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Addition of Aegilops U and M chromosomes affects protein and dietary fiber content of wholemeal wheat flour

机译:添加Aegilops U和M染色体会影响全麦面粉的蛋白质和膳食纤维含量

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摘要

Cereal grain fiber is an important health-promoting component in the human diet. One option to improve dietary fiber content and composition in wheat is to introduce genes from its wild relatives Aegilops biuncialis and Aegilops geniculata. This study showed that the addition of chromosomes 2Ug, 4Ug, 5Ug, 7Ug, 2Mg, 5Mg, and 7Mg of Ae. geniculata and 3Ub, 2Mb, 3Mb, and 7Mb of Ae. biuncialis into bread wheat increased the seed protein content. Chromosomes 1Ug and 1Mg increased the proportion of polymeric glutenin proteins, while the addition of chromosomes 1Ub and 6Ub led to its decrease. Both Aegilops species had higher proportions of β-glucan compared to arabinoxylan (AX) than wheat lines, and elevated β-glucan content was also observed in wheat chromosome addition lines 5U, 7U, and 7M. The AX content in wheat was increased by the addition of chromosomes 5Ug, 7Ug, and 1Ub while water-soluble AX was increased by the addition of chromosomes 5U, 5M, and 7M, and to a lesser extent by chromosomes 3, 4, 6Ug, and 2Mb. Chromosomes 5Ug and 7Mb also affected the structure of wheat AX, as shown by the pattern of oligosaccharides released by digestion with endoxylanase. These results will help to map genomic regions responsible for edible fiber content in Aegilops and will contribute to the efficient transfer of wild alleles in introgression breeding programs to obtain wheat varieties with improved health benefits.
机译:谷物谷物纤维是人类饮食中重要的健康促进成分。改善小麦膳食纤维含量和组成的一种选择是从其野生近缘种(Aegilops biuncialis)和Aegilops geniculata中导入基因。这项研究表明,添加了2eg,4Ug,5Ug,7Ug,2Mg,5Mg和7Mg染色体的Ae。 geniculata和3Ub,2Mb,3Mb和7Mb的Ae。将biuncialis放入面包小麦中可增加种子蛋白含量。 1Ug和1Mg染色体增加了聚合谷蛋白的比例,而1Ub和6Ub染色体的添加导致其减少。与阿拉伯木聚糖(AX)相比,这两个埃及山羊科物种均具有比小麦品系更高的β-葡聚糖比例,并且在小麦染色体添加品系5U,7U和7M中也观察到了β-葡聚糖含量升高。小麦中的AX含量通过添加5Ug,7Ug和1Ub染色体而增加,而水溶性AX通过添加5U,5M和7M染色体而增加,而染色体3、4、6Ug的程度较小。和2Mb。 5Ug和7Mb染色体也影响小麦AX的结构,如内切木聚糖酶消化释放的寡糖模式所示。这些结果将有助于绘制出埃及埃格勒虫中可食纤维含量的基因组区域图,并将有助于在渗入育种计划中有效转移野生等位基因,从而获得对健康有益的小麦品种。

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