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优化拟南芥茎和根原生质体培养的方案

Optimizing Protocols for Arabidopsis Shoot and Root Protoplast Cultivation.

作者信息

Pasternak Taras, Paponov Ivan A, Kondratenko Serhii

机构信息

Institute of Biology II/Molecular Plant Physiology, Centre for BioSystems Analysis, BIOSS Centre for Biological Signalling Studies University of Freiburg, 79104 Freiburg, Germany.

Department of Food Science, Aarhus University, 8200 Aarhus, Denmark.

出版信息

Plants (Basel). 2021 Feb 15;10(2):375. doi: 10.3390/plants10020375.

Abstract

Procedures for the direct regeneration of entire plants from a shoot and root protoplasts of have been optimized. The culture media for protoplast donor-plant cultivation and protoplast culture have been adjusted for optimal plant growth, plating efficiency, and promotion of shoot regeneration. Protocols have been established for the detection of all three steps in plant regeneration: (i) chromatin relaxation and activation of auxin biosynthesis, (ii) cell cycle progression, and (iii) conversion of cell-cycle active cells to totipotent ones. The competence for cell division was detected by DNA replication events and required high cell density and high concentrations of the auxinic compound 2,4-D. Cell cycle activity and globular structure formation, with subsequent shoot induction, were detected microscopically and by labeling with fluorescent dye Rhodamine123. The qPCR results demonstrated significantly upregulated expression of the genes responsible for nuclear reorganization, auxin responses, and auxin biosynthesis during the early stage of cell reprogramming. We further optimized cell reprogramming with this protocol by applying glutathione (GSH), which increases the sensitivity of isolated mesophyll protoplasts to cell cycle activation by auxin. The developed protocol allows us to investigate the molecular mechanism of the de-differentiation of somatic plant cells.

摘要

从芽和根原生质体直接再生完整植株的程序已得到优化。用于原生质体供体植物培养和原生质体培养的培养基已进行调整,以实现最佳的植物生长、接种效率和促进芽再生。已建立了用于检测植物再生所有三个步骤的方案:(i)染色质松弛和生长素生物合成的激活,(ii)细胞周期进程,以及(iii)细胞周期活跃细胞向全能细胞的转化。通过DNA复制事件检测细胞分裂能力,这需要高细胞密度和高浓度的生长素类化合物2,4 - D。通过显微镜观察并用荧光染料罗丹明123标记来检测细胞周期活性和球形结构形成以及随后的芽诱导。qPCR结果表明,在细胞重编程早期,负责核重组、生长素反应和生长素生物合成的基因表达显著上调。我们通过应用谷胱甘肽(GSH)进一步优化了该方案的细胞重编程,谷胱甘肽可提高分离的叶肉原生质体对生长素激活细胞周期的敏感性。所开发的方案使我们能够研究体细胞去分化的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1058/7919498/500ffc9e5158/plants-10-00375-g001.jpg

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