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首页> 外文期刊>Journal of Cereal Science >Puroindoline genes introduced into durum wheat reduce milling energy and change milling behavior similar to soft common wheats
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Puroindoline genes introduced into durum wheat reduce milling energy and change milling behavior similar to soft common wheats

机译:与硬质普通小麦相似,引入硬质小麦的Puroindoline基因可降低制粉能量并改变制粉行为

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Grain physical characteristics and milling behavior of a durum wheat line in which both wild-type puroindoline genes were translocated and stabilized after backcrossing (Svevo-Pin) were compared with the parent line (Svevo). The only observed differences between grain characteristics were the mechanical resistance and starchy endosperm porosity revealed through vitreosity measurement. A significant increase of flour and a decrease of semolina yield and break milling energy were observed from Svevo-Pin in comparison with the non-recombinant parent line in accordance to the lower grain mechanical resistance and higher porosity measurements. Moreover, the particle size distribution shown for Svevo-Pin flour appeared consistent with a lower adhesion between starch granules and the protein matrix attributed to the presence of wild-type puroindolines. Coarse bran yield was conversely increased. This appeared to be due to a lower starchy endosperm recovery as a higher proportion of grain starch was found in this bran fraction. Flour from the durum parent line was inversely enriched in phytic acid, a cellular marker of the aleurone layer. Starch damage was also lower in Svevo-Pin flours in comparison with Svevo. All of the observed differences between translocation and parent lines were confirmed independent of the culture growth conditions (n = 12). (C) 2016 Elsevier Ltd. All rights reserved.
机译:将硬野生型puroindoline基因在回交后都易位并稳定的硬质小麦品系(Svevo-Pin)的谷物物理特性和制粉行为与亲本(Svevo)进行了比较。谷物特性之间唯一观察到的差异是通过玻璃度测量显示的机械阻力和淀粉质胚乳孔隙率。与较低重组的亲本系相比,Svevo-Pin的面粉显着增加,粗面粉的产量和破碎粉磨能量降低,这是由于较低的谷物机械阻力和较高的孔隙率测量值所致。此外,Svevo-Pin面粉显示的粒度分布似乎与淀粉颗粒和蛋白质基质之间较低的粘附力相一致,这归因于野生型嘌呤吲哚的存在。相反,粗糠产量增加。这似乎归因于较低的淀粉胚乳回收率,因为在该麸皮级分中发现了较高比例的谷物淀粉。来自硬质杜伦母系的面粉反向富集植酸(糊粉层的细胞标记)。与Svevo相比,Svevo-Pin面粉中的淀粉损伤也更低。确认了所有观察到的易位和亲本系之间的差异,与培养物的生长条件无关(n = 12)。 (C)2016 Elsevier Ltd.保留所有权利。

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