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将一种富含半胱氨酸的蛋白质——豆胰岛素以及高蛋白性状从一个亚洲大豆植物导入基因型渗入到一个北美实验大豆品系中。

Introgression of leginsulin, a cysteine-rich protein, and high-protein trait from an Asian soybean plant introduction genotype into a North American experimental soybean line.

作者信息

Krishnan Hari B, Kim Won-Seok, Oehrle Nathan W, Alaswad Alaa A, Baxter Ivan, Wiebold William J, Nelson Randall L

机构信息

†Plant Genetics Research Unit, Agricultural Research Service, U.S. Department of Agriculture, Columbia, Missouri 65211, United States.

‡Plant Science Division, University of Missouri, Columbia, Missouri 65211, United States.

出版信息

J Agric Food Chem. 2015 Mar 25;63(11):2862-9. doi: 10.1021/jf505202z. Epub 2015 Mar 16.

DOI:10.1021/jf505202z
PMID:25756929
Abstract

Soybean is an important protein source for both humans and animals. However, soybean proteins are relatively poor in the sulfur-containing amino acids, cysteine and methionine. Improving the content of endogenous proteins rich in sulfur-containing amino acids could enhance the nutritive value of soybean meal. Leginsulin, a cysteine-rich peptide, predominantly accumulates in Asian soybean accessions but not in most North American cultivars. By screening diverse soybean accessions from the USDA Soybean Germplasm Collection, we were able to identify one plant introduction, PI 427138, as a high-protein line with relatively high amounts of both elemental sulfur and leginsulin. We introgressed these desirable traits from PI 427138 into an experimental line with the aim of improving the overall protein content and quality of seed proteins. Biochemical characterization of inbred progenies from the cross of LD00-3309 with PI 427138 grown at six locations revealed stable ingression of high protein, high elemental sulfur, and high leginsulin accumulation. Comparison of soybean seed proteins resolved by high-resolution 2-D gel electrophoresis in combination with Delta2D image analysis software revealed preferential accumulation of a few glycinin subunits contributed to the increased protein content in the introgressed lines. Amino acid analysis revealed that even though the leginsulin introgressed lines had higher protein, leginsulin, and elemental sulfur, the overall concentration of sulfur-containing amino acids was not significantly altered when compared with the parental lines. The experimental soybean lines developed during this study (Leg-3, Leg-7, and Leg-8) lack A5, A4, and B3 glycinin subunits and could be utilized in breeding programs to develop high-quality tofu cultivars.

摘要

大豆是人类和动物的重要蛋白质来源。然而,大豆蛋白中含硫氨基酸(半胱氨酸和蛋氨酸)的含量相对较低。提高富含含硫氨基酸的内源蛋白含量可以提高豆粕的营养价值。豆胰岛素是一种富含半胱氨酸的肽,主要积累在亚洲大豆种质中,而在大多数北美品种中则没有。通过筛选美国农业部大豆种质库中的不同大豆种质,我们能够鉴定出一份植物引种材料PI 427138,它是一个高蛋白品系,同时含有相对较高含量的元素硫和豆胰岛素。我们将PI 427138的这些优良性状导入一个实验品系,目的是提高种子蛋白的总体含量和质量。对在六个地点种植的LD00 - 3309与PI 427138杂交的自交后代进行生化特性分析,结果显示高蛋白、高元素硫和高豆胰岛素积累的稳定导入。结合Delta2D图像分析软件,通过高分辨率二维凝胶电泳对大豆种子蛋白进行分析比较,结果表明,一些大豆球蛋白亚基的优先积累导致了导入系中蛋白质含量的增加。氨基酸分析表明,尽管导入豆胰岛素的品系具有更高的蛋白质、豆胰岛素和元素硫含量,但与亲本系相比,含硫氨基酸的总体浓度并没有显著改变。本研究中培育的实验大豆品系(Leg - 3、Leg - 7和Leg - 8)缺乏A5、A4和B3大豆球蛋白亚基,可用于育种计划,以培育高品质的豆腐品种。

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