McCormack Maggie E, Liu Xiaoyu, Jordan Melissa R, Pajerowska-Mukhtar Karolina M
Department of Biology, University of Alabama at Birmingham, Birmingham, AL USA.
Front Plant Sci. 2015 Aug 26;6:663. doi: 10.3389/fpls.2015.00663. eCollection 2015.
Tunicamycin (Tm) sensitivity assays are a useful method for studies of endoplasmic reticulum stress and the unfolded protein response in eukaryotic cells. While Tm sensitivity and Tm recovery assays have been previously described, these existing methods are time-consuming, labor intensive, and subjected to mechanical wounding. This study shows an improved method of testing Tm sensitivity in Arabidopsis using liquid Murashige and Skoog medium versus the traditional solid agar plates. Liquid medium bypasses the physical manipulation of seedlings, thereby eliminating the risk of potential mechanical damage and additional unwanted stress to seedlings. Seedlings were subjected to comparative treatments with various concentrations of Tm on both solid and liquid media and allowed to recover. Determination of fresh weight, chlorophyll contents analysis and qRT-PCR results confirm the efficacy of using liquid medium to perform quantitative Tm stress assays.
衣霉素(Tm)敏感性测定是研究真核细胞内质网应激和未折叠蛋白反应的一种有用方法。虽然此前已经描述了Tm敏感性和Tm恢复测定方法,但这些现有方法耗时、 labor intensive,并且容易受到机械损伤。本研究展示了一种改进的方法,即在拟南芥中使用液体Murashige和Skoog培养基而非传统的固体琼脂平板来测试Tm敏感性。液体培养基避免了对幼苗的物理操作,从而消除了潜在机械损伤和对幼苗额外不必要应激的风险。在固体和液体培养基上,用不同浓度的Tm对幼苗进行对比处理并使其恢复。鲜重测定、叶绿素含量分析和qRT-PCR结果证实了使用液体培养基进行定量Tm应激测定的有效性。 (注:“labor intensive”直译为“劳动密集型”,这里结合语境意译为“耗费人力”更合适)