Abstract

Liriodendron is a genus of the magnolia family comprised of two flowering tree species that produce hardwoods of great ecological and economic value. However, only a limited amount of genetic research has been performed on the Liriodendron genus partly because transient or stable transgenic trees have been difficult to produce. In general, transient expression systems are indispensable for rapid, high-throughput screening and systematic characterization of gene functions at a low cost; therefore, development of such a system for Liriodendron would provide a necessary step forward for research on Magnoliaceae and other woody trees. Herein, we describe an efficient and rapid protocol for preparing protoplasts from the leaf mesophyll tissue of a Liriodendron hybrid and an optimized system for polyethylene glycol–mediated transient transfection of the protoplasts. Because the leaves of the Liriodendron hybrid are waxy, we formulated an enzyme mix containing 1.5% (w/v) Cellulase R-10, 0.5% (w/v) Macerozyme R-10, and 0.1% (w/v) Pectolyase Y-23 to efficiently isolate protoplasts from the Liriodendron hybrid leaf mesophyll tissue in 3 h. We optimized Liriodendron protoplast transfection efficiency by including 20 μg plasmid DNA per 104 protoplasts, a transformation time of 20 min, and inclusion of 20% (w/v) polyethylene glycol 4000. After integrating the Liriodendron WOX1 gene into pJIT166-GFP to produce a WOX1-GFP fusion product and transfecting it into isolated protoplasts, LhWOX1-GFP was found to localize to the nucleus according to its green fluorescence.

Highlights

  • Plant transient-expression systems provide platforms for rapid, high-throughput screening and systematic characterization of gene functions

  • Transient expression vector of Yellow fluorescent protein (YFP)-tagged fusions of PtoMYB148-YFP was targeted to the nucleus when expressed in Arabidopsis leaf protoplasts, too was used to assess the ability of the expression system to target the product of an exogenously introduced gene to the appropriate location[28]

  • Because extensive intercellular spaces are found in Bienertia sinuspersici leaves, their loosely packed chlorenchyma cells can be readily released when leaves are gently squeezed in a mortar and pestle [33]

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Summary

Introduction

Plant transient-expression systems provide platforms for rapid, high-throughput screening and systematic characterization of gene functions. When coupled with rapid “omics” technologies, such platforms have been used to study subcellular locations of various proteins [1, 2], promoter activities [3], protein-protein interactions [4, 5], signal transduction [6, 7], gene functions, and production of biologically derived compounds [8, 9]. Transient transformation of Liriodendron hybrid leaf protoplasts. Methods for PLOS ONE | DOI:10.1371/journal.pone.0172475 March 21, 2017

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