Calgene Campus, Monsanto Company, 1920 Fifth Street, Davis, CA 95616, USA.
Plant Mol Biol. 2010 Jul;73(4-5):569-85. doi: 10.1007/s11103-010-9644-1. Epub 2010 May 16.
Corn protein is largely made up of a group of nutritionally limited storage proteins known as zein. The reduction of zein can be achieved by a transcriptional mutation, opaque2 (o2), or a transgene targeting zein through RNA interference (RNAi). Zein reduction results in an increase of more nutritionally balanced non-zein proteins, and therefore enhance the overall quality of corn protein. In this study, the composition of mature kernels and the transcriptional profile of developing kernels of these two types of zein reduced kernels were compared. Both zein reduced kernels contained higher levels of lysine and tryptophan and free amino acids were 10-20-folds more abundant than the wild-type counterpart. We also found that free lysine contributed partially to the increased lysine in o2 kernels while protein-bound lysine was mainly responsible for the increased lysine in transgenic zein reduction (TZR) kernels. Although they had relatively similar gene expression patterns in developing endosperm, o2 kernels had greater transcriptional changes than TZR kernels in general. A number of transcripts that were specifically down-regulated in o2 were identified. Many promoter sequences of these transcripts contain putative O2 binding motifs, suggesting that their expression is directly regulated by O2.
玉米蛋白主要由一组营养有限的贮藏蛋白组成,称为醇溶蛋白。通过转录突变、不透明 2 型(o2)或通过 RNA 干扰(RNAi)靶向醇溶蛋白的转基因,可以减少醇溶蛋白。减少醇溶蛋白会导致更多营养平衡的非醇溶蛋白的增加,从而提高玉米蛋白的整体质量。在这项研究中,比较了这两种类型的醇溶蛋白减少型玉米成熟子粒的组成和发育子粒的转录谱。两种醇溶蛋白减少型玉米子粒都含有更高水平的赖氨酸和色氨酸,游离氨基酸比野生型对照高出 10-20 倍。我们还发现,游离赖氨酸部分有助于 o2 型子粒中赖氨酸的增加,而蛋白质结合的赖氨酸主要负责转基因醇溶蛋白减少(TZR)型子粒中赖氨酸的增加。尽管它们在发育的胚乳中具有相对相似的基因表达模式,但 o2 型子粒的转录变化通常大于 TZR 型子粒。鉴定出许多在 o2 中特异性下调的转录本。这些转录本的许多启动子序列含有假定的 O2 结合基序,表明它们的表达受 O2 的直接调控。