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植物根向地性分析

Analysis of Plant Root Gravitropism.

作者信息

Barker Richard, Johns Sarah, Trane Ralph, Gilroy Simon

机构信息

Department of Botany, University of Wisconsin, Madison, WI, USA.

Department of Statistics, University of Wisconsin, Madison, WI, USA.

出版信息

Methods Mol Biol. 2022;2494:3-16. doi: 10.1007/978-1-0716-2297-1_1.

Abstract

Gravity is a powerful element in shaping plant development, with gravitropism, the oriented growth response of plant organs to the direction of gravity, leading to each plant's characteristic form both above and below ground. Despite being conceptually simple to follow, monitoring a plant's directional growth responses can become complex as variation arises from both internal developmental cues as well as effects of the environment. In this protocol, we discuss approaches to gravitropism assays, focusing on automated analyses of root responses. For Arabidopsis, we recommend a simple 90° rotation using seedlings that are 5-8 days old. If images are taken at regular intervals and the environmental metadata is recorded during both seedling development and gravitropic assay, these data can be used to reveal quantitative kinetic patterns at distinct stages of the assay. The use of software that analyzes root system parameters and stores this data in the RSML format opens up the possibility for a host of root parameters to be extracted to characterize growth of the primary root and a range of lateral root phenotypes.

摘要

重力是塑造植物发育的一个强大因素,向重力性,即植物器官对重力方向的定向生长反应,导致了每株植物地上和地下的特征形态。尽管在概念上易于理解,但监测植物的定向生长反应可能会变得复杂,因为其变化既源于内部发育线索,也源于环境影响。在本方案中,我们讨论向重力性测定的方法,重点是对根系反应的自动化分析。对于拟南芥,我们建议使用5 - 8日龄的幼苗进行简单的90°旋转。如果定期拍摄图像,并在幼苗发育和向重力性测定过程中记录环境元数据,这些数据可用于揭示测定不同阶段的定量动力学模式。使用分析根系参数并以RSML格式存储这些数据的软件,为提取一系列根系参数以表征主根生长和一系列侧根表型开辟了可能性。

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