Chang Yujie, Shen Erli, Wen Liuying, Yu Jingjuan, Zhu Dengyun, Zhao Qian
State Key Laboratory of Agricultural Biotechnology, College of Biological Sciences, China Agricultural University, Beijing, China.
PLoS One. 2015 Nov 18;10(11):e0142952. doi: 10.1371/journal.pone.0142952. eCollection 2015.
Lysine is the most limiting essential amino acid for animal nutrition in maize grains. Expression of naturally lysine-rich protein genes can increase the lysine and protein contents in maize seeds. AtMAP18 from Arabidopsis thaliana encoding a microtubule-associated protein with high-lysine content was introduced into the maize genome with the seed-specific promoter F128. The protein and lysine contents of different transgenic offspring were increased prominently in the six continuous generations investigated. Expression of AtMAP18 increased both zein and non-zein protein in the transgenic endosperm. Compared with the wild type, more protein bodies were observed in the endosperm of transgenic maize. These results implied that, as a cytoskeleton binding protein, AtMAP18 facilitated the formation of protein bodies, which led to accumulation of both zein and non-zein proteins in the transgenic maize grains. Furthermore, F1 hybrid lines with high lysine, high protein and excellent agronomic traits were obtained by hybridizing T6 transgenic offspring with other wild type inbred lines. This article provides evidence supporting the use of cytoskeleton-associated proteins to improve the nutritional value of maize.
赖氨酸是玉米籽粒动物营养中最具限制性的必需氨基酸。天然富含赖氨酸的蛋白质基因的表达可提高玉米种子中的赖氨酸和蛋白质含量。将来自拟南芥的编码高赖氨酸含量微管相关蛋白的AtMAP18,与种子特异性启动子F128一起导入玉米基因组。在连续研究的六个世代中,不同转基因后代的蛋白质和赖氨酸含量显著增加。AtMAP18的表达增加了转基因胚乳中的醇溶蛋白和非醇溶蛋白。与野生型相比,在转基因玉米的胚乳中观察到更多的蛋白体。这些结果表明,作为一种细胞骨架结合蛋白,AtMAP18促进了蛋白体的形成,从而导致转基因玉米籽粒中醇溶蛋白和非醇溶蛋白的积累。此外,通过将T6转基因后代与其他野生型自交系杂交,获得了具有高赖氨酸、高蛋白和优良农艺性状的F1杂交系。本文提供了支持使用细胞骨架相关蛋白改善玉米营养价值的证据。