The Genetic Engineering International Cooperation Base of Chinese Ministry of Science and Technology, Chinese National Center of Plant Gene Research (Wuhan) HUST Part, The Key Laboratory of Molecular Biophysics of Chinese Ministry of Education, College of Life Science and Technology, Huazhong University of Science & Technology (HUST), Wuhan, China.
PLoS One. 2013 Oct 22;8(10):e78451. doi: 10.1371/journal.pone.0078451. eCollection 2013.
Seed storage proteins in wheat endosperm, particularly high-molecular-weight glutenin subunits (HMW-GS), are primary determinants of dough properties, and affect both end-use quality and grain utilization of wheat (Triticum aestivum L). In order to investigate the interactive effects between the transgenically overexpressed 1Ax1 subunit with different HMW-GS on dough quality traits, we developed a set of 8 introgression lines (ILs) overexpressing the transgenic HMW-glutenin subunit 1Ax1 by introgression of this transgene from transgenic line B102-1-2/1 into an elite Chinese wheat variety Chuanmai107 (C107), using conventional crossing and backcrossing breeding technique. The donor C107 strain lacks 1Ax1 but contains the HMW-GS pairs 1Dx2+1Dy12 and 1Bx7+1By9. The resultant ILs showed robust and stable expression of 1Ax1 even after five generations of self-pollination, and crossing/backcrossing three times. In addition, overexpression of 1Ax1 was compensated by the endogenous gluten proteins. All ILs exhibited superior agronomic performance when compared to the transgenic parent line, B102-1-2/1. Mixograph results demonstrated that overexpressed 1Ax1 significantly improved dough strength, resistance to extension and over-mixing tolerance, in the targeted wheat cultivar C107. Further, comparisons among the ILs showed the interactive effects of endogenous subunits on dough properties when 1Ax1 was overexpressed: subunit pair 17+18 contributed to increased over-mixing tolerance of the dough; expression of the Glu-D1 allele maintained an appropriate balance between x-type and y-type subunits and thereby improved dough quality. It is consistent with ILs C4 (HMW-GS are 1, 17+18, 2+12) had the highest gluten index and Zeleny sedimentation value. This study demonstrates that wheat quality could be improved by using transgenic wheat overexpressing HMW-GS and the feasibility of using such transgenic lines in wheat quality breeding programs.
小麦胚乳中的种子贮藏蛋白,特别是高分子量谷蛋白亚基(HMW-GS),是面团特性的主要决定因素,影响小麦的食用品质和谷物利用。为了研究转基因过表达 1Ax1 亚基与不同 HMW-GS 之间的互作效应对面团品质特性的影响,我们通过将该转基因从转基因系 B102-1-2/1 导入到优质中国小麦品种川麦 107(C107)中,利用常规杂交和回交育种技术,开发了一套 8 个过表达转基因 HMW-谷蛋白亚基 1Ax1 的导入系(ILs)。供体 C107 品系缺乏 1Ax1,但含有 HMW-GS 对 1Dx2+1Dy12 和 1Bx7+1By9。结果表明,即使经过五代自交和三次杂交/回交,ILs 仍能稳定表达 1Ax1。此外,1Ax1 的过表达被内源性谷蛋白蛋白补偿。与转基因亲本系 B102-1-2/1 相比,所有 ILs 均表现出优异的农艺性能。粉质仪结果表明,在目标小麦品种 C107 中,过表达 1Ax1 显著提高了面团强度、延伸阻力和过度混合耐受性。进一步比较 ILs 表明,当 1Ax1 过表达时,内源性亚基对面团特性的互作效应:亚基对 17+18 有助于提高面团的过度混合耐受性;Glu-D1 等位基因的表达保持了 x 型和 y 型亚基之间的适当平衡,从而改善了面团品质。这与 ILs C4(HMW-GS 为 1、17+18、2+12)具有最高的面筋指数和 Zeleny 沉淀值一致。本研究表明,通过利用转基因小麦过表达 HMW-GS 可以提高小麦品质,并为利用此类转基因系进行小麦品质育种计划提供了可行性。