Wang Biao, Teng Da, Yu Cunhao, Yao Luming, Ma Xiaohong, Wu Tianlong
School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, China.
Shanghai Collaborative Innovation Center of Agri-Seeds, Shanghai, China.
Front Plant Sci. 2022 Sep 2;13:828153. doi: 10.3389/fpls.2022.828153. eCollection 2022.
Soybean proteins are limited by their low contents of methionine and cysteine. Herein, 7S globulin accumulation was reduced using RNA interference to silence expression, and the content of the A2B1a subunit was largely increased under the soybean seed-specific oleosin8 promoter. The results showed that the sulfur-containing amino acid content in soybean seeds drastically improved, reaching 79.194 nmol/mg, and the 11S/7S ratio had a 1.89-fold increase compared to the wild-type acceptor. The secondary structures of 11S globulin were also altered, and the β-sheet content increased with decreasing β-turn content, which was confirmed by Fourier transform infrared spectroscopy, Raman spectroscopy and circular dichroism analysis. Our findings suggested that raising the accumulation of 11S glycinin at the expense of reducing the content of 7S globulin is an attractive and precise engineering strategy to increase the amount of sulfur-containing amino acids, and soybean proteins with A2B1a subunits of 11S isolates improved, and β-subunits of 7S fractions reduced simultaneously might be an effective new material for food production.
大豆蛋白受蛋氨酸和半胱氨酸含量低的限制。在此,利用RNA干扰沉默表达以降低7S球蛋白积累,并且在大豆种子特异性油质蛋白8启动子下,A2B1a亚基的含量大幅增加。结果表明,大豆种子中含硫氨基酸含量大幅提高,达到79.194 nmol/mg,与野生型受体相比,11S/7S比值增加了1.89倍。11S球蛋白的二级结构也发生了改变,β-折叠含量增加而β-转角含量降低,这通过傅里叶变换红外光谱、拉曼光谱和圆二色性分析得到证实。我们的研究结果表明,以降低7S球蛋白含量为代价提高11S大豆球蛋白的积累是一种有吸引力且精确的工程策略,可增加含硫氨基酸的含量,同时11S分离物的A2B1a亚基得到改善且7S组分的β-亚基减少的大豆蛋白可能是食品生产的一种有效新材料。