Unverified paper record
A Modular Tray Growth System for Barley.
Methods in molecular biology (Clifton, N.J.) · 1 Jan 2020 · 10.1007/978-1-4939-9818-0_26
Abstract
Determining when a barley plant starts and finishes meiosis is not trivial as when the spikelets undergo meiosis, the spike is not visible as it is still well within the leaf sheath on the developing tiller. This is a general constraint for any experiment involving meiosis, such as cytology, RNA extractions, or abiotic stress treatments aiming to target such a developmental stage. The lack of synchronicity between barley tillers within the same plant exacerbates the difficulty to determine the overall meiotic stage of a plant at a certain time.Given the lack of a nondestructive staging system for predicting the entry into meiosis and the problems of working with large pot plant systems, a modular plant growing is proposed. This system enables the growth of a high number of plants in a small surface, each producing a single tiller. The modular tray system was used to generate a nondestructive prediction tool for meiosis by using external morphological features. As an example, the system is used here for heat treating F 1 plants in early meiosis stages to modify recombination.
Plant phenotyping relevance
外部形態から大麦の減数分裂開始時期を非破壊予測する方法を開発しており、植物フェノタイピング手法が中心的な貢献である。
abstractThe modular tray system was used to generate a nondestructive prediction tool for meiosis by using external morphological features.
Code and data availability
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