Vensel William H, Harden Leslie, Tanaka Charlene K, Hurkman William J, Haddon William F
Crop Improvement and Utilization Research Unit, Western Regional Research Center, Albany, CA 94710, USA.
J Biomol Tech. 2002 Sep;13(3):95-100.
The commercial value of the wheat crop is a function of the quality and amount of the storage protein and starch present in the grain, which in turn are influenced by environmental conditions during grain-fill. To understand how environment modifies the size and composition of wheat grains, we set out to identify the key metabolic and regulatory proteins in developing grain. We present results of initial studies aimed at establishing instrument conditions that will allow us to identify cytoplasmic proteins present in wheat endosperm. Proteins were isolated, separated by 2D gel electrophoresis and stained with Coomassie blue to visualize and quantify changes in protein expression. Mass spectrometry was used to identify protein spots in 2D gels by means of "peptide mass maps" of in-gel enzymatically digested protein spots. Because only about 30% of the proteins could be identified by "peptide mass mapping," we developed nano-flow LC-MS/MS techniques that allowed us to identify about 80% of the salt-soluble proteins in wheat endosperm.
小麦作物的商业价值取决于谷物中储存蛋白和淀粉的质量与含量,而这又受到灌浆期环境条件的影响。为了解环境如何改变小麦籽粒的大小和组成,我们着手鉴定发育籽粒中的关键代谢蛋白和调控蛋白。我们展示了初步研究的结果,这些研究旨在确定能让我们鉴定小麦胚乳中细胞质蛋白的仪器条件。分离蛋白质,通过二维凝胶电泳进行分离,并用考马斯亮蓝染色,以可视化和量化蛋白质表达的变化。利用质谱通过凝胶内酶解蛋白质斑点的“肽质量图谱”来鉴定二维凝胶中的蛋白质斑点。由于通过“肽质量图谱”只能鉴定约30%的蛋白质,我们开发了纳流液相色谱-串联质谱技术,使我们能够鉴定小麦胚乳中约80%的盐溶性蛋白质。