A transient gene expression system in Populus euphratica Oliv. protoplasts prepared from suspension cultured cells

被引:0
作者
Yinghua Guo
Xueqin Song
Shutang Zhao
Jianxiong Lv
Mengzhu Lu
机构
[1] Chinese Academy of Forestry,State Key Laboratory of Tree Genetics and Breeding, Research Institute of Forestry
[2] Nanjing Forestry University,Co
来源
Acta Physiologiae Plantarum | 2015年 / 37卷
关键词
Oliv.; Suspension culture; Protoplast; Transient gene expression;
D O I
暂无
中图分类号
学科分类号
摘要
Populus euphratica Oliv., a species of the model woody plant genus Populus, is well known for its tolerance to salinity stress, the underlying mechanism of which is a research hotspot. Transient expression of fluorescent fusion proteins is commonly used for rapid assessment of gene functions and interactions, and thus would be useful to study the genes involved in salt tolerance in this species. Our transient gene expression protocol for P. euphratica included a simple protoplast preparation and transformation procedure from suspension cultured cells. The highest protoplast yield (8 × 107 g−1 fresh weight) with high viability (above 90 %) was obtained using an optimized enzyme mix of 4 % (w/v) cellulase R10, 0.5 % (w/v) pectinase, and 0.2 % (w/v) hemicellulase. Factors affecting protoplast transformation efficiency were also optimized: 20 μg plasmid DNA versus 105 protoplasts, and a transformation time of 20 min using PEG, which resulted in a transformation efficiency greater than 50 %. A pair of known markers was simultaneously and correctly expressed in the same P. euphratica protoplasts by co-transformation. The isolation and transformation protocol took 5 h, and results could be obtained within 24 h. This protoplast transient expression system is suitable for studying gene expression, protein localization, and protein–protein interactions in woody plants. In addition, it would be particularly useful for studying the signaling pathway involved in the salt tolerance of P. euphratica in a homologous system, which may not even be possible using protoplasts prepared from other species.
引用
收藏
相关论文
共 221 条
  • [1] Bai Y(2014)A transient gene expression system using barley protoplasts to evaluate microRNAs for post-transcriptional regulation of their target genes Plant Cell Tissue Organ Cult (PCTOC) 119 211-219
  • [2] Han N(2009)Positive fluorescent selection permits precise, rapid, and in-depth overexpression analysis in plant protoplasts Plant Physiol 149 1231-1239
  • [3] Wu J(2010)Fluorescence activated cell sorting of plant protoplasts J Vis Exp JoVE 2 615-619
  • [4] Yang Y(2005)Cell type-specific expression profiling in plants via cell sorting of protoplasts from fluorescent reporter lines Nat Methods 6 R101-1281
  • [5] Wang J(2005)Gene expression and metabolite profiling of Populus euphratica growing in the Negev desert Genome Biol 36 1271-333
  • [6] Zhu M(2014)PEG-mediated transient gene expression and silencing system in maize mesophyll protoplasts: a valuable tool for signal transduction study in maize Acta Physiol Plant 12 317-16
  • [7] Bian H(2010)Salinity tolerance of Populus Plant Biol 2 8-4
  • [8] Bargmann BO(2000)Cellular distribution of ions in salt-stressed cells of Populus euphratica and P. tomentosa For Stud China 4 1-975
  • [9] Birnbaum KD(2002)Isolation of protoplast and ion channel recording in plasma membrane of suspension cells of Populus euphratica For Stud China 33 967-736
  • [10] Bargmann BO(2003)Effects of NaCl on shoot growth, transpiration, ion compartmentation, and transport in regenerated plants of Populus euphratica and Populus tomentosa Can J For Res 26 725-276