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用于大豆复合植株快速功能基因分析的新型GATEWAY兼容载体工具箱。

A novel toolbox of GATEWAY-compatible vectors for rapid functional gene analysis in soybean composite plants.

作者信息

Mejias Joffrey, Margets Alexandra, Bredow Melissa, Foster Jessica, Khwanbua Ekkachai, Goshon Jackson, Maier Thomas R, Whitham Steven A, Innes Roger W, Baum Thomas J

机构信息

Department of Plant Pathology, Entomology and Microbiology, Iowa State University, Ames, IA, 50011, USA.

CIRAD, UMR PHIM, Montpellier, France.

出版信息

Plant Cell Rep. 2025 Mar 10;44(4):72. doi: 10.1007/s00299-025-03458-1.

Abstract

We developed a set of GATEWAY vectors to accelerate gene function analysis in soybean composite plants to rapidly screen transgenic roots and investigate subcellular localization, protein-protein interactions, and root-pathogen interactions. The generation of transgenic plants is essential for plant biology research to investigate plant physiology, pathogen interactions, and gene function. However, producing stable transgenic plants for plants such as soybean is a laborious and time-consuming process, which can impede research progress. Composite plants consisting of wild-type shoots and transgenic roots are an alternative method for generating transgenic plant tissues that can facilitate functional analysis of genes-of-interest involved in root development or root-microbe interactions. In this report, we introduce a novel set of GATEWAY-compatible vectors that enable a wide range of molecular biology uses in roots of soybean composite plants. These vectors incorporate in-frame epitope fusions of green fluorescent protein, 3x-HA, or miniTurbo-ID, which can be easily fused to a gene-of-interest using the GATEWAY cloning system. Moreover, these vectors allow for the identification of transgenic roots using either mCherry fluorescence or the RUBY marker. We demonstrate the functionality of these vectors by expressing subcellular markers in soybean, providing evidence of their effectiveness in generating protein fusions in composite soybean plants. Furthermore, we show how these vectors can be used for gene function analysis by expressing the bacterial effector, AvrPphB in composite roots, enabling the identification of soybean targets via immunoprecipitation followed by mass spectrometry. Additionally, we demonstrate the successful expression of stable miniTurbo-ID fusion proteins in composite roots. Overall, this new set of vectors is a powerful tool that can be used to assess subcellular localization and perform gene function analyses in soybean roots without the need to generate stable transgenic plants.

摘要

我们开发了一套GATEWAY载体,以加速大豆复合植株中的基因功能分析,从而快速筛选转基因根,并研究亚细胞定位、蛋白质-蛋白质相互作用以及根-病原体相互作用。转基因植物的产生对于植物生物学研究以探究植物生理学、病原体相互作用和基因功能至关重要。然而,对于大豆等植物而言,培育稳定的转基因植物是一个费力且耗时的过程,这可能会阻碍研究进展。由野生型地上部分和转基因根组成的复合植株是产生转基因植物组织的一种替代方法,它有助于对参与根发育或根-微生物相互作用的目标基因进行功能分析。在本报告中,我们介绍了一套新型的与GATEWAY兼容的载体,这些载体可在大豆复合植株的根中实现广泛的分子生物学应用。这些载体包含绿色荧光蛋白、3x-HA或miniTurbo-ID的读框内表位融合,使用GATEWAY克隆系统可轻松将其与目标基因融合。此外,这些载体允许使用mCherry荧光或RUBY标记来鉴定转基因根。我们通过在大豆中表达亚细胞标记物来证明这些载体的功能,为它们在复合大豆植株中产生蛋白质融合的有效性提供了证据。此外,我们展示了如何通过在复合根中表达细菌效应蛋白AvrPphB来使用这些载体进行基因功能分析,通过免疫沉淀随后进行质谱分析来鉴定大豆靶标。此外,我们证明了稳定的miniTurbo-ID融合蛋白在复合根中的成功表达。总体而言,这套新载体是一种强大的工具,可用于评估大豆根中的亚细胞定位并进行基因功能分析,而无需培育稳定的转基因植物。

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