首页> 外文期刊>International Journal of Molecular Sciences >Molecular, Physicochemical and Rheological Characteristics of Introgressive Triticale/Triticum monococcum ssp. monococcum Lines with Wheat 1D/1A Chromosome Substitution
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Molecular, Physicochemical and Rheological Characteristics of Introgressive Triticale/Triticum monococcum ssp. monococcum Lines with Wheat 1D/1A Chromosome Substitution

机译:小麦/小黑麦渐渗种的分子,理化和流变特性小麦1D / 1A染色体替代的单球菌系

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Three sets of hexaploid introgressive triticale lines, with Triticum monococcum ssp. monococcum (cultivated einkorn wheat) genes and a bread wheat chromosome 1D substituted for chromosome 1A, and one set of secondary triticale lines were evaluated for grain and flour physicochemical and dough rheological characteristics in two generations (F7 and F8). Genomic in situ hybridization (GISH) and fluorescence in situ hybridization (FISH) confirmed the 1D/1A chromosome substitution. The presence or absence of einkorn high-molecular-weight (HMW) glutenin subunits and the wheat Glu-D1d locus encoding the 5 + 10 subunits was assessed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE), capillary zone electrophoresis, and allele-specific molecular markers. Significant differences were found among physicochemical properties (with the exception of the Hagberg falling number) of all introgressive Triticale/T. monococcum lines and the secondary triticale lines. The wheat 1D/1A chromosome substitution also affected these properties. The results showed that in all introgressive triticale lines, the protein and gluten content, Zeleny sedimentation value, and water absorption capacity, were increased. The rheological parameters estimated using micro-farinograph, reomixer, and Kieffer dough extensibility systems also showed an appreciable increase in dough-mixing properties, maximum resistance to extension (Rmax), and dough extensibility. Introgressive Triticale/T. monococcum lines with 5 + 10 subunits have particularly favorable rheological parameters. The results obtained in this study suggest that the cultivated einkorn genome Am, in the context of hexaploid secondary triticale lines and with a wheat 1D/1A substitution, has the potential to improve gluten polymer interactions and be a valuable genetic resource for triticale quality improvement.
机译:三套六倍体渗入型黑小麦系,与小麦小麦(Triticum monococcum ssp)。用单粒小麦(栽培的单核小麦)基因和一条面包小麦的1D染色体代替了1A染色体,并评估了第二代小黑麦品系在两个世代(F7和F8)中的谷物和面粉理化特性和面团流变特性。基因组原位杂交(GISH)和荧光原位杂交(FISH)证实了1D / 1A染色体替换。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE),毛细管区带电泳和毛细管电泳评估了是否存在硬核高分子量(HMW)谷蛋白亚基和编码5 + 10个亚基的小麦Glu-D1d基因座等位基因特异性分子标记。发现所有渗入型黑小麦/ T的理化性质之间存在显着差异(Hagberg下降数除外)。 monococcum品系和次生黑小麦系。小麦的1D / 1A染色体替代也影响了这些特性。结果表明,在所有渗水小黑麦品系中,蛋白质和面筋含量,Zeleny沉降值和吸水能力均增加。使用微法粉仪,再混合器和基弗面团延展性系统估算的流变参数也显示出面团混和性,最大抗延展性(R sub )和面团延展性显着提高。质朴的黑小麦/ T。具有5 + 10个亚基的单球菌系具有特别有利的流变参数。这项研究获得的结果表明,在六倍体次生小黑麦系和小麦1D / 1A取代的背景下,栽培的einkorn基因组A m 具有改善面筋聚合物相互作用的潜力,并且是改善黑小麦品质的宝贵遗传资源。

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