Department of Plant Sciences and Plant Pathology, Montana State University, 119 Plant Bioscience Building, Bozeman, MT 59717-3150, USA.
Plant Mol Biol. 2010 Nov;74(4-5):353-65. doi: 10.1007/s11103-010-9679-3. Epub 2010 Aug 20.
Plant oil content and composition improvement is a major goal of plant breeding and biotechnology. The Puroindoline a and b (PINA and PINB) proteins together control whether wheat seeds are soft or hard textured and share a similar structure to that of plant non-specific lipid-transfer proteins. Here we transformed corn (Zea mays L.) with the wheat (Triticum aestivum L.) puroindoline genes (Pina and Pinb) to assess their effects upon seed oil content and quality. Pina and Pinb coding sequences were introduced into corn under the control of a corn Ubiquitin promoter. Three Pina/Pinb expression positive transgenic events were evaluated over two growing seasons. The results showed that Pin expression increased germ size significantly without negatively impacting seed size. Germ yield increased 33.8% while total seed oil content was increased by 25.23%. Seed oil content increases were primarily the result of increased germ size. This work indicates that higher oil content corn hybrids having increased food or feed value could be produced via puroindoline expression.
提高植物油脂含量和组成是植物育种和生物技术的主要目标。醇溶蛋白 a 和 b(PINA 和 PINB)蛋白共同控制小麦种子的质地是软是硬,它们的结构与植物非特异性脂质转移蛋白相似。在这里,我们将小麦醇溶蛋白基因(Pina 和 Pinb)转化到玉米(Zea mays L.)中,以评估它们对种子油含量和质量的影响。Pina 和 Pinb 编码序列在玉米泛素启动子的控制下被导入玉米。在两个生长季节评估了三个 Pina/Pinb 表达阳性的转基因事件。结果表明,Pin 表达显著增加了胚的大小,而不影响种子的大小。胚的产量增加了 33.8%,而总种子油含量增加了 25.23%。种子油含量的增加主要是胚大小增加的结果。这项工作表明,通过醇溶蛋白表达可以生产出具有更高油含量的玉米杂交种,从而提高其食品或饲料价值。