e3beefe/CPZ1-2-0-g004.jpg

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